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首页> 外文期刊>Progress in Artificial Intelligence >Transgenerational Effects of Water-Deficit and Heat Stress on Germination and Seedling Vigour-New Insights from Durum Wheat microRNAs
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Transgenerational Effects of Water-Deficit and Heat Stress on Germination and Seedling Vigour-New Insights from Durum Wheat microRNAs

机译:水缺陷和热应力对杜兰麦小麦小麦微型萌发和幼苗活力的转基因影响

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Water deficiency and heat stress can severely limit crop production and quality. Stress imposed on the parents during reproduction could have transgenerational effects on their progeny. Seeds with different origins can vary significantly in their germination and early growth. Here, we investigated how water-deficit and heat stress on parental durum wheat plants affected seedling establishment of the subsequent generation. One stress-tolerant and one stress-sensitive Australian durum genotype were used. Seeds were collected from parents with or without exposure to stress during reproduction. Generally, stress on the previous generation negatively affected seed germination and seedling vigour, but to a lesser extent in the tolerant variety. Small RNA sequencing utilising the new durum genome assembly revealed significant differences in microRNA (miRNA) expression in the two genotypes. A bioinformatics approach was used to identify multiple miRNA targets which have critical molecular functions in stress adaptation and plant development and could therefore contribute to the phenotypic differences observed. Our data provide the first confirmation of the transgenerational effects of reproductive-stage stress on germination and seedling establishment in durum wheat. New insights gained on the epigenetic level indicate that durum miRNAs could be key factors in optimising seed vigour for breeding superior germplasm and/or varieties.
机译:水缺乏和热应力可以严重限制作物生产和质量。在繁殖期间对父母施加的压力可能对其后代具有转基因作用。具有不同起源的种子可以在萌发和早期生长中显着变化。在这里,我们研究了水缺陷和热应激对父母的杜兰麦植物的热量,影响了随后的幼苗建立。使用一种应力和一种应力敏感的澳大利亚硬质基因型。在繁殖期间从父母收集种子或没有暴露于应力的父母。通常,对先前一代的胁迫对种子萌发和幼苗活力产生负面影响,但在耐受性多样化的程度上。利用新的硬粒基因组组件的小RNA测序显示了两种基因型中的microRNA(miRNA)表达的显着差异。生物信息学方法用于鉴定具有在应激适应和植物发育中具有临界分子功能的多种miRNA靶标,因此可以有助于所观察到的表型差异。我们的数据提供了第一次确认生殖阶段压力对杜兰姆小麦萌发和幼苗建立的转基因影响。在表观遗传水平上获得的新见解表明,杜兰姆MIRNA可以是优化种子活力的关键因素,用于育种优质种质和/或品种。

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