Arraiano L S, Kirby J, Brown J K M
Disease and Stress Biology Department, John Innes Centre, Norwich Research Park, Norwich, UK.
Theor Appl Genet. 2007 Dec;116(1):113-22. doi: 10.1007/s00122-007-0651-9. Epub 2007 Oct 9.
Septoria tritici blotch, caused by Mycosphaerella graminicola (anamorph Septoria tritici), is one of the most important foliar diseases of wheat in much of the world. Susceptibility of host plants to septoria was investigated by cytogenetic analysis. A line of Hobbit sib (Dwarf A) in which translocated chromosome 5BS-7BS was nominally substituted by chromosome arms 5BS and 7BS from Bezostaya 1 had a much lower mean level of septoria than Hobbit sib itself. By the use of microsatellite markers, it was shown that the 5BS arm of this line had in fact been substituted by the homologous arm of Chinese Spring. Further investigation of substitution and nullitetrasomic lines demonstrated that chromosome arm 5BS of Hobbit sib possesses genes, which either promote susceptibility to septoria or suppress resistance. This chromosome arm has previously been shown to carry genes for resistance to yellow (stripe) rust and powdery mildew, implying a trade-off between resistances to these two diseases and to septoria in wheat breeding. Bezostaya 1 was found to have specific resistance to M. graminicola isolate IPO323, probably controlled by the gene Stb6 on chromosome arm 3AS, present in numerous wheat cultivars. It also had partial resistance to septoria distributed over several chromosomes, which may explain the value of this cultivar as a source of septoria resistance.
由小麦壳针孢菌(无性型为小麦壳针孢)引起的小麦叶枯病是世界上许多地区小麦最重要的叶部病害之一。通过细胞遗传学分析研究了寄主植物对叶枯病的易感性。一种霍比特姊妹系(矮秆A),其中5BS - 7BS易位染色体被来自别佐斯塔亚1号的5BS和7BS染色体臂名义上替代,其叶枯病的平均发病水平比霍比特姊妹系本身低得多。通过使用微卫星标记表明,该品系的5BS染色体臂实际上已被中国春小麦的同源染色体臂所替代。对替代系和缺四体品系的进一步研究表明,霍比特姊妹系的5BS染色体臂含有一些基因,这些基因要么促进对叶枯病的易感性,要么抑制抗性。此前已表明该染色体臂携带抗条锈病和白粉病的基因,这意味着在小麦育种中,对这两种病害和叶枯病的抗性之间存在权衡。发现别佐斯塔亚1号对小麦壳针孢菌分离株IPO323具有特异性抗性,可能由位于3AS染色体臂上的Stb6基因控制,许多小麦品种中都存在该基因。它对分布在几条染色体上的叶枯病也具有部分抗性,这可能解释了该品种作为叶枯病抗性来源的价值。