首页> 外文期刊>PLoS One >Conserved oligomeric Golgi (COG) complex genes functioning in defense are expressed in root cells undergoing a defense response to a pathogenic infection and exhibit regulation my MAPKs
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Conserved oligomeric Golgi (COG) complex genes functioning in defense are expressed in root cells undergoing a defense response to a pathogenic infection and exhibit regulation my MAPKs

机译:保守的低聚Golgi(COG)在防御中运作的复合基因被在经过对致病感染的抗辩反应的根部细胞中表达,并表现出我的麦地麦克斯

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The conserved oligomeric Golgi (COG) complex maintains correct Golgi structure and function during retrograde trafficking. Glycine max has 2 paralogs of each COG gene, with one paralog of each gene family having a defense function to the parasitic nematode Heterodera glycines . Experiments presented here show G . max COG paralogs functioning in defense are expressed specifically in the root cells (syncytia) undergoing the defense response. The expressed defense COG gene COG7-2-b is an alternate splice variant, indicating specific COG variants are important to defense. Transcriptomic experiments examining RNA isolated from COG overexpressing and RNAi roots show some COG genes co-regulate the expression of other COG complex genes. Examining signaling events responsible for COG expression, transcriptomic experiments probing MAPK overexpressing roots show their expression influences the relative transcript abundance of COG genes as compared to controls. COG complex paralogs are shown to be found in plants that are agriculturally relevant on a world-wide scale including Manihot esculenta , Zea mays , Oryza sativa , Triticum aestivum , Hordeum vulgare , S orghum bicolor , Brassica rapa , Elaes guineensis and Saccharum officinalis and in additional crops significant to U.S. agriculture including Beta vulgaris , Solanum tuberosum , Solanum lycopersicum and Gossypium hirsutum . The analyses provide basic information on COG complex biology, including the coregulation of some COG genes and that MAPKs functioning in defense influence their expression. Furthermore, it appears in G . max and likely other crops that some level of neofunctionalization of the duplicated genes is occurring. The analysis has identified important avenues for future research broadly in plants.
机译:保守的低聚Golgi(COG)复合物在逆行贩运期间保持正确的高尔基结构和功能。 Glycine Max具有每个COG基因的副蛋白酶,每个基因家族的一个副病剂具有向寄生线虫异源糖胺的防御功能。这里提出的实验显示g。在防御中的最大Cog旁边旁边表达在经过防御响应的根细胞(Syncytia)中表达。表达的防御COG基因COG7-2-B是另一种剪接变体,表明特定的齿轮变体对防御很重要。转录组实验检查RNA从齿膜过表达和RNAi根部分离的RNA显示出一些COG基因共调节其他嵌膜复合基因的表达。检查负责COG表达的信号传导事件,转录组实验探测MAPK过表达根部显示其表达与对照相比,影响COG基因的相对转录物丰度。 COG复合副寄生虫显示在农业上的植物中,这些植物在全球范围内,包括Manihot Esculenta,Zea Mays,Oryza Sativa,Triticum Aestivum,Hordeum Vulgare,S Orghum Bicolor,Brassica Rapa,Elaes Guineensis和Saccharum Officinalis和Saccharum Officinalis额外的农作物对美国农业有重要意义,包括β不寻常,茄属tuberosum,solanum lycopersicum和gossypium hirsutum。分析提供了有关COG复杂生物学的基本信息,包括一些COG基因的COSCURUCURACURATION和防御中的MAPKS影响其表达。此外,它出现在g中。最大且可能是其他作物,即发生重复基因的一定程度的新官能化。分析已经在植物中广泛确定了未来研究的重要途径。

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