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首页> 外文期刊>Fungal Genetics and Biology >Genetic mapping of 14 avirulence genes in an EU-B04x1639 progeny of Venturia inaequalis.
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Genetic mapping of 14 avirulence genes in an EU-B04x1639 progeny of Venturia inaequalis.

机译:不等性文丘疹的EU-B04x1639后代中14个无毒力基因的遗传作图。

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摘要

Durable resistance to apple scab (Venturia inaequalis (Cke) Wint; anamorph Spilocaea pomi Fries) is one of the major goals of apple (Malus) breeding programs. Since current scab resistance breeding is heavily reliant on genes with gene-for-gene relationships, a good understanding of the genetic basis of host-pathogen interactions needs to be developed for this strategy to be successful. While the genomic organization of apple scab resistance genes has been studied extensively, little is known about the avirulence genes in the pathogen. The progeny of a cross of European V. inaequalis race (1) isolate EU-B04 and race (1,2,8,9) isolate 1639 was used to generate a genetic map based on microsatellite and AFLP markers, and investigated for inheritance of avirulence traits on 20 Malus accessions representing 17 scab resistance genes. The accessions comprised scab differential hosts (0), (1), (2), (8), and (9), and hosts carrying known as well as not previously reported secondary resistance genes, including some identified in crosses that have resistant accessions 'Geneva', 'Dolgo', Malus baccata jackii, M. micromalus, or 'Antonovka' in their pedigree. The latter genes appear to be narrow spectrum genes that showed gene-for-gene relationships as a segregation ratio of Avr:avr=1:1 was observed on 12 accessions, while a ratio of 3:1 was observed on five accessions and a ratio of 7:1 on one host. All progenies were shown to be pathogenic, as all of them were able to infect hosts (0) and (1). A genetic map consisting of 15 major linkage groups (LGs) and spanning 972 cM was generated with the aid of 156 markers. The map position of 12 avirulence traits was determined: eight avirulence genes mapped into two separate clusters (1: AvrVdg2, AvrVv1, AvrVu1, AvrVrjrd; and 2: AvrVu2, AvrVh3.2, AvrVs1, AvrVu4), while four avirulence genes (AvrRvi8, AvrVv2, AvrVt57 and AvrVsv) mapped to different LGs. AvrRvi2 and AvrRvi9 also are genetically linked, but showed an interaction with AvrRvi8, the nature of which is unclear. While AvrRvi8 segregated at 1:1 ratio, the other two Avrs segregated at 3:1 ratios. However, all progeny avirulent on hosts (2) and (9) were also avirulent on host (8) and further research is required to determine the avirulence gene relationships. A further two independently segregating loci, AvrRvi1 and AvrRvi6, identified in previous studies, were mapped by inference based on their known linkage to SSR markers. The clustering of avirulence genes in V. inaequalis reflecting the clustering of resistance genes in Malus suggests this pathosystem is a classical example of an "arms race" between host and pathogen. This also seems to apply to the narrow spectrum scab resistance genes, which may imply a larger role in plant defense for these genes than has been assumed to date.
机译:持久抵抗苹果黑星病( Venturia inaequalis (Cke)Wint;无性系 Spilocaea pomi 薯条)是苹果( Malus )的主要目标之一繁殖计划。由于当前的sc疮抗性育种在很大程度上依赖于具有基因对基因关系的基因,因此需要发展对宿主-病原体相互作用的遗传基础的良好理解才能使该策略成功。尽管已经对苹果黑星病抗性基因的基因组结构进行了广泛的研究,但对于病原体中的无毒力基因知之甚少。欧洲五号杂交的后代。不等种族(1)分离株EU-B04和种族(1,2,8,9)分离株1639用于生成基于微卫星和AFLP标记的遗传图谱,并研究了20 <代表17种抗ab疮基因的i> Malus 。这些种质包括结differential病的差异宿主(0),(1),(2),(8)和(9),以及携带已知和先前未报道的次级抗性基因的宿主,包括在具有抗性种质的杂交中鉴定的一些'日内瓦','Dolgo',百里香(Malus baccata jackii), M。微小谱系,或“谱系”中的“ Antonovka”。后一个基因似乎是窄谱基因,显示了基因与基因之间的关系,因为在12个种质中观察到 Avr:avr = 1:1的分离比,而在5个种质上观察到,并且在一个宿主上的比例为7:1。所有后代均具有致病性,因为它们均能够感染宿主(0)和(1)。借助156个标记,生成了由15个主要连锁组(LG)和跨越972 cM组成的遗传图谱。确定了12个无毒力性状的图谱位置:将8个无毒力基因映射到两个单独的簇中(1: AvrVdg2 , AvrVv1 , AvrVu1 AvrVrjrd ;和2: AvrVu2 , AvrVh3.2 , AvrVs1 , AvrVu4 ),而映射到不同LG的四个无毒力基因( AvrRvi8 , AvrVv2 , AvrVt57 和 AvrVsv )。 AvrRvi2 和 AvrRvi9 也具有遗传联系,但显示出与 AvrRvi8 的相互作用,其性质尚不清楚。 AvrRvi8 以1:1的比例分离,而其他两个 Avr 则以3:1的比例分离。但是,宿主(2)和(9)上所有无毒的子代在宿主(8)上也无毒,因此需要进一步研究以确定无毒力基因之间的关系。在先前研究中确定的另外两个独立分离的基因座 AvrRvi1 和 AvrRvi6 ,根据它们与SSR标记的已知联系,通过推论进行了定位。 V中无毒力基因的聚类。不等式反映了抗性基因在“苹果”中的聚集,表明这种病理系统是宿主与病原体之间“军备竞赛”的经典例子。这似乎也适用于窄谱sc疮抗性基因,这可能暗示着这些基因在植物防御中的作用比迄今所假定的更大。

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