Penis Bigger Naturally With Natural Home Remedies

Absence of sperms in the seminal fluid. This happens in a baby atom of cases, and it can be due to a blockage or disability to anatomy sperms. This can be detected by a biopsy

Your physique requires assertive nutrients and supplements to aftermath agent that are applicable in agriculture an ovum or an egg. Foods that are affluent in zinc accept been actual able in ascent the agent calculation and acts as sex booster.

Shilajit or mineral angle is an organo-mineral contains herbal origin. It is one of the mainly almighty ayurvedic amative herbs that are actual advantageous in acclimation the incorrect curvature. Shilajit has been one of the a lot of acclaimed ayurvedic herbs that accept been acclimated in absolute animal evils as ages.

Ashwagandha – It is one of the a lot of admired herbs acclimated in alleviative a ample ambit of illnesses. It helps in suppressing vata dosha in the physique and works as a accepted physique toner and provides physique with added akin of activity and zeal. It is a aces accustomed amative and a able animal analeptic and helps to amusement assorted diseases like accelerated climax, abstention and anemic erection. It is frequently accepted as Indian ginseng and is awful able in advocacy macho libido.

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Ashwagandha is some what accompanying to physique pains and animal health. This assemble is balmy in authority and is actual able in annoyance the vata amusement abatement thereby suppressing physique pains, arthritis and low activity levels. The withanoids present in Ashwagandha helps this assemble to accomplish in this way. Due to its admirable after-effects in accretion the admiration and animal desires it is actual frequently accepted as “Indian Ginseng”.

Low agent calculation antidote aswell cover afterward austere dieting brash by bloom affliction provider. One has to accord up booze and tobacco in any form. Too abundant masturbation, according to Ayurveda, may aswell abate the agent calculation and that is why it is avoided. Also, cutting too bound underwear may abate agent calculation and their activity and appropriately to be avoided

It is an important accustomed supplement that is actual accessible in awakening and aswell in advantageous any affectionate of absence occurring in the body. It is a agrarian assemble that is begin growing in agrarian in built-in places in India. It is accepted as asparagus racemosus in botanical terms. It provides backbone and backbone to the body. In ayurvedic arrangement of anesthetic shatavari is acclimated in diseases such as impotence, attenuated animal activities, decreased action of animal organs, affronted animal organs and abnormally in spermatorrhea.

Biotechnology in Conservation of Agricultural Environment

Biotechnology in Conservation of Agricultural Environment

K. Sarala, Senior Scientist (Biotechnology) Central Tobacco Research Institute, Rajahmundry-533 105, A.P.

Increase in crop yield in agriculture in 1960s, in India, was mainly due to introduction of new high yielding varieties. This has necessitated intensive use of agro-chemicals (mineral fertilizers and pesticides). However, the increase in agri-inputs was not directly proportional to the yields realized. During 1946-1965, the chemical (fertilizers and pesticides) input consumption was 87.0 Million Metric Tonnes (MMT) and food production 90 MMT; where as in 1998-2001, chemical input consumption was 1000 MMT and food production 220 MMT. Thus, when compared to 1946-1965, a 12 fold increase of chemical fertilizer consumption resulted in only 2.5 fold increase of food production. These figures indicate that for each unit of additional food produced higher amount of chemical inputs were utilized (Alvares, 1999; http:/indiabudget.nic.in; www.photius.com). The added inputs especially inorganic fertilizers, pesticides and weedicides have led to environmental problems. Progressive mechanization and mono-culture are other features that were added to Indian agriculture scenario after green revolution.

As a consequence of intensive agriculture natural resources were depleted, soils lost their natural fertility, soil microflora affected adversely, soil erosion increased and sudden and frequent apparition of new pests and diseases occurred. Excess use of fertilizers also spoiled soil health and adversely altered nutrient dynamics in the soil. Indiscriminate and injudicious use of pesticides contaminated the surrounding atmosphere, killed beneficial insects, soil micro flora and fauna and contaminated ground water. In addition to pest resurgence and new biotype / pest development minor pests became major pests and pests developed resistance to regularly used pesticides. All these things disturb the environmental balance. The present paper deals with applications of Biotechnology in alleviating these affects.

