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一簇假定的抗性基因与对向日葵花蓟马的显性抗性有关。

A cluster of putative resistance genes is associated with a dominant resistance to sunflower broomrape.

机构信息

Laboratoire des Interactions Plantes Microbes-Environnement (LIPME), CNRS, INRAE, Université de Toulouse, Castanet-Tolosan, Toulouse, France.

Center National de Ressources Génomiques Végétales (CNRGV), INRAE, Castanet-Tolosan, France.

出版信息

Theor Appl Genet. 2024 Apr 13;137(5):103. doi: 10.1007/s00122-024-04594-0.

Abstract

The HaOr5 resistance gene is located in a large genomic insertion containing putative resistance genes and provides resistance to O. cumana, preventing successful connection to the sunflower root vascular system. Orobanche cumana (sunflower broomrape) is a parasitic plant that is part of the Orobanchaceae family and specifically infests sunflower crops. This weed is an obligate parasitic plant that does not carry out photosynthetic activity or develop roots and is fully dependent on its host for its development. It produces thousands of dust-like seeds per plant. It possesses a high spreading ability and has been shown to quickly overcome resistance genes successively introduced by selection in cultivated sunflower varieties. The first part of its life cycle occurs underground. The connection to the sunflower vascular system is essential for parasitic plant survival and development. The HaOr5 gene provides resistance to sunflower broomrape race E by preventing the connection of O. cumana to the root vascular system. We mapped a single position of the HaOr5 gene by quantitative trait locus mapping using two segregating populations. The same location of the HaOr5 gene was identified by genome-wide association. Using a large population of thousands of F2 plants, we restricted the location of the HaOr5 gene to a genomic region of 193 kb. By sequencing the whole genome of the resistant line harboring the major resistance gene HaOr5, we identified a large insertion of a complex genomic region containing a cluster of putative resistance genes.

摘要

HaOr5 抗性基因位于一个包含潜在抗性基因的大型基因组插入中,可提供对 O. cumana 的抗性,防止其与向日葵根部血管系统成功连接。Orobanche cumana(向日葵列当)是一种寄生植物,属于列当科,专门感染向日葵作物。这种杂草是一种专性寄生植物,不进行光合作用或发育根系,完全依赖其宿主进行发育。它每株可产生数千个类似灰尘的种子。它具有很强的传播能力,并且已被证明能够迅速克服向日葵品种中连续选择引入的抗性基因。其生命周期的第一部分发生在地下。与向日葵血管系统的连接对于寄生植物的生存和发育至关重要。HaOr5 基因通过阻止 O. cumana 与根血管系统的连接,提供对向日葵列当 E 种的抗性。我们使用两个分离群体通过数量性状基因座作图定位了 HaOr5 基因的一个单一位置。通过全基因组关联分析鉴定了 HaOr5 基因的相同位置。使用包含数千个 F2 植物的大型群体,我们将 HaOr5 基因的位置限制在 193kb 的基因组区域内。通过对含有主要抗性基因 HaOr5 的抗性系进行全基因组测序,我们鉴定了一个包含潜在抗性基因簇的复杂基因组区域的大片段插入。

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