Climate smart agriculture is defined as a systematic and synergetic ingress for transformation and reorientation of agricultural development under constrained environment with climate risks. Enhanced plant productivity and reduced microbial respiratory C can potentially mitigate the rising of the...
Kaushal, M.
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Kaushal, R.
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[Rhizobacterial switching towards climate smart agroecosystems]
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Rhizobacterial switching towards climate smart agroecosystems
Phosphorus plays an indispensable part in keeping up soil richness and securing global sustenance production, however, its chief proportions remain interlocked in various insoluble forms of Ca, Fe and Al ion precipitates that cannot be taken by the plants proficiently. This prompts to an indiscri...
Dipta, B.
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Bhardwaj, S.
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Kaushal, M.
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Kirti, S.
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Sharma, R.
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[Obliteration of phosphorus deficiency in plants by microbial interceded approach]
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Obliteration of phosphorus deficiency in plants by microbial interceded approach
Plant growth promoting rhizobacteria (PGPR) are associated with plant roots and augment plant productivity and immunity by reducing fertilizer application rates and nutrient runoff. Studies were conducted to evaluate bell pepper transplants amended with formulation of consortium of two indigenous...
Kaushal, M.
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Mandyal, P.
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Kaushal, R.
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[Field based assessment of Capsicum annuum performance with inoculation of rhizobacterial consortia]
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Field based assessment of Capsicum annuum performance with inoculation of rhizobacterial consortia
In the last century, the banana crop and industry experienced dramatic losses due to an epidemic of Fusarium wilt of banana (FWB), caused by Fusarium oxysporum f.sp. cubense (Foc) race 1. An even more dramatic menace is now feared due to the spread of Foc tropical race 4. Plant genetic resistance...
Bubici, G.
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Kaushal, M.
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Prigigallo, M.I.
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Gómez Lama Cabanás, C.
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Mercado-Blanco, J.
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[Biological control agents against Fusarium wilt of banana]
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Biological control agents against Fusarium wilt of banana
Drought conditions marked by water deficit impede plant growth thus causing recurrent decline in agricultural productivity. Presently, research efforts are focussed towards harnessing the potential of microbes to enhance crop production during drought. Microbial communities, such as arbuscular my...
Kaushal, M.
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[Microbes in cahoots with plants: MIST to hit the jackpot of agricultural productivity during drought]
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Microbes in cahoots with plants: MIST to hit the jackpot of agricultural productivity during drought