Plant Biotechnology

Plant biotechnology is a revolutionary new field that harnesses the knowledge gained over more than half a century of basic plant research to the benefit of man kind. Agriculture is already realizing huge benefits from improved crops developed through biotechnology, which shows remarkable resistance to insect damage, markedly reduced dependence on herbicides, improved yield levels, higher photochemicals etc.

Agricultural biotechnology helps to alleviate the above ill effects of intensive agriculture through the development of bio-fertilizers, bio-pesticides, and disease and pest resistant varieties, and genotypes with higher water and nutrient use efficiency. All these aspects are discussed below.

Biofertilisers

Some alternatives to the use of mineral fertilizers are green manures, composts and bioearths, earth worm manure, crop and agro industrial residues and biofertilizers.

The native soils harbor microorganisms like bacteria, actinomycetes, fungi, algae, protozoa etc. These microorganisms enrich the nutrient quality of soil. Plants have a number of relationships with these fungi, bacteria, and algae. Few of the useful microorganisms can be produced in the form of Bio-fertilizers and added to the soil for improving the soil fertility and plant nutrient uptake.

Bio-fertilizers are the preparations containing live or latent cells of efficient strains of nitrogen fixing, phosphate solubilizing or cellulolyotic micro-organisms used for application to seed or composting areas with the objective of increasing the numbers of such micro-organisms and accelerating those microbial processes which augment the availability of nutrients that can be easily assimilated by plants(Ghosh, 2003). Some of the microorganisms being used as biofertilisers and their uses are given in Table 1. Table 1. Biofertilizers and their utilities S.No.Bio-fertilizerutility 1.RhizobiumFix atmospheric nitrogen in symbiotic association with legume plants forming nodules in roots (stem nodules in Sesabaniam rostrata) 2.AzotobacterBeneficial to cereals, millets, vegetables, cotton and sugarcane. It is free living and non-symbiotic nitrogen fixing organism produces certain substances good for the growth of plants and antibodies that suppress many root pathogens 3.AzospirillumNitrogen-fixing microorganisms beneficial for non-leguminous plants also produce growth promoting substances. 4.Blue Green Algae (BGA)Photosynthetic nitrogen fixers and are free living. Found in abundance in India. Add growth-promoting substances including vitamin B12, improve the soil’s aeration and water holding capacity and add to biomass when decomposed after life cycle. 5.AzollaAn aquatic fern found in small and shallow water bodies and in rice fields. It has symbiotic relation with BGA and can help rice or other crops through dual cropping or green manuring of soil. 6.Phosphate Solubilizing Bacteria(PSB) The PSB are life forms that can help in improving phosphate uptake of plants in different ways. The PSB also has the potential to make utilization of India’s abundant deposits of rock phosphates possible, much of which is not enriched

In India, total Biofertilizer production capacity of public and private sector units is 18200 tonnes and total estimated Biofertilizer production is 10,000 tones during 2006-07. The Biofertilizer demand for the year2011 has been estimated at 30,000 tonnes by a recent expert committee constituted by the Ministry of Chemicals and Fertilizers. This clearly indicated that there is a large scope of biofertilisers industry in India.

Integrating biologicals in pest management

The adverse affects caused by excess use of pesticides can be reduced by following integrated pest management (IPM) approach i.e. integrating chemicals with biologicals in the pest management. This approach not only reduces the crop losses due to pests but also make agriculture more sustainable. Botanical pesticides and biocontrol agents offer immense scope in IPM

Biopesticides

Biopesticides are biorational and help to create Natural epizootics. They are inherently less harmful than conventional pesticides. They suppress, rather than eliminate, a pest population. Biopesticides are effective and often quickly biodegradable, present no residue problems and mostly self perpetuating.

Biopesticides, particularly microbial biopesticides, have virtually all the health safety and environmental properties that one would desire in a pesticide. The ecological fallacy and the individualistic fallacy need to be studied in detail.

