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Drought Tolerance in Irradiated Wheat Mutants Studied by Genetic and Biochemical Markers

机译:遗传和生化标志物研究的辐照麦突变体中的耐旱性

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摘要

Mutation breeding is an alternative method for developing agriculturally important crops. A large set of Sagittario bread wheat seeds (Triticum aestivum L. cv.) were exposed to gamma ray irradiation (200 Gy) to obtain drought-tolerant mutant lines. To study drought tolerance, polyethylene glycol (PEG) 6000 was applied to the M-2 and M-3 individuals under in vitro conditions. Except in well-watered (100%) control plants, drought stress was triggered by a 50% decrease in the irrigation water applied to M-3 and M-4 plants in a greenhouse. Afterwards, 11 candidate drought-tolerant lines were obtained at the M-4 stage and subjected to molecular analysis. The highest percentage of polymorphisms (72.4%) was detected with Retrotransposons Microsatellite Amplified Polymorphism (REMAP) markers followed by Inter-Simple Sequence Repeat (ISSR; 62.07%) and Inter-Retrotransposon Amplified Polymorphism (IRAP) markers (52.94%). A dendrogram tree and a principal coordinate analysis (PCoA) plot classified the experimental samples into three distinctive groups. Additionally, the activities of several antioxidant enzymes were evaluated in both vegetative and flowering stages, and mutant lines showing the highest biochemical performance under stress were detected in the same group through phylogenetic analysis. Gamma ray irradiation was used to improve drought-tolerant wheat lines for forward/reverse genomic studies and marker-assisted selection in crops.
机译:诱变育种是发展重要农作物的替代方法。一大组射手座面包小麦种子(普通小麦栽培品种)暴露于γ射线照射(200戈瑞),以获得耐旱突变体品系。为了研究干旱耐受性,聚乙二醇(PEG)6000是在体外条件下施加到M-2和M-3的个体。除了在充分浇水(100%)对照植物,在干旱胁迫通过在灌溉水中50%的降低触发施加到M-3和M-4植物在温室。然后,在第M-4阶段得到,并进行分子分析11候选耐旱线。 (REMAP)标记,随后用反转录转座子微卫星扩增多态性检测多态性(72.4%)的比例最高的跨简单重复序列(ISSR; 62.07%)和各国反转录转座子扩增多态性(IRAP)标记(52.94%)。甲树状树和一个主坐标分析(后交通动脉)情节分类实验样品分成三个独特的基团。此外,一些抗氧化剂酶的活性在两个无性和开花阶段进行了评价,并通过系统发育分析同一组中检测到突变体品系示出在压力下的最高的生化性能。 γ射线照射来提高耐旱小麦品系为正向/反向基因组学研究和在作物标记辅助选择。

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