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Characterization of rice (Oryza sativa L.) genotypes on the basis of morpho-physiological and biochemical traits grown under aerobic situation in rainfed ecosystem

机译:基于雨养生态系统中需氧条件下生长的形态生理生化特性表征水稻基因型

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The objective of the present study was to examine the effect of aerobic situation on yield, physiological and biochemical traits of advanced breeding lines of rice. Experiment was conducted with two set of rice genotypes under two water regimes (aerobic and irrigated), during three consecutive wet seasons 2010-2012. Significant decrease in yield was observed in rice genotypes grown under aerobic situation as compared to the irrigated ones. Promising rice genotypes having the ability to maintain high plant biomass, harvest index, early vegetative vigour, improved physiological and biochemical traits in terms of relative water content (RWC), leaf area index (LAI), total soluble sugar, starch, protien and proline content help to sustain higher grain yield under aerobic situation. The yield gap between aerobic and irrigated rice ranged between 24% to 68 %. Grain yield showed positive correlation with harvest index (0.434), test weight (0.647), plant biomass (0.411) and effective tiller numbers (0.473), whereas spikelet sterility was negative associated (-0.380). The current study suggested that promising genotypes viz., IR77298-14-1-2-130-2, IR84899-B-182-3-1-1-2, IR84887-B-157-38-1-1-3 and IR 84899-B-179-1-1-1-2 for aerobic situation, showing yield advantage due to better performance of physiological and biochemical traits, might be adopted in large area of rainfed ecosystem as well as in irrigated areas where water scarcity was a major problem.
机译:本研究的目的是研究有氧环境对水稻高级育种系产量,生理生化性状的影响。在2010-2012年的三个连续湿季中,在两种水情下(有氧和灌溉)对两组水稻基因型进行了试验。与灌溉相比,在有氧条件下生长的水稻基因型单产显着下降。有前途的水稻基因型,能够保持较高的植物生物量,收获指数,早期营养活力,相对水含量(RWC),叶面积指数(LAI),总可溶性糖,淀粉,蛋白质和脯氨酸的生理和生化特性得到改善含量有助于在有氧条件下维持较高的谷物产量。有氧和灌溉稻之间的产量差距介于24%至68%之间。籽粒产量与收获指数(0.434),容重(0.647),植物生物量(0.411)和有效分till数(0.473)呈正相关,而小穗不育与负相关(-0.380)。目前的研究表明,有希望的基因型即IR77298-14-1-2-130-2,IR84899-B-182-3-1-1-2,IR84887-B-157-38-1-1-3和IR 84899-B-179-1-1-1-2适用于有氧环境,由于生理和生化特性更好的表现而具有产量优势,可在大范围的雨养生态系统以及缺水的灌溉区域采用一个大问题。

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