Microbial insecticides are come from naturally-occurring bacteria, fungi, viruses (Ramarethinam, 2006). Various details of biopesticides including mechanism, pests and crops etc. are given in Table 2.

Table 2. Biopesticides their source and mechanism in pest control

Biopesticide type SourceNature/organismMechanismUsed againstCrops benefited Natural productPlant-Neem Vitex GarlicBiochemicalsAntifeedant, growth regulation, oviposition and mating disruptionInsect pestHorticultural, plantation and plain crops MicrobialsBacteria Bacillus thuringiensis(Bt) InfectionInsect pests B. sphaericus, PseudomonasAntibiosisDisease VirusNuclear polyhedrosis viruses, Granulosis virusesInfection resulting in epizooticsInsect pest FungiBeauveria, Metarhizium, Paecilomyces, NomuraeaInfection resulting in epizooticsInsect pests Trichoderma GliocladiumAntagonism and AntibiosisFungal disease of plants ProtozoaNosema, Thelohania, VairimorphaEpizooticsInsect pests PheromonesPheromonesBiochemicalsMating disruption, lure and kill, or insect monitoring strategiesInsect pest Genes or Plant-pesticide :Desired genes from a known sourceBiochemicalsConfer tolerance of herbicide application or resistance to attack by viruses or insectsInsect pest and disease

Market potential of biopesticides in India

The domestic market of biopesticides is in infant stage still – despite decades of existence, biopesticides are considered as marginal products. Virtually bereft of buyers and sellers. Awareness about the advantages of biopesticides is abysmally low as compared to the west,” this is affecting their demand adversely. Manufacturers claim that the projected demand for biopesticide has failed to become a reality. Rough estimates by the experts indicated a less than 2 per cent market share for Biopesticides in India (Agriculture today, Jan, 2005).

Agricultural Biotechnology – Varietal Development

Using different biotechnological techniques varieties having higher yields, disease and pest resistance, fertilizer responsiveness, herbicide tolerance, higher water/fertilizer use efficient, drought resistance etc can be developed. Biotechnology offers various advantageous over conventional breeding in developing crop varieties (Table 3). It employs novel technologies for creating variability, gene transfer, selection of segregating generations, transgenic development etc. Time taken for breeding a variety can be substantially reduced through biotechnology approach. Gene silencing (“switching off” of a gene by a mechanism other than genetic modification) and gene attenuation (to stop translation of an mRNA of a gene when certain conditions are not met) strategies can be employed to develop desirable genotypes.

Table 3. Agricultural Biotechnology vs. conventional breeding in varietal development

S.NoParameterAgricultural BiotechnologyConventional Breeding 1Creation of variabilitySomaclonal variationCreate through hybridization of parents Gamato clonal variation Proto clonal variation In vitro mutations 2Gene transferInter specific Mostly intra-specific, rarely inter-specific Inter generic 3Selection In vitro selectionPhenotypic selection Marker assisted selection 4GenesIsolated genesUses available variability Synthetic genes 5Gene transferAgro bacterium MediatedCrossing Gene gun Protoplast Fusion 6Time taken for breedingCan be reducedFairly long 7Trait expressionGene silencingCan’t be used Gene attenuation etc.,

Biotech crops in the world

Number of crop varieties were developed using various biotechnological approaches. Among them, Flavr savr tomato is the first transgenic crop released for commercial cultivation in USA in 1995. Later, number of pest and disease resistant varieties were released in cotton, maize, potato, soybean, tomato etc in different countries. Most of the cases the genes are cry genes conferring resistance to lepidopteron pests followed by viral genes. Pest resistance varieties substantially reduce the amount of pesticide use, there by avoids environmental problems.

From 1996-2007, global biotech crop area increased from 1.7 m ha to 114.3 m ha. 23 countries are growing biotech crops viz. soybean, cotton, maize and canola, 13 biotech mega countries growing 50,000 ha or more of biotech crops. The area covered by biotech crops in industrial countries is more compared to developing countries. These statistics indicates the increased awareness of the world farmers about biotech crops (James, 2007).

