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在突尼斯不同生物气候区与 Medicago 物种共生的根瘤菌的抗逆性和共生及系统发育特征。

Stress tolerance and symbiotic and phylogenic features of root nodule bacteria associated with Medicago species in different bioclimatic regions of Tunisia.

机构信息

United Graduate School of Agricultural Science, Tokyo University of Agriculture and Technology, 3–5–8 Saiwai-cho, Fuchu, Tokyo 183–8509, Japan.

出版信息

Microbes Environ. 2011;26(1):36-45. doi: 10.1264/jsme2.me10138.

Abstract

Thirty two rhizobial isolates were obtained from different bioclimatic regions of Tunisia using as trap plants, Medicago sativa, Medicago ciliaris, Medicago polymorpha and Medicago minima. To study their diversity and characterize them in relation to Mediterranean conditions, abiotic stress resistance, symbiotic properties and genetic diversity in terms of 16S rRNA and nodA sequences were assessed. Five isolates from M. sativa, three from M. ciliaris and three from M. minima could grow at 45°C. Only two isolates from M. sativa grew at 4% NaCl. The most stress tolerant isolates were obtained from arid soils. A phylogenetic analysis of 16S rRNA genes revealed 29 isolates to be closely related to Ensifer including one (Pl.3-9) that showed a 16S rRNA sequence similar to that of Ensifer meliloti and nodA sequence similar to that of Ensifer medicae. However, three isolates were categorized into Agrobacterium containing the nodA of Ensifer. Furthermore, these isolates developed nodules on original hosts. The results for the four isolates suggest horizontal gene transfer between the species.

摘要

从突尼斯不同生物气候区使用作为诱捕植物的 Medicago sativa、Medicago ciliaris、Medicago polymorpha 和 Medicago minima 获得了 32 个根瘤菌分离株。为了研究它们的多样性,并根据地中海条件、非生物胁迫抗性、共生特性和 16S rRNA 和 nodA 序列的遗传多样性对它们进行表征。从 M. sativa 中获得了 5 个分离株,从 M. ciliaris 中获得了 3 个,从 M. minima 中获得了 3 个分离株可以在 45°C 下生长。只有 2 个来自 M. sativa 的分离株可以在 4% NaCl 下生长。最耐受压力的分离株来自干旱土壤。16S rRNA 基因的系统发育分析显示,29 个分离株与 Ensifer 密切相关,包括一个(Pl.3-9),其 16S rRNA 序列与 Ensifer meliloti 相似,nodA 序列与 Ensifer medicae 相似。然而,有 3 个分离株被归类为含有 Ensifer nodA 的根瘤农杆菌。此外,这些分离株在原始宿主上形成了根瘤。这四个分离株的结果表明种间存在水平基因转移。

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