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Exocyst components promote an incompatible interaction between Glycine max (soybean) and Heterodera glycines (the soybean cyst nematode)

机译:EnoCyst组分促进甘氨酸Max(大豆)和viderodera甘氨酸(大豆囊肿线虫)之间不相容的相互作用

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Vesicle and target membrane fusion involves tethering, docking and fusion. The GTPase SECRETORY4 (SEC4) positions the exocyst complex during vesicle membrane tethering, facilitating docking and fusion. Glycine max (soybean) Sec4 functions in the root during its defense against the parasitic nematode Heterodera glycines as it attempts to develop a multinucleate nurse cell (syncytium) serving to nourish the nematode over its 30-day life cycle. Results indicate that other tethering proteins are also important for defense. The G. max exocyst is encoded by 61 genes: 5 EXOC1 (Sec3), 2 EXOC2 (Sec5), 5 EXOC3 (Sec6), 2 EXOC4 (Sec8), 2 EXOC5 (Sec10) 6 EXOC6 (Sec15), 31 EXOC7 (Exo70) and 8 EXOC8 (Exo84) genes. At least one member of each gene family is expressed within the syncytium during the defense response. Syncytium-expressed exocyst genes function in defense while some are under transcriptional regulation by mitogen-activated protein kinases (MAPKs). The exocyst component EXOC7-H4-1 is not expressed within the syncytium but functions in defense and is under MAPK regulation. The tethering stage of vesicle transport has been demonstrated to play an important role in defense in the G. max-H. glycines pathosystem, with some of the spatially and temporally regulated exocyst components under transcriptional control by MAPKs.
机译:囊泡和靶膜融合涉及束缚,对接和融合。 GTPase Secretory4(Sec4)定位在囊泡膜系上的外胚层复合物,促进对接和融合。甘氨酸Max(大豆)Sec4在其防御期间对寄生虫线虫的防御过程中的功能,因为它试图开发一种用于在其30天的生命周期内滋养线虫的多核护士细胞(Syncytium)。结果表明,其他束缚蛋白对防御也很重要。 G.Max ExoCyst由61基因编码:5 exoc1(sec3),2 exoc2(sec5),5 exoc3(sec6),2 exoc4(sec8),2 exoc5(sec10)6 exoc6(sec15),31 exoc6(exo70 )和8个Exoc8(Exo84)基因。在防御反应期间,每个基因家族的至少一个成员在合并症中表达。同性恋表达的外腹基因在防御中的功能,而有些是由丝裂原激活的蛋白激酶(MAPK)的转录调节。 ExoCyst组分Exoc7-H4-1在合色酸盐中不表达,但在防御中的功能并在MAPK调节下。已经证明了囊泡运输的束缚阶段在G.Max-H中的防御中起重要作用。甘氨酸危害系统,其中一些空间和时间监管的颈癌症的转录对照组分。

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