Biotech crop status in India

Many public and private sector institutions are involved in the development of biotech crop varieties in India. Biotechnology research in India is funded primarily by government agencies such as DBT, CSIR, ICAR and ICMR.

Regulations in India

Development and cultivation of transgenic varieties are raising many environmental concerns. In view of this, transgenic variety in any crop is released once it satisfies all environmental concerns. Before release they will be thoroughly tested for their effect on soil flora and fauna, allergenicity, toxicology etc. In India, Department of Biotechnology in Department of Science and Technology and Ministry of Environment and Forests are responsible for implementing bio-safety regulations with in the country. The regulation of genetically modified organisms (GMOs) in India has been subjected to the rules framed by the Ministry of Environment and Forests (MOEF) in 1989(GOI, 1989). These rules, which were part of the Environmental (Protection) Act of 1986, defined implementing structures for conducting research and for the commercial applications of GMOs. Department of Biotechnology formulated guidelines for conducting research in transgenic plants (GOI, 1990 1994 and 1998).

Govt. of India has evolved regulatory mechanisms for the development and evaluation of Genetically Modified Organisms (GMOs). Various bio-safety committees, starting right from the institute where the research is going on to District and State, are in operation to monitor the safety of GMOs. GM crop regulatory structure in India consists of the following six committees. First three are under the Department of Biotechnology (DBT), next one under the MOEF and the last two operate at sub-federal levels closer to the actual site of GM crop field trials.

Recombinant DNA Advisory Committee (RDAC): Reviews developments in biotechnology at national and international levels and recommends suitable and appropriate safety regulations

Review Committee on Genetic Manipulation (RCGM): Monitors safety-related aspects of ongoing research projects and activities involving genetically engineered organisms.

Institutional Biosafety Committee (IBSC): Constituted by the institution conducting research that handles micro-organisms/genetically-engineered organisms.

The Genetic Engineering Approval Committee (GEAC): Based in MoEF and gives approvals for activities involving large-scale commercial use and release of hazardous micro organisms including imports of GMOs and recombinants

The State Biotechnology Coordination Committee (SBCC): Nodal agency at the State-level to assess damages, if any, from the release of GMOs.

The District Level Biotechnology Committee (DLC): Monitors safety regulations in installations engaged in the use of GMOs and hazardous substances at District level.

Steps in GM plant commercialization process:

In India, a transgenic variety is developed under the close supervision of different regulatory bodies’ right from lab and greenhouse experiments to its approval for commercial production (Table 4). This elaborated exercise helps to assess their possible impact on environment. In case of any adverse impact that particular line will be withdrawn before release. Only lines that don’t have any impact will be considered for release based on their agricultural advantage.

Table 4. GM plant commercialization process

Steps in GM plant commercialization process Data generated at this step(more can be requested if needed)Who approves 1. Lab & greenhouse experiments Rationale for development of GM plant Cloning strategy Characteristics of expression vectors, inserted genes, promoters Transformation/cloning method Genetic analysis of transgene Biochemistry of expressed gene Compositional analysis Description of host plant, geographical distribution in country of origin, Back crossing duration, seed setting characteristics, germination rates, phenotypic characteristics, target gene efficacy tests Observations about implications of toxicity & allergenicityIBSC risk category I & II RCGM risk category III 2. Contained open field trials & generation of biosafety data Germination rates & phenotypic characteristics Studies of gene flow, invasiveness, weed formation Implications of out crossing Susceptibility to diseases & pests Toxicity & allergenicity of plants/fruits/seeds Food/feed safety evaluation in animalsIBSC/RCGM 3. Multi-location trials Agronomic advantageRCGM/GEAC 4. Large-scale field trials Agronomic advantageGEAC 5. Environmental, food & agronomic approval GEAC 6. Variety registration* Agronomic advantageICAR, National and State Seed Quality control agencies 7. Approval for commercial production GEAC

Biotech crops cultivated in India

On 26th March 2002, Genetic Engineering Approval Committee (GEAC) for the first time approved three Bt cotton hybrids (MECH 12 Bt, MECH 162 Bt and MECH 184 Bt) of MAHYCO for commercial cultivation in India. RCH2 Bt hybrids of Rasi seeds were approved on 1st April 2004 in Central and Southern part of India.

