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首页> 外文期刊>Microbial Ecology: An International Journal >Expression Analysis of the Impact of Culture Filtrates from the Biocontrol Agent, Phlebiopsis gigantea on the Conifer Pathogen, Heterobasidion annosum s.s. Transcriptome
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Expression Analysis of the Impact of Culture Filtrates from the Biocontrol Agent, Phlebiopsis gigantea on the Conifer Pathogen, Heterobasidion annosum s.s. Transcriptome

机译:来自生物防治剂巨大假单胞菌的培养滤液对针叶树病原体,杂种无锡的影响的表达分析。转录组

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Phlebiopsis gigantea has been routinely used as the biological control agent for the conifer pathogen Heterobasidion annosum sensu lato, but the actual mechanism for the biocontrol process is not known. To investigate the effect of secreted molecules from culture filtrate produced by P. gigantea on the gene expression profile of H. annosum s.s., microarray analysis was used. Analysis of the differentially expressed genes led to the identification of genes with diverse functions. A major proportion of the up- and downregulated genes were either uncharacterized or genes whose functions were not known. A number of genes coding for proteins involved in metabolism, transport, and signal transduction were differentially downregulated; comparatively lower number of such genes were upregulated. Some genes involved in transport (polyamine transporters, 2573-fold, P = 0.002) and metabolism (endoglucanase, 622.5-fold, P = 0.002, cytochrome P450, 133.2-fold, P = 0.05) showed high transcript fold changes and were statistically significantly upregulated. Genes encoding defense-related proteins such as hydrophobins were either downregulated or expressed at relatively low levels. Further analysis of the effect of the culture filtrate on glucose metabolism showed downregulation of some key enzymes at the early stage of the glycolytic pathway while some genes were upregulated at the later stage of the pathway. A subset of the genes were selected and used to validate the micro-array result by quantitative real time polymerase chain reaction (qPCR) method. Generally, the high transcript levels of genes encoding several biochemically important genes (protein kinases, major facilitator superfamily polyamine transporters, endoglucanase, cytochrome P450, endoglucanase) suggests their potential functional relevance in signal perception, stress tolerance, cell defenses, and detoxification of toxic molecules during competitive interaction. These results have provided further insights into possible molecular and genetic factors underlying the response of H. annosum to metabolites from P. gigantea during interspecific interaction.
机译:巨大的Phlebiopsis gigantea通常被用作针叶树病原体Heterobasidion annosum sensu lato的生物防治剂,但其生物防治过程的实际机制尚不清楚。为了研究巨大假单胞菌产生的培养滤液中的分泌分子对番荔枝的基因表达谱的影响,使用了微阵列分析。对差异表达基因的分析导致鉴定出具有多种功能的基因。上调和下调的基因中很大一部分是未表征的或功能未知的基因。编码参与代谢,转运和信号转导的蛋白质的许多基因被差异性下调。相对较少数量的此类基因被上调。一些涉及转运的基因(多胺转运蛋白,2573倍,P = 0.002)和代谢(内葡聚糖酶,622.5倍,P = 0.002,细胞色素P450,133.2倍,P = 0.05)显示高的转录倍数变化,并且在统计学上显着上调。编码防御相关蛋白(例如疏水蛋白)的基因被下调或以相对较低的水平表达。对培养物滤液对葡萄糖代谢的影响的进一步分析显示,在糖酵解途径的早期,一些关键酶被下调,而在该途径的后期,一些基因被上调。选择基因的一个子集,并通过实时定量聚合酶链反应(qPCR)方法验证微阵列结果。通常,编码几个生物化学重要基因(蛋白激酶,主要促进子超家族多胺转运蛋白,内切葡聚糖酶,细胞色素P450,内切葡聚糖酶)的基因的高转录水平表明它们在信号感知,胁迫耐受性,细胞防御和毒性分子排毒方面的潜在功能相关性在竞争互动中。这些结果提供了进一步的洞察力,在种间相互作用过程中潜在的分子和遗传因素对H. annosum的响应来自巨大假单胞菌的代谢产物。

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