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首页> 外文期刊>Plant, Cell & Environment >Genome-wide association mapping and biochemical markers reveal that seed ageing and longevity are intricately affected by genetic background and developmental and environmental conditions in barley
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Genome-wide association mapping and biochemical markers reveal that seed ageing and longevity are intricately affected by genetic background and developmental and environmental conditions in barley

机译:全基因组关联图谱和生化标记表明,大麦的遗传背景,发育和环境条件对种子的衰老和寿命有复杂的影响

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摘要

Globally, over 7.4 million accessions of crop seeds are stored in gene banks, and conservation of genotypic variation is pivotal for breeding. We combined genetic and biochemical approaches to obtain a broad overview of factors that influence seed storability and ageing in barley (Hordeum vulgare). Seeds from a germplasm collection of 175 genotypes from four continents grown in field plots with different nutrient supply were subjected to two artificial ageing regimes. Genome-wide association mapping revealed 107 marker trait associations, and hence, genotypic effects on seed ageing. Abiotic and biotic stresses were found to affect seed longevity. To address aspects of abiotic, including oxidative, stress, two major antioxidant groups were analysed. No correlation was found between seed deterioration and the lipid-soluble tocochromanols, nor with oil, starch and protein contents. Conversely, the water-soluble glutathione and related thiols were converted to disulphides, indicating a strong shift towards more oxidizing intracellular conditions, in seeds subjected to long-term dry storage at two temperatures or to two artificial ageing treatments. The data suggest that intracellular pH and (bio)chemical processes leading to seed deterioration were influenced by the type of ageing or storage. Moreover, seed response to ageing or storage treatment appears to be significantly influenced by both maternal environment and genetic background.
机译:在全球范围内,超过740万份农作物种子被保存在基因库中,而基因型变异的保存对于育种至关重要。我们结合了遗传和生化方法,获得了影响大麦种子保存性和衰老的因素的广泛概述。在来自四个大陆的175种基因型的种质资源收集的种子中,对不同养分供应的田地进行了两种人工老化。全基因组关联图谱揭示了107个标记性状关联,因此,基因型对种子老化的影响。发现非生物和生物胁迫会影响种子寿命。为了解决非生物性方面,包括氧化性,应激性,分析了两个主要的抗氧化剂基团。没有发现种子变质与脂溶性生育酚之间的相关性,也与油,淀粉和蛋白质的含量无关。相反,将水溶性谷胱甘肽和相关的硫醇转化为二硫化物,表明在两个温度下长期干燥储存或两次人工老化处理的种子中,它们向着更具氧化性的细胞内条件强烈转变。数据表明,导致种子变质的细胞内pH和(生物)化学过程受老化或储存类型的影响。此外,种子对衰老或贮藏处理的反应似乎受母体环境和遗传背景的影响很大。

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