Bt-cotton was first planted in India in 2002. Following its success, the area under this crop and the number of farmers who adopted this technology increased significantly from year to year as shown in the Table 5 below:

Table 5: Area under Bt-cotton in India (2002 to 2007) YearTotal cotton area in hectaresBt-cotton area in hectaresBt-cotton area in acres% area occupied by Bt-cottonNo. of Bt-farmers 200287,30,00029,00072,0000.320,000 200376,70,00086,0002,13,0001.175,000 200476,30,0005,53,00013,66,0007.33,50,000 200589,20,00012,67,00031,31,00014.210,00,000 200691,58,00038,00,00094,00,00041.523,00,000 200794,00,00062,00,000*153,20,00066.038,00,000 Source: http://www.cbd.int/doc/external/mop-04/fbae-cotton-en.doc Thus, in about 6 years, the area under Bt-cotton has increased by more than 210 times to record 6.2 m ha and the number of Bt-farmers by 190 times to reach 3.8 m in 2007. Further, Bt-cotton has occupied 66% of the 9.4 m ha of the total cotton area in India in 2007.

Associated Chambers of Commerce and Industry India (ASSOCHAM) and IMRB International study on Bt cotton in India revealed that cotton farmers have earned an additional income of Rs 7,039 crore in 2006 after a 50 per cent increase in yield due to use of Bt cotton seed. Introduction of two stacked genes into Bollgard II Bt cotton has saved pesticide use to the tune of Rs 1,600 per acre. Bollgard II Bt cotton has the advantage of controlling both bollworms and the sucking pest, Spodoptera, while Bt cotton (with one gene) controls only bollworm. Bollgard II Bt cotton was allowed for commercial cultivation in central and western India in 2006. In view of the increased crop yields of BT cotton, India turned into a net cotton surplus country from a net importer in four years.

Number of pesticides sprays and amounts spent pesticide per acre were reduced when Bt cotton and Bollgard II Bt cotton were cultivated. Additional profit of Rs. 7,757/- and Rs. 10,352/- per acre, respectively, were realized by Bt cotton and Bollgard II Bt cotton over conventional cotton varieties (Table 6).

Table 6. Advantage of Bt cotton over conventional varieties

Cotton varietyNo.of pesticide spraysAmount spent on pesticide per acreProfit /acre* Conventional cotton -Rs. 2,900Rs. 4,784 Bt cotton (with one gene, cry 1 Ac)4.6 times less than conventionalRs. 2,000Rs. 12,541 Bollgard II Bt cotton (with Cry I Ac and Cry 2 Ab genes) 2 times less than Bt cottonRs. 1,300Rs. 15,136

* Bt seeds are 2.5 times costlier than conventional seeds

The results of other five studies conducted by public institutions and published recently are summarized in the table below to exemplify the benefits (Manjunath, 2008). Table 7 : Results of studies carried out by neutral agencies on the performance Of Bt-cotton in India

