首页> 美国卫生研究院文献>PLoS Clinical Trials >The Phytophthora sojae Avirulence Locus Avr3c Encodes a Multi-Copy RXLR Effector with Sequence Polymorphisms among Pathogen Strains
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The Phytophthora sojae Avirulence Locus Avr3c Encodes a Multi-Copy RXLR Effector with Sequence Polymorphisms among Pathogen Strains

机译:大豆疫霉无毒力基因座Avr3c编码病原菌之间具有序列多态性的多拷贝RXLR效应子。

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摘要

Root and stem rot disease of soybean is caused by the oomycete Phytophthora sojae. The avirulence (Avr) genes of P. sojae control race-cultivar compatibility. In this study, we identify the P. sojae Avr3c gene and show that it encodes a predicted RXLR effector protein of 220 amino acids. Sequence and transcriptional data were compared for predicted RXLR effectors occurring in the vicinity of Avr4/6, as genetic linkage of Avr3c and Avr4/6 was previously suggested. Mapping of DNA markers in a F2 population was performed to determine whether selected RXLR effector genes co-segregate with the Avr3c phenotype. The results pointed to one RXLR candidate gene as likely to encode Avr3c. This was verified by testing selected genes by a co-bombardment assay on soybean plants with Rps3c, thus demonstrating functionality and confirming the identity of Avr3c. The Avr3c gene together with eight other predicted genes are part of a repetitive segment of 33.7 kb. Three near-identical copies of this segment occur in a tandem array. In P. sojae strain P6497, two identical copies of Avr3c occur within the repeated segments whereas the third copy of this RXLR effector has diverged in sequence. The Avr3c gene is expressed during the early stages of infection in all P. sojae strains examined. Virulent alleles of Avr3c that differ in amino acid sequence were identified in other strains of P. sojae. Gain of virulence was acquired through mutation and subsequent sequence exchanges between the two copies of Avr3c. The results illustrate the importance of segmental duplications and RXLR effector evolution in the control of race-cultivar compatibility in the P. sojae and soybean interaction.
机译:大豆根腐病是由大豆疫霉菌引起的。大豆假单胞菌的无毒力(Avr)基因控制种族-品种的相容性。在这项研究中,我们确定了大豆假单胞菌Avr3c基因,并表明它编码了220个氨基酸的RXLR效应蛋白。比较了序列和转录数据,以预测在Avr4 / 6附近发生的预测RXLR效应子,因为先前已经提出了Avr3c和Avr4 / 6的遗传联系。进行了F2群体中DNA标记的定位,以确定所选的RXLR效应子基因是否与Avr3c表型共分离。结果表明一个RXLR候选基因可能编码Avr3c。通过在带有Rps3c的大豆植物上通过共轰击试验测试选定的基因来验证这一点,从而证明了其功能并确认了Avr3c的身份。 Avr3c基因与其他八个预测基因一起是33.7 kb重复片段的一部分。此段的三个近似相同的副本以串联阵列的形式出现。在大豆疫霉菌株P6497中,Avr3c的两个相同拷贝出现在重复的片段内,而该RXLR效应子的第三拷贝在序列上发散了。 Avr3c基因在感染的所有大豆疫霉菌株的感染早期均表达。在其他 P菌株中鉴定出了氨基酸序列不同的 Avr3c 强毒等位基因。豆酱。通过突变和 Avr3c 的两个副本之间的后续序列交换,获得了毒力。结果表明节段重复和RXLR效应子进化在控制 P中的种族-品种兼容性中的重要性。大豆与大豆的相互作用。

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