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Chidambaranathan, P.

Publications and source records attributed to Chidambaranathan, P..

2 recordsLinked to original sources

Probable omnigenic effect and evolutionary insights of aerobic adaptation allele OsNCED2T on qDTY12.1 effecting grain yield under reproductive stage drought stress in rice

Yield associated quantitative trait loci (qDTY) under drought stress provides significant advantage for grain yield in rice. The major, stable qDTY12.1 was identified in a mapping population developed from upland cultivars Vandana and Way Rarem. Further, introgression line comprising of qDTY12.1 genomic region was characterized to have multiple genes (NAM, DECUSSATE) regulating the drought tolerance under severe drought stress substantiated through recently proposed omnigenic model for complex traits. Recently, plastid localized NCED2T allele present within the qDTY12.1 genomic region was characterized for conferring aerobic adaptation in lowland varieties. Since, NCED2T is evolutionary fixed in upland cultivars and Vandana was found to have the favorable allele of NCED2T, we hypothesized that this favorable allele might confer omnigenic effect on qDTY12.1 genes. Our evolutionary analysis using non synonymous SNPs present in genes namely NCED, NAM, and DECUSSATE and qDTY12.1 genomic regions showed specific grouping of Vandana with upland cultivars only for NCED gene and its adjoining genomic regions. However, non synonymous SNPs in NAM and DECUSSATE genes and its adjoining genomic regions of drought tolerant varieties were closely related and grouped together in the phylogenetic analysis. Moreover, ecotype specific differentiation and greater nucleotide difference with wild relatives was also observed for DECUSSATE gene in rice. This finding indicates differential evolution of qDTY12.1 regions for upland and drought tolerance and omnigenic effect of NCED2T gene in qDTY12.1. Further, we propose a breeding model for enhancing genetic gain for yield under severe drought stress by incorporation of NCEDT, qDTY12.1 and other drought tolerant QTLs for membrane stability in rice.

plant biology↗

Fertilizers, BT technology, and insecticides contributed to 60%, 23%, and 17%, respectively to the increase in BT cotton yield: An analysis from 2000 to 2014 in India

Complementary technologies and agricultural practices capable of sustaining profitability to the farmers cultivating BtCotton in India require urgent attention. In India, approval of Btcotton, cultivation of fertilizer-intensive hybrids, higher dose of fertilizer application by farmers, usage of novel pesticides all happened simultaneously during the same period (2002-04) which makes very difficult to identify the individual effect in the yield gain of cotton. In this background, we attempted to understand the proportionate contribution of fertilizers, BT technology and novel group of pesticides in enhancing cotton yield in India. For the analysis, linear regression model and change in partial factor productivity (PFP) of cotton was considered in four different scenarios for yield estimation between 2000 and 2014, i.e. Scenario I: Cotton yield in the absence of technology and enhanced fertilizers usage, Scenario II: Cotton yield only due to enhanced fertilizer usage, Scenario III: Cotton yield with enhanced fertilizer and application of novel pesticides for the insect control, and Scenario IV: Cotton yield due to BT technology, enhanced use of fertilizer, and novel insecticides (actual yield of Cotton in India during Bt phase).Their comparison showed that the individual effect of fertilizers, BT technology and insecticides contributed to 60%, 23% and 17% of cotton yield, respectively in India. Further, 18% reduction in PFP was observed recently as compared to 2003-08. Besides, 125 Kg/ha of fertilizers was identified as optimum dose for sustaining high yield in cotton. Thus, present analysis identified the individual effect of different technologies contributing to the yield of cotton in India which can be used in decision making processes for crop improvement. Further, in our opinion, three strategies namely drip fertigation, intercrossing Bt and non-Bt hybrids for resistance management in bollworms, and IPM for sucking pests will primarily drive the research priorities and policy actions for the next 5 to 10 years in sustaining the economic benefits of the six million cotton farmers in India.

plant biology↗