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Morphological and physiological characterization of different genotypes of faba bean under heat stress

机译:高温胁迫下不同基因型蚕豆的形态和生理特性

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摘要

Heat stress (HS) is the major constraint to crop productivity worldwide. The objective of the present experiment was to select the tolerant and sensitive genotype(s) on the basis of morpho-physiological and biochemical characteristics of ten Vicia faba genotypes. These genotypes were as follows: Zafar 1, Zafar 2, Shebam 1, Makamora, Espan, Giza Blanka, Giza 3, C4, C5 and G853. The experimental work was undertaken to study the effects of different levels of temperature (control, mild, and modest) on plant height (PH) plant−1, fresh weight (FW) and dry weight (DW) plant−1, area leaf−1, content of leaf relative water (RWC), proline content (Pro) and total chlorophyll (Total Chl), electrolyte leakage (EL), malondialdehyde level (MDA), hydrogen peroxide (H2O2), and activities of catalase (CAT), peroxidase (POD) and superoxide dismutase (SOD) enzymes. HS significantly affected growth performance of all genotypes. However, the magnitude of reduction in genotypes ‘C5’ was relatively low, possibly due to its better antioxidant activities (CAT, POD and SOD), and accumulation of Pro and Total Chl, and leaf RWC. In the study, ‘C5’ was noted to be the most HS tolerant and ‘Espan’ most HS sensitive genotypes. It was concluded that the heat-tolerant genotypes may have better osmotic adjustment and protection from free radicals by increasing the accumulation of Pro content with increased activities of antioxidant enzyme.
机译:热胁迫(HS)是全球作物生产力的主要限制因素。本实验的目的是根据十种蚕豆基因型的形态,生理和生化特征选择耐受和敏感的基因型。这些基因型如下:Zafar 1,Zafar 2,Shebam 1,Makamora,Espan,Giza Blanka,Giza 3,C4,C5和G853。进行实验工作以研究不同温度水平(控制,温和和适度)对株高(PH),植物 -1 ,鲜重(FW)和干重(DW)的影响植物 −1 ,叶面积 −1 ,叶片相对水含量(RWC),脯氨酸含量(Pro)和总叶绿素(总氯),电解质渗漏(EL) ,丙二醛水平(MDA),过氧化氢(H2O2)以及过氧化氢酶(CAT),过氧化物酶(POD)和超氧化物歧化酶(SOD)酶的活性。 HS显着影响所有基因型的生长性能。但是,基因型“ C5”减少的幅度相对较低,这可能是由于其更好的抗氧化活性(CAT,POD和SOD)以及Pro和Total Chl以及叶片RWC的积累。在研究中,“ C5”被认为是最能耐受HS的基因,而“ Espan”是最能耐受HS的基因型。结论是,通过增加Pro含量的积累并增加抗氧化酶的活性,耐热基因型可能具有更好的渗透调节和自由基保护作用。

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