首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Assembly and characterisation of a unique onion diversity set identifies resistance to Fusarium basal rot and improved seedling vigour
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Assembly and characterisation of a unique onion diversity set identifies resistance to Fusarium basal rot and improved seedling vigour

机译:唯一洋葱分集集的组装和表征识别对镰刀菌的抗性和改进的幼苗活力

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Conserving biodiversity is critical for safeguarding future crop production. Onion (Allium cepa L.) is a globally important crop with a very large (16 Gb per 1C) genome which has not been sequenced. While onions are self-fertile, they suffer from severe inbreeding depression and as such are highly heterozygous as a result of out-crossing. Bulb formation is driven by daylength, and accessions are adapted to the local photoperiod. Onion seed is often directly sown in the field, and hence seedling establishment is a critical trait for production. Furthermore, onion yield losses regularly occur worldwide due to Fusarium basal rot caused by Fusarium oxysporum f. sp. cepae. A globally relevant onion diversity set, consisting of 10 half-sib families for each of 95 accessions, was assembled and genotyping carried out using 892 SNP markers. A moderate level of heterozygosity (30-35%) was observed, reflecting the outbreeding nature of the crop. Using inferred phylogenies, population structure and principal component analyses, most accessions grouped according to local daylength. A high level of intra-accession diversity was observed, but this was less than inter-accession diversity. Accessions with strong basal rot resistance and increased seedling vigour were identified along with associated markers, confirming the utility of the diversity set for discovering beneficial traits. The onion diversity set and associated trait data therefore provide a valuable resource for future germplasm selection and onion breeding.
机译:保护生物多样性对于保护未来的作物生产至关重要。洋葱(Allium cepa L.)是全球重要的作物,具有非常大(每1c)基因组的基因组,尚未测序。虽然洋葱是自我肥沃的,但它们患有严重的近亲繁殖抑郁症,并且由于外交而言是高度杂合的。灯泡形成由Daylength驱动,并且acadeations适用于本地光周期。洋葱种子通常在该领域直接播种,因此苗木建立是生产的危急性状。此外,由于由雪崩富镰刀菌法引起的镰刀菌腐败,洋葱产量损失定期发生全世界。 SP。 cepae。全球相关的洋葱多样性集合,由95种载体中的每一个组成10个半SIB家族,并使用892个SNP标记进行的基因分型组装和基因分型。观察到中等程度的杂合子(30-35%),反映了作物的繁殖性质。使用推断的文学,人口结构和主要成分分析,大多数加入根据当地的日间进行分组。观察到高水平的入境多样性,但这比加入互连多样性少。鉴定具有强大基底腐蚀性和增加的幼苗活力,以及相关标记,确认了多样性集的效用来发现有益的特征。因此,洋葱多样性集和相关性状数据为未来的种质选择和洋葱育种提供了有价值的资源。

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