Genetic diversity, symbiotic efficiency, stress tolerance, and plant growth promotion traits of rhizobia nodulating Vachellia tortilis subsp. raddiana growing in dryland soils in southern Morocco

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Mohamed Hnini, Imane El Attar, Kaoutar Taha, Jamal Aurag
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引用次数: 1

Abstract

In the present study, we analyzed the genetic diversity, phylogenetic relationships, stress tolerance, phytobeneficial traits, and symbiotic characteristics of rhizobial strains isolated from root nodules of Vachellia tortilis subsp. raddiana grown in soils collected in the extreme Southwest of the Anti-Atlas Mountains in Morocco. Subsequent to Rep-PCR fingerprinting, 16S rDNA gene sequencing of 15 representative strains showed that all of them belong to the genus Ensifer. Phylogenetic analysis and concatenation of the housekeeping genes gyrB, rpoB, recA, and dnaK revealed that the entire collection (except strain LMR678) shared 99.08 % to 99.92% similarity with Ensifer sp. USDA 257 and 96.92% to 98.79% with Sinorhizobium BJ1. Phylogenetic analysis of nodC and nodA sequences showed that all strains but one (LMR678) formed a phylogenetic group with the type strain “E. aridi” LMR001T (similarity over 98%). Moreover, it was relevant that most strains belong to the symbiovar vachelliae. In vitro tests revealed that five strains produced IAA, four solubilized inorganic phosphate, and one produced siderophores. All strains showed tolerance to NaCl concentrations ranging from 2 to 12% and grew at up to 10% of PEG6000. A greenhouse plant inoculation test conducted during five months demonstrated that most rhizobial strains were infective and efficient. Strains LMR688, LMR692, and LMR687 exhibited high relative symbiotic efficiency values (respectively 231.6 %, 171.96 %, and 140.84 %). These strains could be considered as the most suitable candidates for inoculation of V. t. subsp. raddiana, to be used as a pioneer plant for restoring arid soils threatened with desertification.

玉米扁豆根瘤菌的遗传多样性、共生效率、抗逆性及促生性状。生长在摩洛哥南部旱地土壤中的一种植物
本研究分析了玉米Vachellia tortilis subsp根瘤菌的遗传多样性、系统发育关系、胁迫耐受性、植物有益性状和共生特性。raddiana生长在摩洛哥反阿特拉斯山脉最西南端收集的土壤中。经Rep-PCR指纹图谱分析,15株代表性菌株的16S rDNA基因测序结果均为Ensifer属。对gyrB、rpoB、recA和dnaK的系统发育分析和序列分析表明,除菌株LMR678外,所有菌株与Ensifer sp. USDA 257的相似性为99.08% ~ 99.92%,与Sinorhizobium BJ1的相似性为96.92% ~ 98.79%。对nodC和nodA序列的系统发育分析表明,除1株LMR678外,其余菌株均与E型菌株形成系统发育群。aridi“LMR001T”(相似度超过98%)。此外,大多数菌株属于共生菌vachelliae是相关的。体外实验表明,5株菌株产生IAA, 4株产生可溶性无机磷酸盐,1株产生铁载体。所有菌株对NaCl浓度在2 ~ 12%范围内均表现出耐受性,在PEG6000浓度高达10%的条件下生长。在5个月内进行的温室植物接种试验表明,大多数根瘤菌菌株具有传染性和有效性。菌株LMR688、LMR692和LMR687表现出较高的相对共生效率值(分别为231.6%、171.96%和140.84%)。这些菌株可以被认为是接种弧菌亚种的最合适的候选菌株。作为恢复受沙漠化威胁的干旱土壤的先锋植物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.20
自引率
4.30%
发文量
567
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