部分油菜/芥菜基因型对盐胁迫的生理和产量响应

F. Ahamed, Imthiyas Ahamed, Afm Shamim Ahsan, B. Ahmed, F. Begum
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引用次数: 2

摘要

2019-2020年rabi季,在孟加拉国农业研究所(BARI)植物生理处乙烯基室内进行了油菜/芥菜基因型试验,根据生理参数和产量的响应,找出耐盐基因型。选择5种油菜籽/芥菜基因型(V1= Jun-536, V2 = BJDH-12, V3 = BD-10115, V4 = BARI Sarisha-14, V5 = BD-6950)在3种盐度水平(S0= 0, S1= 5和S2=10 dS -1)下进行试验。无论基因型如何,盐胁迫对所测生理参数和种子产量均有负影响。盐度胁迫降低了叶片叶绿素含量、叶面积、叶片光合速率和总干物质(TDM),最终影响了籽粒产量。与其他基因型相比,V1和V2基因型对这些参数的影响较小。盐胁迫对叶片组织中钠、钾离子含量及其比值(K+/Na+)有显著影响。其中,V1和V2基因型在两种盐度处理下,叶片K+/Na+比值均高于其他基因型,表明其耐盐性高于其他基因型。过氧化氢酶(CAT)、过氧化物酶(POD)活性和丙二醛(MDA)含量均因盐胁迫而升高,且各基因型间存在差异。V1和V2基因型的CAT和POD活性较高,MDA含量较低,表明其耐盐能力较强。与其他基因型相比,这些基因型在盐度水平(5和10 dS - m-1)下均表现出较高的种子产量。从生理参数和种子产量对盐胁迫的响应来看,Jun-536(V1)和BJDH-12(V2)基因型对盐胁迫具有较强的耐受性。孟加拉国阿格龙。J. 2021, 24(1): 43-55
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physiological and Yield Responses of Some Selected Rapeseed/Mustard Genotypes to Salinity Stress
An experiment on rapeseed/mustard genotypes was conducted during 2019-2020 rabi season in vinyl house of Plant Physiology Division of Bangladesh Agricultural Research Institute (BARI), Gazipur to find out the salt-tolerant genotypes based on the responses of their physiological parameters and yield. Five selected rapeseed/ mustard genotypes (V1= Jun-536, V2 = BJDH-12, V3 = BD-10115, V4 = BARI Sarisha-14, V5 = BD-6950) were tested at three salinity levels (S0= 0, S1= 5 and S2=10 dS m-1). Irrespective of the genotypes, salinity stress showed a negative effect on the measured physiological parameters as well as seed yield. Leaf chlorophyll contents, leaf area, leaf photosynthetic rate and total dry matter (TDM) were reduced due to salinity stress which ultimately affected seed yield irrespective of the genotypes. However, these parameters were less affected by the salinity in V1 and V2 genotypes compared to others. Sodium and potassium ion contents and their ratios (K+/Na+) in leaf tissues were significantly affected by salinity stress. Among the genotypes, V1 and V2 showed higher K+/Na+ ratios in leaf under both the salinity treatments, and that phenomenon indicated their higher tolerance to salinity than the other genotypes. Catalase (CAT), Peroxidase (POD) activity and Malondialdehyde (MDA) content of the genotypes increased due to salinity stress with variability among the genotypes. The higher CAT and POD activity with lower MDA content was found in V1 and V2 genotypes which indicated their better salt tolerance ability compared to others. These genotypes also showed higher seed yield under both the salinity levels (5 and 10 dS m-1) compared to other genotypes. Based on the responses of physiological parameters and seed yield to salinity, the genotypes Jun-536(V1) and BJDH-12(V2) could be considered relatively tolerant to salinity stress. Bangladesh Agron. J. 2021, 24(1): 43-55
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