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Characterization of Rsg2.a3:A new greenbug resistance allele at the Rsg2 locus from wild barley(Hordeum vulgare ssp.spontaneum)
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作者 Xiangyang Xu Dolores Mornhinweg +4 位作者 Amy Bernardo Genqiao Li Ruolin Bian brian j.steffenson Guihua Bai 《The Crop Journal》 SCIE CSCD 2022年第6期1727-1732,共6页
Greenbug(Schizaphis graminum Rondani)is a destructive insect pest that not only damages plants,but also serves as a vector for many viruses.Host plant resistance is the preferred strategy for managing greenbug.Two gre... Greenbug(Schizaphis graminum Rondani)is a destructive insect pest that not only damages plants,but also serves as a vector for many viruses.Host plant resistance is the preferred strategy for managing greenbug.Two greenbug resistance genes,Rsg1 and Rsg2,have been reported in barley.To breed cultivars with effective resistance against various greenbug biotypes,additional resistance genes are urgently needed to sustain barley production.Wild barley accession WBDC053(PI 681777)was previously found to be resistant to several greenbug biotypes.In this study,a recombinant inbred line(RIL)population derived from Weskan×WBDC053 was evaluated for response to two greenbug biotypes(E and TX1)and genotyped using genotyping by sequencing(GBS).A set of 3347 high quality GBS-derived single nucleotide polymorphisms(SNPs)were then used to map the greenbug resistance gene in this wild barley accession.Linkage analysis placed the greenbug resistance gene in a 2.35 Mb interval(0-2,354,645 bp)in the terminal region of the short arm of chromosome 2H.This interval harbors 15 genes with leucine-rich-repeat(LRR)protein domains.An allelism test indicated that the greenbug resistance gene in WBDC053,designated Rsg2.a3,is likely allelic or closely linked to Rsg2.GBS-SNPs 2H_1318811and 2H_1839499 co-segregating with Rsg2.a3 in the RIL population were converted to Kompetitive allele specific PCR(KASP)markers KASP-Rsg2.a3-1 and KASP-Rsg2.a3-2,respectively.The two KASP markers can be used to select Rsg2.a3 and have the potential to tag Rsg2 in barley improvement programs. 展开更多
关键词 Barley Greenbug resistance gene KASP markers Genotyping by sequencing Linkage mapping
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大麦对秆锈病的持久抗性
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作者 brian j.steffenson 高家明 孙建伟 《麦类文摘》 1996年第3期13-19,共7页
自本世纪40年代中期以来,美国大平原北部和加拿大种植的大麦品种一直都抗小麦秆锈病菌(Puccinia graminis f.sp.tritici)引起的秆锈病。这种持久抗性主要受单基因Rpgl支配,该基因来自品种Wisconsin 37和一个未经改良的瑞士品种的单株选... 自本世纪40年代中期以来,美国大平原北部和加拿大种植的大麦品种一直都抗小麦秆锈病菌(Puccinia graminis f.sp.tritici)引起的秆锈病。这种持久抗性主要受单基因Rpgl支配,该基因来自品种Wisconsin 37和一个未经改良的瑞士品种的单株选系。在茁期,16~20 C下,携带Rpgl的大麦基因型对许多秆锈病致病型通常表现出低的中抗(meso-thetic)反应.在24~28C下为稍高的中抗反应。这种抗性表现为锈病侵染水平低,成株上夏孢子堆多半无侵染力。由于小麦秆锈病菌的某些基因型对大田携带该基因的品种有毒性,所以,Rpgl的反应方式是小种特异的。下列几种因素也许有助于大麦抗秆锈病的持久性:(1)大麦播种早,成熟也早,常常能躲避来自南方的秆锈菌种的危害;(2)1个或多个微效基因可能增强了已由Rpgl产生的抗性水平;(3)栽培小麦抗病品种和根除小檗降低了小麦秆锈菌有效群体的大小和潜在的新致病型的数量;(4)小麦秆锈菌和黑麦秆锈菌(P.g.f.sp.secalis)的强致病性小种尚未形成。1989年这种情况发生了变化,当时小麦秆锈菌一个强致病性小种(Pat-QCC)广泛分布于大平原地区,但Rpgl对小种QCC仍然有某种程度的抗性,因为在最近4个生长季(1989~1992)中,携带该基因的大麦品种的秆锈严重度一直是低到中等,产量损失轻微。已在大麦中鉴定到几个对小种QCC具有不完全抗性的材料,人们正在利用分子标记辅助选择来促进抗性基因从这些抗源向高代育种品系转移。 展开更多
关键词 小麦秆锈菌 小麦秆锈病 基因型 大麦品种 持久抗性 小种 致病型 抗性水平 产量损失 大平原
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