Publication / ParametersBennett et al., 2006Gandhi & Namboodiri (IIMA), 2006Qaim, 2006ICAR, 2006Ramgopal (Andhra Univ.) 2006 Period studied2002 & 200320042002-0320052005 Yield increase45 – 63%31%34%30.9%46% Reduction in chemical sprays3 to 139%6.8-4.2(50%)-55% Increased profit50%88%69%-110% Average profit / hectare-$250/ha$118/ha-$223/ha The results reveal that a) increase in cotton yield ranged from 30.9 to 63%, b) reduction in chemical sprays was from 39 to 55% and c) increase in profit to farmers ranged from 50 to 110% equivalent to about US$ 250 (Rs.10, 000) per hectare over the non-Bt cotton. It is reported that the average cotton yields in India which was 308kg/ha in 2002, prior to introduction of Bt-cotton, increased to 560kg/ha in 2007 (at least 50% of increase is attributed to Bt technology). Similarly, the national cotton production increased from mere 15.8 million bales in 2002 to 31.0 m bales in 2007. Exports of raw cotton, which was 0.9 m bales in 2005, increased to 4.7 m bales in 2006 and touched 4.8 m bales in 2007. Further, Bt-cotton contributed US$840 million or more to National farm economy. The studies carried out on Bt-cotton both before and after commercialization have clearly shown the following benefits: a) Higher cotton yield owing to effective control of bollworms, b) drastic reduction in the application of chemical insecticides for bollworm control, c) higher profit to farmers and d) conservation of biological control agents and other beneficial organisms. Thus, there have been social and economic benefits and intangible environmental benefits. The ever-increasing demand for Bt-cotton seeds is a clear reflection of farmers’ confidence in this technology and its benefits.

Conclusion

Use of bio-fertilizers, bio-pesticides and transgenic varieties in agriculture are showing increasing trend. Use of these things will reduce the utilization of chemical pesticides and pesticides; there by the harmful effects they produce will be reduced. Further increase in these eco-friendly biotech derived agri-inputs is essential to alleviate the environmental issues raised in conventional agriculture. References: Agriculture today (Jan,2005). The National Agricultural Magazine, Published by New Delhi. Alvares, C. (ed.) (1999) The organic farming source book. Published by The Other India Press/Third World Network, Goa (India). 366 p Bennett, R. et al., 2006. Farm-level economic performance of genetically modified cotton in Maharashtra, India. Review of Agricultural Economics, 28: 59-71. Gandhi, V. and Namboodiri, N.V., 2006. The adoption and economics of Bt-cotton in India: Preliminary results from a study. Indian Institute of Management (IIM), Ahmedabad, India. Working paper No. 2006-09-04, pages 1-27, Sept. 2006. Ghosh, Nilabja 2003. Promoting Bio-fertilizers in Indian Agriculture. Institute of Economic Growth Discussion Paper Series No. 69/2003. Delhi, India. GOI. 1989. Rules for the manufacture, use, import, export and storage of hazardous microorganisms/genetically engineered organisms or cells, issued by the Union Ministry of Environment and Forests, Govt. of India (Notification No. G.S.R. 1037 9E) dated 5 December 1989. GOI. 1990. Recombinant DNA safety guidelines. DBT, Union Ministry of Science and Technology, Govt. of India, p. 90. GOI. 1994. Revised guidelines for safety in biotechnology. DBT, Union Ministry of Science and Technology, Govt. of India. GOI. 1998. Revised guidelines for research in transgenic plants and guidelines for toxicity and allergenicity evaluation of transgenic seeds, plants and plant parts. DBT, Union Ministry of Science and Technology, Govt. of India, p. 92. ICAR (Indian Council of Agricultural Research), 2006. Frontline demonstrations of cotton – 2005-06. Mini Mission II, Technology Mission on cotton. ICAR, New Delhi. James, C. 2007. Global Status of Commercialized Biotech/GM Crops: 2007. ISAAA Briefs No. 37, 225 pp. ISAAA: Ithaca, NY. Manjunath, T. M. (2008) Position Paper on Indian Bt cotton. Bt-Cotton in India: Remarkable Adoption and Benefits. http://www.cbd.int/doc/external/mop-04/fbae-cotton-en.doc. Manjunath, T. M. 2007. Q & A on Bt-Cotton in India. Answers to More than 70 Questions on All Aspects. All India Crop Biotechnology Association, New Delhi, 78 pp. Qaim, M. 2006. Adoption of Bt cotton and impact variability: Insights from India. Review of Agricultural Economics, 28: 59-71. Ramarethinam, S (2006) Conference on Agrochemicals. January 12-13, 2006, Mumbai. Speeches and Presentations-2006: FICCI (http://www.ficci.com/media-room/speeches-presentations/2006/speeches-2006.htm). Ramgopal, N., 2006. Economics of Bt-cotton vis–vis traditional cotton varieties – Study in Andhra Pradesh, Agro-Economic Research Centre, Andhra University, Andhra Pradesh.

