番茄菌种溃疡病和萎蔫病抗性基因位点的分子分析

D. Karabulut, Ö. Çaliş
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引用次数: 0

摘要

番茄是世界上种植最广泛的蔬菜之一。然而,有几种疾病因素限制了番茄的生产。密歇根锁杆菌亚种。根瘤菌(Cmm)病原菌引起植物叶片萎蔫溃烂症状,番茄出现鸟眼症状,植株完全死亡。由于缺乏有效的防治方法,培育抗病番茄品种是当务之急。以NCEBR3易感番茄种子为原料,经甲基磺酸乙酯(EMS)诱变,获得了抗病番茄M3-9和M3-15植株。对番茄基因组的每条染色体,分别从单倍体和12条番茄染色体的两端选取24个SSR标记,研究了番茄易感植株和抗性植株的多态性差异。抗性突变体、M3-9、M3-15和易感原NCEBR3在5号染色体上发现了SSR13和SSRB18031标记的多态性。据推测,抗性基因位于抗病植物M3-9和M3-15的第5染色体上。进一步的精细定位研究将揭示控制细菌性溃疡病和萎蔫病菌的耐药基因的位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular analysis of resistance gene locus to bacterial canker and wilting disease in tomato mutants
The tomato plant is one of the most widely produced vegetables in the world. However, there are several disease factors which limit tomato production. The Clavibacter michiganensis subsp. michiganensis (Cmm) pathogen causes wilting and canker symptoms on the leaves of plants and bird’s eye symptoms on the tomato and then the plants completely die. Development of resistant tomato varieties is prerequisite due to absence of an effective control methods against the bacterial disease. The resistant M3-9 and M3-15 tomato plants have been developed because of mutation from susceptible NCEBR3 tomato seeds with ethyl methanosulfonate (EMS). For each chromosome of the tomato genome, 24 SSR markers were selected from each end of the haploid, 12 tomato chromosomes, and polymorphic differences between susceptible and resistant tomato plants were studied. Polymorphisms were found with SSR13 and SSRB18031 markers located on chromosome 5 with resistant mutants, M3-9, M3-15 and susceptible original NCEBR3 plants. It is envisaged that a resistance gene is located on the 5th chromosome of resistant M3-9 and M3-15 plants. Further fine mapping studies will reveal the location of the resistance gene(s) for controlling bacterial canker and wilting pathogen.
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