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Xylella fastidiosa gene expression analysis by DNA microarrays

机译:木薯fastidiosa基因表达分析

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摘要

Xylella fastidiosa genome sequencing has generated valuable data by identifying genes acting either on metabolic pathways or in associated pathogenicity and virulence. Based on available information on these genes, new strategies for studying their expression patterns, such as microarray technology, were employed. A total of 2,600 primer pairs were synthesized and then used to generate fragments using the PCR technique. The arrays were hybridized against cDNAs labeled during reverse transcription reactions and which were obtained from bacteria grown under two different conditions (liquid XDM2 and liquid BCYE). All data were statistically analyzed to verify which genes were differentially expressed. In addition to exploring conditions for X. fastidiosa genome-wide transcriptome analysis, the present work observed the differential expression of several classes of genes (energy, protein, amino acid and nucleotide metabolism, transport, degradation of substances, toxins and hypothetical proteins, among others). The understanding of expressed genes in these two different media will be useful in comprehending the metabolic characteristics of X. fastidiosa, and in evaluating how important certain genes are for the functioning and survival of these bacteria in plants.
机译:通过鉴定在代谢途径或相关致病性和毒力中起作用的基因,fastylosa迪氏菌基因组测序已产生了有价值的数据。基于这些基因的可用信息,采用了研究其表达模式的新策略,例如微阵列技术。总共合成了2600个引物对,然后使用PCR技术将其用于生成片段。将阵列与逆转录反应中标记的cDNA杂交,这些cDNA是从在两种不同条件(液体XDM2和液体BCYE)下生长的细菌获得的。对所有数据进行统计分析,以验证差异表达的基因。除了探索整枝线虫的全基因组转录组分析的条件外,本研究还观察到了几类基因(能量,蛋白质,氨基酸和核苷酸代谢,转运,物质降解,毒素和假设的蛋白质)之间的差异表达。其他)。理解这两种不同培养基中表达的基因将有助于理解耐食假单胞菌的代谢特性,并有助于评估某些基因对于这些细菌在植物中的功能和存活的重要性。

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