Genetic diversity and morpho-physiological assessment of drought tolerance in rapeseed (Brassica napus L.) cultivars

Sara Motallebinia, Omid Sofalian, Ali Asghari, Ali Rasoulzadeh, Bahram Fathi Achachlouei
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Abstract

Water deficit is one of the most important abiotic stresses constraining crop production in rapeseed. Understanding the mechanisms of adaptation to this stress is essential for the development and production of drought-tolerant genotypes. For this reason, this research study aims to investigate the importance of genetic diversity in identifying genotypes with a high degree of drought tolerance through assessing effectiveness of inter simple sequence repeat (ISSR) markers on 14 genotypes of rapeseed in a factorial design. Morphological and physiological characteristics were studied after the early stages of growth; in order to evaluate the genetic diversity among genotypes, 18 different ISSR markers were used. A total of 106 clear and scalable loci were amplified, of which 60 bands (56.6%) were polymorphic. The highest polymorphism information content belonged to marker number 9 with the amount of 0.365 (85.7%). Gene variation ranged from 0.081 to 0.365 and the rapeseed genotypes were divided into three groups by cluster analysis (unweighted pair group method with arithmetic mean method). The analysis of molecular variance showed that 70% of the total variation was observed within populations and 30% of this variation occurred among populations. In addition, t-test was used for comparing oil content percentage among different genotypes in control and stress levels. Adriana had the highest amount of seed oil with 36.47%, whereas Karaj 2 had the lowest amount with 27.28 and Cooper had the highest decrease in oil content percentage under stress conditions. Overall, the genotypes Likord, Hyola 401 and Sarigol 32 were identified as the most drought-tolerant.

油菜(Brassica napus L.)栽培品种耐旱性的遗传多样性和形态生理学评估
缺水是制约油菜籽作物生产的最重要的非生物胁迫之一。了解对这种胁迫的适应机制对于开发和生产耐旱基因型至关重要。因此,本研究旨在通过对 14 个油菜基因型进行因子设计,评估简单序列重复(ISSR)标记的有效性,从而研究遗传多样性在鉴定具有高度耐旱性基因型方面的重要性。研究了油菜生长初期后的形态和生理特征;为了评估基因型之间的遗传多样性,使用了 18 种不同的 ISSR 标记。共扩增出 106 个清晰且可扩展的位点,其中 60 个条带(56.6%)具有多态性。多态性信息含量最高的是 9 号标记,为 0.365(85.7%)。基因变异范围为 0.081 至 0.365,通过聚类分析(非加权配对组法与算术平均法)将油菜基因型分为三组。分子变异分析表明,70%的总变异发生在种群内部,30%的变异发生在种群之间。此外,还使用 t 检验比较了不同基因型在对照和胁迫水平下的含油量百分比。在胁迫条件下,Adriana 的种子含油量最高,为 36.47%,而 Karaj 2 的种子含油量最低,为 27.28%,Cooper 的含油量下降幅度最大。总体而言,基因型 Likord、Hyola 401 和 Sarigol 32 被认定为最耐旱。
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