Auther: K. Sarala, Senior Scientist (Biotechnology), Central Tobacco Research Institute, Rajahmundry-533 105, A.P.

The Global Green Initiative

The Earth Charter is an international declaration of fundamental values for building a sustainable society. Humanity is called upon to create a global partnership to protect the Environment, human rights, human development and sustainable living.

The Ark of the Gaia Covenant means protecting Gaia, the Earth, the Mother who gave birth to mankind.

Isnt Nature the first teacher of Man ? Didnt Man first experience the Divine in the stillness of the woods ?

In Natural Philosophy, Sankhya, Universal Nature and Universal Time are the two main principles which are responsible for the world.

Time is the Creator, Time is the Preserver, Time is the Destroyer and Universal Nature is His beloved consort !
(Sarvam Kalena srijyanthe, Sarvam Kalena Palayanthe, Sarvam Kalena Samhriyante ).

Time is the all consuming Power
Of mighty Absolute !
The foolish Ego thinks it is the doer
But is afraid of Time !

Prabhavam Paurusham Prahuh
Kala meke yatho bhayam
Ahankara vimoodatma
Karthaham iti manyate

It is time for us to give Nature Her due !

Theology or Anti Paganism tries to convert people into dogmatic and superstitiious believers of an extra cosmic God ! It is time for us to choose between the forces of Darkness and the forces of Light. This is the Golden Age of Enlightenment and the ignorant have no place in the Age of Enlightenment !

Considered as Indias biggest and first social reality show, the Green Kerala Express is a successful S R show, by DD-25, the state run Malayalam channel.

There is a grand jury consisting of Dr Kannan, Dr Vineetha Menon, Dr RVG Menon, Nirmala Sanu George and Heli, and the 1223 Panchayats, the Corporations and the Municipalities of Kerala will get immense publicity. It has received 250 entries so far from the residents of Kerala. A whopping 213,000 USD will be awarded to the best Corporation, Panchyath and Municipality, after 100 days of intense competition. Projects will be selected and there will be video documentation. The leaders of Panchayats who are selected will have to answer the learned Jurys questions. The august assembly or audience can vote via text messages.

By Green is meant Sustainable Agriculture, Organic Farming, water conservation, health, food and social security, eco friendly homes, atmospheric non pollution, education, energy, housing and womens empowerment, in a land burdened by overpopulation and scarce resources.

There are some good examples like a village that renounced pesticides for Organic Farming. Waste was converted into biofuel by one villages initiative , and another village replaced incandescent bulbs with CFL bulbs. Another village used Bio Gas for cooking on a large scale. Another village which solved its potable water problem was highlighted. Due to the Matsya Kerala ( Fish Kerala ) Program, another village led in fish production The Panchayaths distribute fish feed and small fish free of cost and the fish tanks become productive tanks. One fish farmer reported getting aid from Panchayat and got INR 200 bucks per kilo fish, after seven months of breeding fish. ( India with 7 million tonnes of fish production lags behind Chinas 49 million. 50% of Indias production is from inland farming or Aquaculture ). Poverty alleviation and rural sustainability are the needs of the hour.

The Green Initiative is spreading worldwide and will sweep the world.

Education or Wisdom is great and is the teacher of teachers ( Vidya Guroonam Guru ). It is time India invested in R & D in Agri and educated her people about both Bio Technology and Organic Farming and the necessity of keeping the land green and improved her agri infrastructure. Now there is an awakening and 32 lakh trees were planted initially. 2000 trees were planted at the Trichur Medical College Healing Garden and 200 gooseberry seedlings were planted by Oushadi, the states Ayurvedic arm at the nearby Santhvana Vana. More than 10 million trees will be planted in Kerala ! Let us hope that the Green Initiative taken by highly literate Kerala will be followed by other states.

