Suppr超能文献

“Steptoe”דMorex”春大麦杂交组合中对条斑病(Pyrenophora graminea)抗性的株系特异性数量性状位点

Isolate-specific QTLs of resistance to leaf stripe (Pyrenophora graminea) in the 'Steptoe' x 'Morex' spring barley cross.

作者信息

Arru L, Francia E, Pecchioni N

机构信息

Istituto Sperimentale per la Cerealicoltura, Sezione di Fiorenzuola, Via S. Protaso 302, Italy.

出版信息

Theor Appl Genet. 2003 Feb;106(4):668-75. doi: 10.1007/s00122-002-1115-x. Epub 2002 Oct 19.

Abstract

Leaf stripe caused by the fungus Pyrenophora graminea represents a serious threat to grain yield in organically grown barley and in conventional Nordic and Mediterranean districts, for which resistant cultivars are necessary. A medium-density, molecular marker map derived from a 'Steptoe' (partially resistant) x 'Morex' (susceptible) spring barley cross and its derived doubled-haploid mapping population inoculated with the fungus made it possible to identify QTLs of resistance to leaf stripe. In order to investigate isolate-specificity of partial resistance, the 'Steptoe' x 'Morex' segregating population was inoculated with two highly virulent P. graminea isolates, Dg2 and Dg5. The present study demonstrates that partial resistance to leaf stripe of cv 'Steptoe' is governed in part by shared loci and in part by isolate-specific ones. One QTL is common to the resistance for the two isolates, on the long arm of chromosome 2 (2H), two QTLs are linked on chromosome 3 (3H), and the remaining two are isolate-specific, respectively for isolate Dg2 on chromosome 2 (2H) and for isolate Dg5 on chromosome 7 (5H). The QTL in common is that with the major effect on the resistance for each isolate, explaining 18.3% and 30.9% R(2) respectively for Dg2 and Dg5. The isolate-specific QTLs mapped in the 'Steptoe' x 'Morex' barley reference map support the assumption of Parlevliet and Zadoks (1977) that partial resistance may be due to minor gene-for-minor-gene interactions. Map comparisons of the QTLs with the known qualitative resistance genes to leaf stripe, Rdg1 (2H) and Rdg2 (7H), as well as with other QTLs of partial resistance in barley, show that the QTL for resistance to both isolates mapped on the long arm of chromosome 2 (2H) does not coincide with the qualitative Rdg1 gene but is linked to it at about 30 cM. One isolate-specific QTL of resistance to P. graminea, mapped on the short arm of chromosome 2 (2H), is coincident with a QTL for resistance to Pyrenophora teres previously mapped in the 'Steptoe' x 'Morex' cross.

摘要

由真菌麦类核腔菌(Pyrenophora graminea)引起的叶条纹病对有机种植大麦以及北欧和地中海传统种植区的谷物产量构成严重威胁,因此需要抗性品种。利用来自“Steptoe”(部分抗性)דMorex”(感病)春大麦杂交组合及其衍生的双单倍体定位群体构建了一个中密度分子标记图谱,并对其接种该真菌,从而能够鉴定出对叶条纹病的抗性QTL。为了研究部分抗性的菌株特异性,用两种高毒力的麦类核腔菌菌株Dg2和Dg5接种“Steptoe”דMorex”分离群体。本研究表明,“Steptoe”品种对叶条纹病的部分抗性部分由共享位点控制,部分由菌株特异性位点控制。一个QTL对两种菌株的抗性是共同的,位于2号染色体(2H)长臂上,两个QTL在3号染色体(3H)上连锁,其余两个是菌株特异性的,分别位于2号染色体(2H)上针对菌株Dg2和7号染色体(5H)上针对菌株Dg5。共同的QTL对每种菌株的抗性起主要作用,分别解释Dg2和Dg5的18.3%和30.9%的R²。在“Steptoe”דMorex”大麦参考图谱中定位的菌株特异性QTL支持了Parlevliet和Zadoks(1977)的假设,即部分抗性可能是由于微效基因对微效基因的相互作用。将这些QTL与已知的对叶条纹病的定性抗性基因Rdg1(2H)和Rdg2(7H)以及大麦中其他部分抗性QTL进行图谱比较,结果表明,位于2号染色体(2H)长臂上对两种菌株都有抗性的QTL与定性Rdg1基因不重合,但与其在约30 cM处连锁。一个对麦类核腔菌抗性的菌株特异性QTL位于2号染色体(2H)短臂上,与先前在“Steptoe”דMorex”杂交组合中定位的对网斑病菌(Pyrenophora teres)抗性的QTL重合。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验