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具有基质的内生菌及其在芨芨草中的潜在水平传播能力。

Stroma-bearing endophyte and its potential horizontal transmission ability in Achnatherum sibiricum.

机构信息

Department of Plant Biology and Ecology, College of Life Sciences, Nankai University, Tianjin, P.R. China.

Department of Plant Biology and Ecology, College of Life Sciences, Nankai University, Tianjin, P.R. China

出版信息

Mycologia. 2015 Jan-Feb;107(1):21-31. doi: 10.3852/13-355. Epub 2014 Oct 24.

Abstract

Stromata occasionally are observed in Achnatherum sibiricum distributed in northern China. However, endophyte species that form stromata on that host have not been studied. Here we identified the first Epichloë sp. endophyte in stroma-bearing A. sibiricum. Isolated colonies of this Epichloë sp. were smoother and more compact than previously described for Epichloë gansuensis and also had longer phialides and faster growth in culture. However, phylogenetic relationships based on intron sequences of genes encoding β-tubulin (tubB) and translation elongation factor 1-α (tefA) grouped all isolates from the stromata in a clade with a close relationship to E. gansuensis. We identified the new isolates as E. gansuensis. The analysis of the stromata revealed no perithecium or ascospores during morphological and paraffin section observation. Furthermore, the ability of conidia formed on stromata to germinate and initiate infection of new seedlings was tested. After 3 mo 20% endophyte-free seedlings became infected by E. gansuensis, whereas the control group showed no endophyte infection. The results indicated the potential of cultures from conidia to mediate horizontal transmission.

摘要

在中国北方分布的 Achnatherum sibiricum 中偶尔会观察到菌核。然而,在该宿主上形成菌核的内生真菌物种尚未得到研究。在这里,我们鉴定了首例存在于具有菌核的 A. sibiricum 中的 Epichloë sp. 内生真菌。与先前描述的 Epichloë gansuensis 相比,这种 Epichloë sp. 的分离菌落更光滑、更紧凑,而且其产孢梗和在培养物中的生长速度也更快。然而,基于编码β-微管蛋白(tubB)和翻译延伸因子 1-α(tefA)的基因内序列的系统发育关系表明,所有来自菌核的分离株都与 E. gansuensis 密切相关。我们将新分离株鉴定为 E. gansuensis。对菌核的分析表明,在形态学和石蜡切片观察过程中未发现子囊壳或子囊孢子。此外,还测试了菌核上形成的分生孢子萌发并引发新幼苗感染的能力。3 个月后,20%的无内生真菌幼苗被 E. gansuensis 感染,而对照组则没有内生真菌感染。结果表明,来自分生孢子的培养物具有介导水平传播的潜力。

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