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植物聚合物亚苏醇和二糖纤维二糖参与触发由致病因子疮痂链霉菌产生的植物毒素 thaxtomin A 的生物合成。

Involvement of the plant polymer Suberin and the disaccharide cellobiose in triggering thaxtomin A biosynthesis, a phytotoxin produced by the pathogenic agent streptomyces scabies.

机构信息

Departement de biologie, Universite de Sherbrooke, Sherbrooke, Quebec, Canada.

出版信息

Phytopathology. 2010 Jan;100(1):91-6. doi: 10.1094/PHYTO-100-1-0091.

Abstract

Streptomyces scabies is a gram-positive soil bacterium recognized as the main causal agent of common scab. Pathogenicity in Streptomyces spp. depends on their capacity to synthesize phytotoxins called thaxtomins. Genes involved in biosynthesis of these secondary metabolites are known to be induced by cellobiose, a plant disaccharide. However, growth of S. scabies in a minimal medium containing cellobiose as a carbon source is very poor and only generates traces of thaxtomins. The effect of suberin, a lipid plant polymer, on thaxtomin A biosynthesis and the expression of genes involved in its biosynthetic pathway was analyzed. S. scabies was grown in a starch-containing minimal medium supplemented with cellobiose (0.5%), suberin (0.1%), or both. The presence of both cellobiose and suberin doubled bacterial growth and triggered thaxtomin A production, which correlated with the upregulation (up to 342-fold) of genes involved in thaxtomins synthesis. The addition of either suberin or cellobiose alone did not affect these parameters. Suberin appeared to stimulate the onset of secondary metabolism, which is a prerequisite to the production of molecules such as thaxtomin A, while cellobiose induced the biosynthesis of this secondary metabolite.

摘要

疮痂链霉菌是一种革兰氏阳性土壤细菌,被认为是普通痂病的主要病原体。链霉菌属的致病性取决于它们合成称为噻酮素的植物毒素的能力。这些次级代谢物生物合成相关的基因已知会被纤维二糖诱导,纤维二糖是一种植物二糖。然而,疮痂链霉菌在含有纤维二糖作为碳源的最小培养基中的生长非常差,只能产生痕量的噻酮素。本文分析了植物聚合物亚表皮素对噻酮素 A 生物合成及其生物合成途径相关基因表达的影响。在含有淀粉的最小培养基中培养疮痂链霉菌,补充纤维二糖(0.5%)、亚表皮素(0.1%)或两者。同时存在纤维二糖和亚表皮素使细菌生长增加了一倍,并触发了噻酮素 A 的产生,这与参与噻酮素合成的基因的上调(高达 342 倍)相关。单独添加亚表皮素或纤维二糖都不会影响这些参数。亚表皮素似乎刺激了次级代谢物的开始,这是产生噻酮素 A 等分子的前提,而纤维二糖则诱导了这种次级代谢物的生物合成。

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