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Response of leaf water status, stomatal characteristics, photosynthesis and yield in black gram and green gram genotypes to soil water deficit

机译:黑克和绿克基因型叶片水分状况,气孔特征,光合作用和产量对土壤水分亏缺的响应

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摘要

Drought is one of the most important abiotic stresses constraining crop productivity worldwide. The objective of the present study was to investigate the differences in drought tolerance at leaf and stomatal level of black gram (genotypes: T9, KU 301, PU 19, USJD 113) and green gram (genotypes: Pratap, SG 21-5, SGC 16, TMB 37). Drought was applied for fifteen consecutive days at flowering stage (35 days after sowing). Mid-day leaf water potential ((L)), leaf area, photosynthesis rate (P-N), leaf chlorophyll, stomatal conductance (g(s)) and seed yield of drought- treated plants were calculated relative to those of well watered plants. Stomatal characteristics were observed in terms of stomatal frequency (SF) and stomatal aperture size (SA). Among the studied genotypes, T9 (black gram) and Pratap (green gram) proved their better tolerance capacity to drought by maintaining higher leaf area, (L), P-N, leaf chlorophyll, g(s) and SA which contributed to better seed yield. Between the two crops, green gram appeared to be affected to a greater extent, as it experienced higher reduction in yield than black gram. A highly significant positive correlation (level 0.01) of seed yield was obtained with leaf area, (L), P-N, leaf chlorophyll, g(s) and SA, whereas SF was found to be poorly correlated with seed yield.
机译:干旱是限制全球农作物生产力的最重要的非生物胁迫之一。本研究的目的是研究黑克(基因型:T9,KU 301,PU 19,USJD 113)和绿色克(基因型:Pratap,SG 21-5,SGC)在叶片和气孔水平上的耐旱性差异16,TMB 37)。在开花期连续15天(播种后35天)施用干旱。相对于水分充足的植物,计算了干旱处理植物的午间叶片水势(L),叶片面积,光合作用率(P-N),叶片叶绿素,气孔导度(g(s))和种子产量。根据气孔频率(SF)和气孔孔径大小(SA)观察了气孔特征。在研究的基因型中,T9(黑克)和Pratap(绿克)通过保持较高的叶面积,(L),PN,叶绿素,g(s)和SA证明了它们对干旱的更好耐受能力,这有助于提高种子产量。在两种农作物之间,绿豆克受到的影响似乎更大,因为它的产量下降幅度要比黑豆高。种子产量与叶面积,(L),P-N,叶绿素,g(s)和SA高度相关(0.01级),而SF与种子产量的相关性很弱。

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