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首页> 外文期刊>Genetics and Molecular Research >Expression and validation of PvPGIP genes for resistance to white mold (Sclerotinia sclerotiorum) in common beans (Phaseolus vulgaris L.)
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Expression and validation of PvPGIP genes for resistance to white mold (Sclerotinia sclerotiorum) in common beans (Phaseolus vulgaris L.)

机译:PVPGGIP基因对常见豆类(Phopololusulus L.)抗白模(Sclerotinia sclerotiorum)的表达及验证

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The interaction between polygalacturonase-inhibiting proteins (PGIPs), produced by plants, and endopolygalacturonases (PGs), produced by fungi, limits the destructive potential of PGs and can trigger plant defense responses. This study aimed to i) investigate variation in the expression of different common bean (Phaseolus vulgaris L.) genotypes and its relationship with resistance to white mold (Sclerotinia sclerotiorum); ii) determine the expression levels of PvPGIP genes at different time points after inoculation with white mold; and iii) investigate differences in PvPGIP gene expression between two white mold isolates with different levels of aggressiveness. Four bean lines were analyzed, including two lines from a recurrent selection for white mold (50/5 and 84/6), one resistant line that was not adapted to Brazilian conditions (Cornell 605), and one susceptible line (Corujinha). Gene expression was investigated at 0, 1, 2, 3, and 5 days after inoculation. The isolate UFLA 03 caused no significant difference in the relative expression of any gene examined, and was inefficient in discriminating among the genotypes. For the isolate UFLA 116, all of the genes were differentially expressed, as they were associated with resistance to white mold, and the expressions increased until the third day after inoculation. The 50/5 line was not significantly different from the Corujinha line for all of the genes analyzed. However, this line had a resistance level that was similar to that of Cornell 605, according to the straw test. Therefore, the incorporation of PvPGIP genes can increase the resistance of lines derived from recurrent selection.
机译:由真菌产生的植物和内核天使酶(PGS)产生的聚偶乙醛酶酶抑制蛋白(PGIPS)之间的相互作用限制了PGS的破坏性潜力,并且可以引发植物防御反应。本研究旨在I)研究不同常见豆类(Phopololusulusus vulgaris L.)基因型的变异及其与抗白模的关系(Sclerotinia sclerotiorum); ii)用白色模具接种后确定不同时间点的PVPGIP基因的表达水平;和III)研究两种白色模具分离物与不同侵略性水平之间的PVPGIP基因表达的差异。分析了四条豆系,包括来自白色模具(50/5和84/6)的复发选择的两条线,不适应于巴西条件(康奈尔605)和一个易感线(Corujinha)。在接种后在0,1,2,3和5天中研究基因表达。分离物UFLA 03在检查的任何基因的相对表达中没有显着差异,并且在基因型中的区分中效率低下。对于分离物UFLA 116,所有基因差异地表达,因为它们与对白色模具的抗性相关,并且表达增加至接种后第三天。 50/5线与分析所有基因的Corujinha线没有显着差异。然而,根据秸秆测试,该线具有与康奈尔605类似的电阻水平。因此,PVPGIP基因的掺入可以增加衍生自复发选择的线的抗性。

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