2019
DOI: 10.23910/ijbsm/2019.10.6.2042
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Characterization of Physiological Responses and Deciphering Differential Expression of Heat stress Responsive Candidate Genes in Rice under High Temperature

Abstract: With increasing global temperature (by 1.5-4.8 °C by 2100) and its negative impact on crop productivity of major food crops including rice (by 41% by 21 st century), a study was undertaken to assess the genes involved in maintaining crop metabolism and sustenance under high temperature. Rice, most important staple food crop feeds around 3 billion people, hence producing improved heat tolerant varieties is necessary. High temperatures produce new group proteins called 'Heat Shock Proteins (HSPs), whose transcri… Show more

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