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Global Expression Patterns of Three Festuca Species Exposed to Different Doses of Glyphosate Using the Affymetrix GeneChip Wheat Genome Array

机译:使用Affymetrix基因芯片小麦基因组芯片对三种不同剂量草甘膦的羊茅的全球表达模式

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摘要

Glyphosate has been shown to act as an inhibitor of an aromatic amino acid biosynthetic pathway, while other pathways that may be affected by glyphosate are not known. Cross species hybridizations can provide a tool for elucidating biological pathways conserved among organisms. Comparative genome analyses have indicated a high level of colinearity among grass species and Festuca, on which we focus here, and showed rearrangements common to the Pooideae family. Based on sequence conservation among grass species, we selected the Affymetrix GeneChip Wheat Genome Array as a tool for the analysis of expression profiles of three Festuca (fescue) species with distinctly different tolerances to varying levels of glyphosate. Differences in transcript expression were recorded upon foliar glyphosate application at 1.58 mM and 6.32 mM, representing 5% and 20%, respectively, of the recommended rate. Differences highlighted categories of general metabolic processes, such as photosynthesis, protein synthesis, stress responses, and a larger number of transcripts responded to 20% glyphosate application. Differential expression of genes encoding proteins involved in the shikimic acid pathway could not be identified by cross hybridization. Microarray data were confirmed by RT-PCR and qRT-PCR analyses. This is the first report to analyze the potential of cross species hybridization in Fescue species and the data and analyses will help extend our knowledge on the cellular processes affected by glyphosate.
机译:草甘膦已显示出可作为芳香族氨基酸生物合成途径的抑制剂,而尚不清楚其他可能受草甘膦影响的途径。跨物种杂交可以为阐明生物之间保守的生物途径提供一种工具。比较基因组分析表明,我们在此重点关注的草种和Festuca之间存在较高的共线性,并显示了Pooideae家族共有的重排。基于草种之间的序列保守性,我们选择了Affymetrix GeneChip小麦基因组阵列作为分析三种对不同草甘膦耐受性截然不同的Festuca(羊茅)物种表达谱的工具。草甘膦叶面施用1.58μmM和6.32μmM时记录的转录表达差异,分别代表推荐率的5%和20%。差异突出了一般代谢过程的类别,例如光合作用,蛋白质合成,应激反应,以及大量的转录本对20%的草甘膦施用有反应。交叉杂交不能鉴定编码the草酸途径中涉及的蛋白质的基因的差异表达。通过RT-PCR和qRT-PCR分析确认了微阵列数据。这是第一份分析羊茅物种间跨物种杂交潜力的报告,数据和分析将有助于扩大我们对受草甘膦影响的细胞过程的认识。

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