I hope they include Bio Dynamics and Astro Meteorology as part of Organic Farming, which is a part of traditional wisdom.

A Better India By Imparting Education For Slum Children

India is a developing country. The main factor that has made India a developing country is its poor educational field leading to illiteracy and subsequently poverty. These are the two main problems India is facing at the moment. More than 80% of the population in India depends on agriculture and out of this number; about 60% of the population is illiterate. Thus, the basis of all major problems is illiteracy.

It is extremely important that females be educated so that they can play a pivotal role in the development of their childrens characters When a female is educated she attains knowledge, gains power that helps in herself development .When she has a family it influences her family life in various ways. This helps the society to improve and develop in all aspects .This gradually leads the country to progress and achieve its goals. When a female is educated she helps educate many generations through her own knowledge and talents. Therefore, literacy and good education can solve many of the problems of developing countries .In all aspects education is an essential factor that helps in bringing about various changes to ourselves as human beings and also to the society. Through education, we can achieve all that we want and can work on saving our precious resources to meet growing demands of the population.

As mentioned earlier, poverty is one of the major problems that India faces. When speaking about population the first thing that comes to our minds is the slums in India. Today slum dwellers make up for about 60% of Mumbai’s population that is about 7 million people. These slums mainly spread into the areas neighboring Byculla, such as: Parel, Mahim Creek, Dadar and Matunga and wherever else they can find space, even on roads. The conditions in the slums are dreadful. Slum inhabitants constantly have to deal with issues such as, lack of water, no sewage or solid waste facilities, constant migration, lack of public transit, poor education, pollution and housing shortages. Infant mortality is very high in rural areas of India where there are no amenities.

In order to deal with the menace of poverty and illiteracy, many NGOs in India have come up with programs whereby imparting education for slum children.

These NGOs provide all the students with free education including free study material, free uniform and free occasional medical checkups. Some NGOs are running schools in various city slums with foreign assistance. They are playing a key role in imparting education for slum children but there is always a question about the standard of education in those schools as there is a lack of regular monitoring, education materials and skilled manpower. The Central Government of India is also playing a crucial role in providing education for slum children. It has also announced that a new welfare scheme has been created , which will with immediate effect eliminate and eradicate, all problems of slum children, including poverty, lack of education and health facilities, child labor and abuse. This program is also concentrating on providing education for the slum children, who could make a decent life for themselves in the future.

Organized Food Retail Driving the Agriculture Sector in India

IMARC Group, one of the world’s leading research and advisory firms, finds that the agriculture market in India is expected to grow robustly in the coming years reaching sales worth INR 42,707 Billion by 2017-18. Findings from the report suggest that a number of factors are currently inducing a major transformation in this sector. These include – a newfound interest of the organized sector, new and improved technologies, farming becoming more mechanized, new markets and demands, easy credit facilities, rapid growth of contract farming, agriculture friendly policies from the government, etc.

The report finds that, although currently small, the Indian organized food retail market has immense potential. The total market for organized food retail was worth INR 221 Billion in 2011-12 and is expected to grow at a CAGR of around 14% reaching revenues worth INR 477 Billion by 2017-18. Organized food retail outlets such as Reliance, Vishal Mega Mart, Spencer Retail, Future Group, etc, have now opened their outlets not only in the metros but also in the smaller cities of India. Organized retail outlets are currently offering consumers an access to a diversified range of products directly or indirectly related to the agriculture sector. The report expects an access to a very wide range of products coupled with attractive discounts to create a positive impact on the agriculture sector in India.

IMARC Group’s new report entitled -Indian Agriculture Market Report & Forecast: 2012-2017- provides an analytical and statistical insight into the agriculture industry along with its various segments and sub-segments. The study that has been undertaken using both desk-based and qualitative primary research has analyzed various aspects and provides a comprehensive understanding of the Indian agriculture market. The report can serve as an excellent guide for investors, researchers, consultants, marketing strategists, and all those who are looking to foray into the Indian agriculture market in some form or the other.

To buy the complete report or to get a free sample, please contact:

IMARC Group – Asia

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