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黄瓜根际土壤中 I 型酮合成酶的多样性分析。

Diversity analysis of type I ketosynthase in rhizosphere soil of cucumber.

机构信息

Plant Protection College, Shenyang Agricultural University, Shenyang, China.

出版信息

J Basic Microbiol. 2012 Apr;52(2):224-31. doi: 10.1002/jobm.201000455. Epub 2011 Jul 21.

Abstract

Fusarium wilt [Fusarium oxysporum (Sch1.) f.sp. cucumerinum Owen.] is a major soil-borne disease of cucumber worldwide, and can cause huge yield losses. Biological control of Fusarium wilt of cucumber has received considerable attention. Many bacteria, particularly actinomycetes, are known to produce secondary metabolites synthesized by Polyketide synthases (PKSs) with a diverse range of biological activities. Ketosynthase (KS) gene diversity was analyzed in samples which were collected from rhizosphere soil of both diseased cucumber and healthy cucumber in Dalian, China. The phylogenetic analysis amino acid (AA) sequences indicated that the KS genes in the rhizosphere soil samples were clustered into diverse seven clades, including Sorangium cellulosum, Anabaena variabilis, Nostoc punctiforme, Xanthobacter autotrophicus, Streptomyces, myxobacteria and uncultured bacteria. Among seven major clades in the phylogenetic tree, two clades were peculiar to rhizosphere soil of diseased cucumber and one was peculiar to healthy cucumber. Among the 182 cloned KS genes, 147 KS genes were clustered with the uncultured bacteria group. Most of the KS genes showed about 80% similarity at the AA level to sequences known in GenBank. These results revealed the great diversity and novelty of KS genes in rhizosphere soil of cucumber.

摘要

枯萎病(尖孢镰刀菌黄瓜专化型)是一种世界性的黄瓜土传病害,可导致巨大的产量损失。黄瓜枯萎病的生物防治受到了相当的关注。许多细菌,特别是放线菌,已知能产生具有多种生物活性的聚酮合酶(PKSs)合成的次生代谢物。从中国大连的感病黄瓜和健康黄瓜根际土壤中采集了样本,对酮合酶(KS)基因多样性进行了分析。氨基酸(AA)序列的系统发育分析表明,根际土壤样本中的 KS 基因聚类为 7 个不同的分支,包括粘细菌属、鱼腥藻、念珠藻、黄单胞菌、链霉菌、粘细菌和未培养细菌。在系统发育树的 7 个主要分支中,有 2 个分支是感病黄瓜根际土壤特有的,有 1 个分支是健康黄瓜根际土壤特有的。在克隆的 182 个 KS 基因中,有 147 个 KS 基因与未培养细菌群聚类。大多数 KS 基因在 AA 水平上与 GenBank 中已知序列的相似性约为 80%。这些结果表明,黄瓜根际土壤中 KS 基因具有丰富的多样性和新颖性。

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