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基于同源重组的小麦条纹花叶病毒和小麦花叶病毒抗性基因Wsm3从中间偃麦草向小麦的转移及分子细胞遗传学定位

Homoeologous recombination-based transfer and molecular cytogenetic mapping of a wheat streak mosaic virus and Triticum mosaic virus resistance gene Wsm3 from Thinopyrum intermedium to wheat.

作者信息

Danilova Tatiana V, Zhang Guorong, Liu Wenxuan, Friebe Bernd, Gill Bikram S

机构信息

Department of Plant Pathology, Wheat Genetics Resource Center, Throckmorton Plant Sciences Center, Kansas State University, Manhattan, KS, 66506-5502, USA.

Agricultural Research Center-Hays, Kansas State University, Hays, KS, 67601, USA.

出版信息

Theor Appl Genet. 2017 Mar;130(3):549-556. doi: 10.1007/s00122-016-2834-8. Epub 2016 Nov 29.

Abstract

Here, we report the production of a wheat- Thinopyrum intermedium recombinant stock conferring resistance to wheat streak mosaic virus and Triticum mosaic virus. Wheat streak mosaic caused by the wheat streak mosaic virus (WSMV) is an important disease of bread wheat (Triticum aestivum) worldwide. To date, only three genes conferring resistance to WSMV have been named and two, Wsm1 and Wsm3, were derived from the distantly related wild relative Thinopyrum intermedium. Wsm3 is only available in the form of a compensating wheat-Th. intermedium whole-arm Robertsonian translocation T7BS·7S#3L. Whole-arm alien transfers usually suffer from linkage drag, which prevents their use in cultivar improvement. Here, we report ph1b-induced homoeologous recombination to shorten the Th. intermedium segment and recover a recombinant chromosome consisting of the short arm of wheat chromosome 7B, part of the long arm of 7B, and the distal 43% of the long arm derived from the Th. intermedium chromosome arm 7S#3L. The recombinant chromosome T7BS·7BL-7S#3L confers resistance to WSMV at 18 and 24 °C and also confers resistance to Triticum mosaic virus, but only at 18 °C. Wsm3 is the only gene conferring resistance to WSMV at a high temperature level of 24 °C. We also developed a user-friendly molecular marker that will allow to monitor the transfer of Wsm3 in breeding programs. Wsm3 is presently being transferred to adapted hard red winter wheat cultivars and can be used directly in wheat improvement.

摘要

在此,我们报道了一种赋予小麦对小麦线条花叶病毒和小麦花叶病毒抗性的小麦 - 中间偃麦草重组种质。由小麦线条花叶病毒(WSMV)引起的小麦线条花叶病是全球面包小麦(普通小麦)的一种重要病害。迄今为止,仅鉴定出三个赋予对WSMV抗性的基因,其中两个,即Wsm1和Wsm3,源自亲缘关系较远的野生近缘种中间偃麦草。Wsm3仅以一种补偿性的小麦 - 中间偃麦草全臂罗伯逊易位T7BS·7S#3L的形式存在。全臂异源转移通常会受到连锁累赘的影响,这阻碍了它们在品种改良中的应用。在此,我们报道了利用ph1b诱导的同源重组来缩短中间偃麦草片段,并获得一条由小麦7B染色体短臂、7B染色体长臂的一部分以及源自中间偃麦草7S#3L染色体臂长臂远端43%组成的重组染色体。重组染色体T7BS·7BL - 7S#3L在18℃和24℃时赋予对WSMV的抗性,并且在18℃时也赋予对小麦花叶病毒的抗性,但仅在18℃时。Wsm3是唯一在24℃高温水平下赋予对WSMV抗性的基因。我们还开发了一种用户友好型分子标记,可用于监测育种计划中Wsm3的转移。目前,Wsm3正在被转移到适应性硬红冬小麦品种中,并可直接用于小麦改良。

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