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Tomato resistance to Alternaria stem canker: localization in host genotypes and functional expression compared to non-host resistance

机译:番茄对Alternaria茎溃疡病的抗性:与非宿主抗性相比,宿主基因型和功能表达的定位

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摘要

The Alternaria stem canker resistance locus (Asc-locus), involved in resistance to the fungal pathogen Alternaria alternata f. sp. lycopersici and in insensitivity to host-specific toxins (AAL-toxins) produced by the pathogen, was genetically mapped on the tomato genome. Susceptibility and resistance were assayed by testing a segregating F2 population for sensitivity to AAL-toxins in leaf bioassays. Linkage was observed to phenotypic markers solanifolium and sunny, both on chromosome 3. For the Asc-locus, a distance of 18 centiMorgan to solanifolium was calculated, corresponding to position 93 on chromosome 3. This map position of the resistance locus turned out to be the same in three different resistant tomato accessions, one Dutch and two American, that are at least 40 years apart. AAL-toxin sensitivity in susceptible and resistant tomato genotypes was compared with AAL-toxin sensitivity in a non-host Nicotiana tabacum during different levels of plant cell development. In susceptible and resistant tomato genotypes, inhibitory effects were demonstrated at all levels, except for leaves of resistant genotypes. However, during pollen and root development, inhibitory effects on susceptible genotypes were larger than on resistant genotypes. In the non-host Nicotiana tabacum, hardly any effects of AAL-toxins were demonstrated. Apparently, a cellular target site is present in tomato, but not in Nicotiana tabacum. It was concluded that three levels of AAL-toxin sensitivity exist: (1) a susceptible host sensitivity, (2) a resistant host sensitivity, (3) a non-host sensitivity, and that the resistance mechanism operating in tomato is different from that operating in Nicotiana tabacum.
机译:链格孢属(Alternaria)茎溃疡病抗性位点(Asc-locus),涉及对真菌病原体链格孢(Alternaria alternata)f的抗性。 sp。在番茄基因组上遗传定位了番茄红素菌,并且对由病原体产生的宿主特异性毒素(AAL毒素)不敏感。通过在叶子生物测定法中测试分离的F2群体对AAL毒素的敏感性来测定易感性和耐药性。观察到与表型标记solanifolium和晴天相关联,二者均位于3号染色体上。对于Asc基因座,计算到solanifolium的距离为18厘摩,对应于3号染色体上的位置93。该抗性基因座的图谱位置被证明是至少相距40年的三种不同的抗性番茄品种,一种是荷兰人,两种是美国人,同样。在不同水平的植物细胞发育过程中,将易感和抗性番茄基因型中的AAL毒素敏感性与非寄主烟草中的AAL毒素敏感性进行了比较。在易感和抗性番茄基因型中,除抗性基因型叶片外,均在所有水平上均表现出抑制作用。但是,在花粉和根发育过程中,对易感基因型的抑制作用要大于对耐药基因型的抑制作用。在非寄主烟草中,几乎没有显示出AAL毒素的任何作用。显然,番茄中存在细胞靶位点,但烟草中不存在。结论是,存在三种水平的AAL毒素敏感性:(1)易感宿主敏感性;(2)抗性宿主敏感性;(3)非宿主敏感性;番茄中的抗药性机制与AAL毒素敏感性不同。在烟草中操作。

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