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首页> 外文期刊>Journal of plant interactions >An expanded role of the SNARE-containing regulon as it relates to the defense process that Glycine max has to Heterodera glycines
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An expanded role of the SNARE-containing regulon as it relates to the defense process that Glycine max has to Heterodera glycines

机译:含有纳雷的调节件的扩展作用,因为它涉及甘氨酸Max对veridodera甘氨酸的防御过程

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The defense regulon has been defined genetically in Arabidopsis thaliana to involve the syntaxin PENETRATION1 ( PEN1 ), the secreted glucosidase ( PEN2 ) and an ATP-binding cassette (ABC) transporter ( PEN3 ). Experiments in Glycine max (soybean) have identified homologous genes being expressed in root cells undergoing defense processes to Heterodera glycines parasitism. These experiments have not examined proteins involved in cargo delivery to the infection site. A good candidate fulfilling this role would be myosin XI. In related studies, prior microscopic analyses have shown the accumulation of callose at these defense sites. Experiments presented here show that callose synthase expression impairs H.?glycines parasitism. The experiments presented here have expanded on prior results demonstrating the central defense role of the plant vesicular trafficking apparatus and callose synthase to the defense process that G.?max has toward H.?glycines parasitism.
机译:防御调节件已在拟南芥中遗传定义,以涉及语法渗透1(PEN1),分泌的葡糖苷酶(PEN2)和ATP结合盒(ABC)转运蛋白(PEN3)。 甘氨酸Max(大豆)的实验已经鉴定出在经过防御过程的根部细胞中表达的同源基因,以至于veridodera甘氨酸寄生寄生。 这些实验没有检查蛋白质涉及货物递送给感染部位。 一个良好的候选人实现这一角色将是迈星XI。 在相关的研究中,现有的微观分析显示了这些防御网站上的胼ins。 本文提出的实验表明,调用合成酶表达损害H.?甘蓝苷寄生。 这里呈现的实验在现有结果上扩展了展示植物荚果贩运设备的中央防御作用,并核糖合成酶的防御过程,即G.?max对H.?甘露糖寄生寄生作用。

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