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马铃薯近亲繁殖衰退的遗传基础。

The genetic basis of inbreeding depression in potato.

机构信息

The AGISCAAS-YNNU Joint Academy of Potato Sciences, Yunnan Normal University, Kunming, China.

Genome Analysis Laboratory of the Ministry of Agriculture, Agricultural Genomics Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen, China.

出版信息

Nat Genet. 2019 Mar;51(3):374-378. doi: 10.1038/s41588-018-0319-1. Epub 2019 Jan 14.

Abstract

Inbreeding depression confers reduced fitness among the offspring of genetic relatives. As a clonally propagated crop, potato (Solanum tuberosum L.) suffers from severe inbreeding depression; however, the genetic basis of inbreeding depression in potato is largely unknown. To gain insight into inbreeding depression in potato, we evaluated the mutation burden in 151 diploid potatoes and obtained 344,831 predicted deleterious substitutions. The deleterious mutations in potato are enriched in the pericentromeric regions and are line specific. Using three F populations, we identified 15 genomic regions with severe segregation distortions due to selection at the gametic and zygotic stages. Most of the deleterious recessive alleles affecting survival and growth vigor were located in regions with high recombination rates. One of these deleterious alleles is derived from a rare mutation that disrupts a gene required for embryo development. This study provides the basis for genome design of potato inbred lines.

摘要

近亲繁殖会导致遗传亲属的后代适应度降低。作为一种无性繁殖的作物,马铃薯(Solanum tuberosum L.)受到严重的近亲繁殖衰退的影响;然而,马铃薯近亲繁殖衰退的遗传基础在很大程度上尚不清楚。为了深入了解马铃薯的近亲繁殖衰退,我们评估了 151 个二倍体马铃薯的突变负担,获得了 344,831 个预测有害替换。马铃薯中的有害突变在着丝粒区域富集,并且具有谱系特异性。利用三个 F 群体,我们在配子和合子阶段选择导致的严重分离失真的 15 个基因组区域中鉴定出了 15 个。影响生存和生长活力的大多数有害隐性等位基因位于高重组率的区域。其中一个有害等位基因来自一个罕见的突变,该突变破坏了胚胎发育所需的基因。这项研究为马铃薯自交系的基因组设计提供了基础。

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