Khushi Rani Das , Farhana Zaman , Md. Moshiul Islam , Sazada Siddiqui , Mohammed O. Alshaharni , Uthman Balgith Algopishi
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引用次数: 0
Abstract
Rice is an important food crop, while it is severely affected by drought stress. Viewing this point in mind we conducted an experiment to see the physiological responses and yield potential of selected rice genotypes under inadequate moisture condition. Two soil moisture condition: one is sufficient moisture condition (control; 95–100% field capacity (FC)) and another is deficit moisture condition (moisture stress; 40–45% FC) with five replications was maintained. Six drought tolerant one susceptible genotype and one standard check variety were used. Results revealed that tolerant genotypes BU Acc 37 and BU Acc 32 showed the highest RWC, WRC, rate of photosynthesis, conductance of stomata, transpiration rate, total chlorophyll content, proline and soluble sugar content, while susceptible genotype BU Acc 5 showed the lowest value of those parameters during water stress condition. In contrast, the lowest WSD, WUC, accumulation of H2O2 and malondialdehyde were noticed in tolerant genotypes BU Acc 37 and BU Acc 32, whereas those were the highest in susceptible genotype BU Acc 5 under deficit moisture condition. Tolerant genotype BU Acc 37 and BU Acc 32 also showed the higher antioxidant enzyme activity than the susceptible genotype BU Acc 5. Regardless of genotypes, yield contributing characteristics and yield were severely affected by deficit water stress. However, tolerant genotype BU Acc 37 showed the highest grain yield per hill, while susceptible genotype BU Acc 5 showed the lowest grain yield per hill. Hence, better accumulation ability of osmoprotectants, and the higher activity of antioxidant enzymes in the tolerant genotypes reduce the oxidative stress, enhance water relation and gas exchange attributes, and protect the yield reduction of rice.
水稻是一种重要的粮食作物,但受干旱胁迫影响严重。有鉴于此,我们进行了一项实验,以了解所选水稻基因型在水分不足条件下的生理反应和产量潜力。实验采用两种土壤水分条件:一种是充足水分条件(对照;田间持水量(FC)为 95-100%),另一种是水分亏缺条件(水分胁迫;FC 为 40-45%),共设五次重复。采用了 6 个耐旱基因型、1 个易感基因型和 1 个标准对照品种。结果表明,在水分胁迫条件下,耐旱基因型 BU Acc 37 和 BU Acc 32 的 RWC、WRC、光合速率、气孔导度、蒸腾速率、总叶绿素含量、脯氨酸和可溶性糖含量最高,而易感基因型 BU Acc 5 的这些参数值最低。相比之下,在水分亏缺条件下,耐受基因型 BU Acc 37 和 BU Acc 32 的 WSD、WUC、H2O2 和丙二醛积累量最低,而易感基因型 BU Acc 5 的这些指标最高。耐受基因型 BU Acc 37 和 BU Acc 32 的抗氧化酶活性也高于易感基因型 BU Acc 5。无论哪种基因型,其产量贡献特征和产量都受到缺水胁迫的严重影响。然而,耐逆基因型 BU Acc 37 的单丘产量最高,而易感基因型 BU Acc 5 的单丘产量最低。因此,耐逆基因型具有更强的渗透保护剂积累能力和更高的抗氧化酶活性,可减轻氧化胁迫,改善水分关系和气体交换特性,防止水稻减产。
期刊介绍:
Saudi Journal of Biological Sciences is an English language, peer-reviewed scholarly publication in the area of biological sciences. Saudi Journal of Biological Sciences publishes original papers, reviews and short communications on, but not limited to:
• Biology, Ecology and Ecosystems, Environmental and Biodiversity
• Conservation
• Microbiology
• Physiology
• Genetics and Epidemiology
Saudi Journal of Biological Sciences is the official publication of the Saudi Society for Biological Sciences and is published by King Saud University in collaboration with Elsevier and is edited by an international group of eminent researchers.