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发现并精细定位赋予野生大麦抗禾柄锈菌的新基因 Rph28。

Discovery and fine mapping of Rph28: a new gene conferring resistance to Puccinia hordei from wild barley.

机构信息

Plant Breeding Institute Cobbitty, School of Life and Environmental Sciences, University of Sydney, Narellan, NSW, Australia.

School of Agriculture, Food and Wine, University of Adelaide, Waite Campus, Urrbrae, SA, 5064, Australia.

出版信息

Theor Appl Genet. 2021 Jul;134(7):2167-2179. doi: 10.1007/s00122-021-03814-1. Epub 2021 Mar 28.

Abstract

A new gene Rph28 conferring resistance to barley leaf rust was discovered and fine-mapped on chromosome 5H from wild barley. Leaf rust is a highly destructive disease of barley caused by the fungal pathogen Puccinia hordei. Genetic resistance is considered to be the most effective, economical and eco-friendly approach to minimize losses caused by this disease. A study was undertaken to characterize and fine map a seedling resistance gene identified in a Hordeum vulgare ssp. spontaneum-derived barley line, HEB-04-101, that is broadly effective against a diverse set of Australian P. hordei pathotypes. Genetic analysis of an F population derived from a cross between HEB-04-101 and the H. vulgare cultivar Flagship (seedling susceptible) confirmed the presence of a single dominant gene for resistance in HEB-04-101. Selective genotyping was performed on representative plants from non-segregating homozygous resistant and homozygous susceptible F families using the targeted genotyping-by-sequencing (tGBS) assay. Putatively linked SNP markers with complete fixation were identified on the long arm of chromosome 5H spanning a physical interval between 622 and 669 Mb based on the 2017 Morex barley reference genome assembly. Several CAPS (cleaved amplified polymorphic sequences) markers were designed from the pseudomolecule sequence of the Morex assembly (v1.0 and v2.0), and 16 polymorphic markers were able to delineate the RphHEB locus to a 0.05 cM genetic interval spanning 98.6 kb. Based on its effectiveness and wild origin, RphHEB is distinct from all other designated Rph genes located on chromosome 5H and therefore the new locus symbol Rph28 is recommended for RphHEB in accordance with the rules and cataloguing system of barley gene nomenclature.

摘要

一个新的基因 Rph28 被发现,它赋予野生大麦对大麦叶锈病的抗性,并被精细定位在 5H 染色体上。叶锈病是一种由真菌病原体禾柄锈菌引起的高度破坏性大麦疾病。遗传抗性被认为是最有效、经济和环保的方法,可以最大限度地减少这种疾病造成的损失。本研究旨在对源自野生大麦亚种 Hordeum vulgare ssp. spontaneum 的大麦系 HEB-04-101 中鉴定的幼苗抗性基因进行特征描述和精细定位,该基因对一系列不同的澳大利亚禾柄锈菌生理小种具有广泛的有效性。HEB-04-101 与 H. vulgare 品种 Flagship(幼苗易感性)杂交产生的 F1 群体的遗传分析证实,HEB-04-101 中存在一个单一的显性抗源基因。利用靶向基因分型测序(tGBS)分析,对非分离纯合抗性和纯合敏感 F 家系的代表性植株进行了选择性基因分型。根据 2017 年 Morex 大麦参考基因组组装,在 5H 染色体的长臂上确定了与假定连锁的 SNP 标记,这些标记在物理区间 622-669 Mb 内完全固定。根据 Morex 组装体(v1.0 和 v2.0)的拟南芥序列设计了几个 CAPS(切割扩增多态性序列)标记,16 个多态性标记能够将 RphHEB 基因座划定到一个 0.05 cM 的遗传区间,跨越 98.6 kb。根据其有效性和野生起源,RphHEB 与位于 5H 染色体上的所有其他指定的 Rph 基因不同,因此建议根据大麦基因命名规则和编目系统,将新的基因座符号 Rph28 用于 RphHEB。

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