首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Early transcriptional responses to soybean cyst nematode HG Type 0 show genetic differences among resistant and susceptible soybeans
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Early transcriptional responses to soybean cyst nematode HG Type 0 show genetic differences among resistant and susceptible soybeans

机译:早期转录对大豆囊肿线虫HG型0显示抗性和易感大豆之间的遗传差异

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Key message Root transcriptome profiling of three soybean cultivars and a wild relative infected with soybean cyst nematode at migratory phase revealed differential resistance pathway responses between resistant and susceptible genotypes. The soybean cyst nematode (SCN), Heterodera glycines, is the most serious pathogen of soybean production throughout the world. Using resistant cultivars is the primary management strategy against SCN infestation. To gain insight into the still obscure mechanisms of genetic resistance to nematodes in different soybean genotypes, RNA-Seq profiling of the roots of Glycine max cv. Peking, Fayette, Williams 82, and a wild relative (Glycine soja PI 468916) was performed during SCN infection at the migratory phase. The analysis showed statistically significant changes of expression beginning at eight hours after inoculation in genes associated with defense mechanisms and pathways, such as the phenylpropanoid biosynthesis pathway, plant innate immunity and hormone signaling. Our results indicate the importance of the early plant response to migratory phase nematodes in pathogenicity determination. The transcriptome changes occurring during early SCN infection included a number of genes and pathways specific to the different resistant genotypes. We observed the most extensive resistant transcriptome reaction in PI 468916, where the resistant response was qualitatively different from that of commonly used G. max varieties.
机译:关键信息三种大豆品种转录组谱分析及遍布迁移相的大豆囊肿线虫的野生相对感染耐腐蚀性基因型之间的差异抗性途径应对。大豆囊肿线虫(ScN),viderodera甘露糖苷,是全世界大豆产量最严重的病原体。使用抗性品种是针对SCN侵扰的主要管理策略。在不同大豆基因型中深入了解遗传性抗性遗传抵抗力的机制,甘氨酸最大CV的根部的RNA-SEQ谱分析。在候补阶段的SCN感染期间,在SCN感染期间进行北京,Fayette,威廉姆斯82和野生相对(甘氨酸SOJA PI 468916)。分析显示出在与防御机制和途径相关的基因中接种后八小时开始表达的统计学显着变化,例如苯丙醇化生物合成途径,植物先天免疫和激素信号传导。我们的结果表明早期植物对致病性测定中迁移阶段线虫的反应的重要性。早期SCN感染期间发生的转录组变化包括许多特异于不同抗性基因型的基因和途径。我们观察到PI 468916中最广泛的抗性转录组反应,其中抗性反应与常用G. Max品种的抗性响应不同。

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