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山姜同属植物红球姜(Zingiber zerumbet Smith)根茎内生菌的分子系统发育及抗腐霉活性

Molecular phylogenetics and anti-Pythium activity of endophytes from rhizomes of wild ginger congener, Zingiber zerumbet Smith.

作者信息

Keerthi D, Aswati Nair R, Prasath D

机构信息

School of Biotechnology, National Institute of Technology Calicut (NITC), Calicut, Kerala, India.

Division of Crop Improvement and Biotechnology, Indian Institute of Spices Research (IISR), Calicut, Kerala, India.

出版信息

World J Microbiol Biotechnol. 2016 Mar;32(3):41. doi: 10.1007/s11274-015-1998-8. Epub 2016 Feb 11.

Abstract

Zingiber zerumbet, a perennial rhizomatous herb exhibits remarkable disease resistance as well as a wide range of pharmacological activities. Towards characterizing the endophytic population of Z. zerumbet rhizomes, experiments were carried out during two different growing seasons viz., early-June of 2013 and late-July of 2014. A total of 34 endophytes were isolated and categorized into 11 morphologically distinct groups. Fungi were observed to predominate bacterial species with colonization frequency values ranging from 12.5 to 50%. Among the 11 endophyte groups isolated, molecular analyses based on ITS/16S rRNA gene sequences identified seven isolate groups as Fusarium solani, two as F. oxysporum and one as the bacterium Rhizobium spp. Phylogenetic tree clustered the ITS sequences from Z. zerumbet endophytes into distinct clades consistent with morphological and sequence analysis. Dual culture assays were carried out to determine antagonistic activity of the isolated endophytes against Pythium myriotylum, an economically significant soil-borne phytopathogen of cultivated ginger. Experiments revealed significant P. myriotylum growth inhibition by F. solani and F. oxysporum isolates with percentage of inhibition (PoI) ranging from 45.17 ± 0.29 to 62.2 ± 2.58 with F. oxysporum exhibiting higher PoI values against P. myriotylum. Using ZzEF8 metabolite extract, concentration-dependent P. myriotylum hyphal growth inhibition was observed following radial diffusion assays. These observations were confirmed by scanning electron microscopy analysis wherein exposure to ZzEF8 metabolite extract induced hyphal deformities. Results indicate Z. zerumbet endophytes as promising resources for biologically active compounds and as biocontrol agents for soft rot disease management caused by Pythium spp.

摘要

红球姜,一种多年生根茎类草本植物,具有显著的抗病性以及广泛的药理活性。为了表征红球姜根茎的内生菌群,在两个不同的生长季节进行了实验,即2013年6月初和2014年7月末。共分离出34株内生菌,并分为11个形态上不同的组。观察到真菌在细菌种类中占主导地位,定殖频率值在12.5%至50%之间。在分离出的11个内生菌组中,基于ITS/16S rRNA基因序列的分子分析确定7个分离株组为茄形镰刀菌,2个为尖孢镰刀菌,1个为细菌根瘤菌属。系统发育树将红球姜内生菌的ITS序列聚类到与形态和序列分析一致的不同进化枝中。进行了双培养试验,以确定分离出的内生菌对瓜果腐霉的拮抗活性,瓜果腐霉是栽培生姜一种具有经济重要性的土传植物病原菌。实验表明,茄形镰刀菌和尖孢镰刀菌分离株对瓜果腐霉有显著的生长抑制作用,抑制率(PoI)范围为45.17±0.29至62.2±2.58,尖孢镰刀菌对瓜果腐霉的PoI值更高。使用ZzEF8代谢物提取物,通过径向扩散试验观察到对瓜果腐霉菌丝生长的浓度依赖性抑制。扫描电子显微镜分析证实了这些观察结果,其中暴露于ZzEF8代谢物提取物会诱导菌丝畸形。结果表明,红球姜内生菌是生物活性化合物的有前途的资源,也是用于防治由腐霉属引起的软腐病的生物防治剂。

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