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Response of physiological and biochemical parameters in deeper rooting rice genotypes under irrigated and water stress conditions

机译:灌水和水分胁迫条件下深生根水稻基因型生理生化参数的响应

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摘要

An experiment was conducted under vegetative stage drought stress condition with the objective to determine the effect of water deficit stress on various physiological and biochemical traits associated with drought tolerance attributes of twelve promising rice genotypes selected on the basis of deeper rooting abilities. Drought stress at vegetative stage caused reduction in relative water content (RWC) (31.57 ), grain yield (55.31 ), number of effective tillers (37.70 ), plant biomass (23.65 ), and increase in grain sterility (51.5 ) and proline content (55.9 ) in rice genotypes. However, the responses varied among genotypes. Out of the twelve rice genotypes, Bamawypan, showed superiority in terms of grain yield, 1000-grain weight, total plantbiomass, RWC, leaf area index (LAI), proline content, catalase activity, peroxidase activity and total chlorophyll content. Significant and positive correlations were observed between yield and physiological attributes like proline content, LAI, relative water content, catalase activity, peroxidase activity, total chlorophyll content and plant biomass under drought stress condition. The current study indicated that the physiological and biochemical traits have direct or indirect effect on yield performance of rice genotypes under water stressed environment at vegetative stage.
机译:在营养期干旱胁迫条件下进行试验,旨在确定缺水胁迫对基于较深生根能力选择的12种有前途的水稻基因型的耐旱属性相关各种生理生化性状的影响。营养期干旱胁迫导致水稻基因型相对含水量(RWC)降低(31.57 %)、籽粒产量(55.31 %)、有效分蘖数(37.70 %)、植物生物量降低(23.65 %),籽粒不育率(51.5 %)和脯氨酸含量增加(55.9%)。然而,不同基因型的反应各不相同。在12个水稻基因型中,Bamawypan在籽粒产量、千粒重、总植株生物量、RWC、叶面积指数(LAI)、脯氨酸含量、过氧化氢酶活性、过氧化物酶活性和总叶绿素含量方面表现出优势。干旱胁迫条件下,产量与脯氨酸含量、LAI、相对含水量、过氧化氢酶活性、过氧化物酶活性、总叶绿素含量和植物生物量等生理特性呈显著正相关。研究表明,水稻基因型在营养期水分胁迫环境下的生理生化性状对产量性能有直接或间接的影响。

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