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Physiological Responses of Almond Genotypes to Drought Stress

机译:杏仁基因型对干旱胁迫的生理响应

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In this study, the physiological and developmental response of ten promising almond genotypes to deficit irrigation was investigated. A factorial experiment was conducted in a completely randomized block design with three replications during 2019 and 2020 at the Temperate Fruit Research Center, Horticultural Research Institute. The first factor was ten almond genotypes, and the second factor was three levels of drought stress (-0.33 MPa as a control, 0.9 and 1.6 MPa as moderate and severe stress, respectively). The results showed that growth and physiological characteristics, such as plant height, trunk diameter at the top of the plant, length of new branch growth, and leaf yellowness, as well as chlorophyll index based on the SPAD criterion, relative leaf water content, chlorophyll fluorescence, and activity of leaf enzymes including SOD, POD, CAT, and APX, varied among the ten almond genotypes under different levels of drought stress. Higher proline, RWC, and F-v/F-m values indicated a higher ability to tolerate drought stress in almonds. The study conducted a heatmap clustering analysis to classify 10 almond genotypes based on their response to drought stress. The results showed that the genotypes were divided into three groups, with two genotypes in the first group being more sensitive to drought stress. Also, the A-7-100 genotype in the third group was found to be more tolerant and adapted to drought stress than the other genotypes.
机译:在这项研究中,研究了10种有前途的杏仁基因型对灌溉不足的生理和发育反应。2019 年和 2020 年在园艺研究所温带水果研究中心进行了一次完全随机区组设计的析因实验,进行了三次重复。第一个因子为10个杏仁基因型,第二个因子为3个干旱胁迫水平(对照为-0.33 MPa,中度和重度胁迫分别为0.9和1.6 MPa)。结果表明:10种杏仁基因型在不同干旱胁迫水平下,植株高度、植株顶部树干直径、新枝生长长度、叶片黄度等生长生理特性,以及基于SPAD准则的叶绿素指数、相对叶片含水量、叶绿素荧光、SOD、POD、CAT、APX等叶片酶活性存在差异。脯氨酸、RWC 和 F-v/F-m 值越高表明杏仁对干旱胁迫的耐受能力越强。该研究进行了热图聚类分析,根据杏仁对干旱胁迫的反应对10种杏仁基因型进行分类。结果表明:基因型分为3个组,其中第2个基因型对干旱胁迫更敏感。此外,发现第三组的A-7-100基因型比其他基因型更耐受干旱胁迫并适应干旱胁迫。

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