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Growth-promoting characteristics of potential nitrogen-fixing bacteria in the root of an invasive plant Ageratina adenophora

机译:入侵植物紫茎泽兰根系中潜在固氮细菌的促生长特性

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摘要

Root endophytic nitrogen-fixing bacteria (reNFB) have been proposed as important contributors to the invasiveness of exotic legumes; however, the reNFB of invasive nonlegumes has received less attention. In particular, the growth-promoting effect of reNFB on invasive plants remains unknown. In this study, 131 strains of potential nitrogen-fixing bacteria were isolated and purified from the roots of the invasive plant, Ageratina adenophora, in Southwest China. Phylogenetically, these reNFB were categorized into three phyla at 97% sequence identity that included Proteobacteria (92.4%), Actinobacteria (4.6%), and Firmicutes (3.1%). The dominant isolates ranked by number were Pseudomonas (80 isolates, 61.1%), Rhizobium (12 isolates, 9.2%), and Duganella (11 isolates, 8.4%). The community composition and diversity of A. adenophora reNFB were markedly different across study regions. The capacity of these reNFB to accumulate indolyl-3-acetic acid (IAA), solubilize phosphate, and produce siderophores was determined. All 131 isolates of reNFB accumulated IAA, 67 isolates solubilized phosphate, and 108 isolates produced siderophores. Among the three dominant genera of reNFB, Pseudomonas had the highest phosphorus solubilization and siderophore production, while the accumulation of IAA in the genus Duganella was the lowest. Interestingly, the calculated reNFB Shannon diversity index of each A. adenophora individual was negatively correlated with the capacity of reNFB to produce growth-promoting products. Six randomly selected isolates from three dominant genera were further used to conduct inoculation experiments, and all isolates showed significant positive growth-promoting effects on A. adenophora seedlings. The contribution of reNFB to the root biomass was higher than that to the shoot biomass. Our results suggest that reNFB, similar to soil or nodular nitrogen-fixing bacteria, can potentially promote plant growth and may play an important role in the invasion of nonleguminous plants. More detailed studies on the correlation between reNFB and invasive plants are necessary.
机译:根系内生固氮细菌(reNFB)被认为是外来豆科植物入侵的重要贡献者。然而,侵袭性非豆类植物的reNFB受到的关注较少。特别是,reNFB对入侵植物的生长促进作用仍然未知。在这项研究中,从中国西南部的入侵植物紫茎泽兰的根中分离并纯化了131株潜在的固氮细菌。从系统发育上看,这些reNFB以97%的序列同一性被分类为三个门,包括变形杆菌(92.4%),放线菌(4.6%)和硬毛菌(3.1%)。按数量排名的主要分离株为假单胞菌(80株,占61.1%),根瘤菌(12株,占9.2%)和杜氏菌(11株,占8.4%)。在研究区域之间,紫茎泽兰reNFB的群落组成和多样性明显不同。确定了这些reNFB积聚吲哚基-3-乙酸(IAA),溶解磷酸盐和生成铁载体的能力。 reNFB的所有131个分离物均累积了IAA,67个分离的可溶性磷酸盐和108个分离物产生了铁载体。在reNFB的三个优势属中,假单胞菌具有最高的磷增溶和铁载体生成,而IAA在Duganella属中的积累最低。有趣的是,每个紫茎泽兰个体的计算出的reNFB Shannon多样性指数与reNFB生产促进生长的产品的能力呈负相关。进一步从三个优势属中随机选择了六个分离株进行接种实验,所有分离株对紫茎泽兰幼苗均表现出显着的正向促生长作用。 reNFB对根生物量的贡献高于对芽生物量的贡献。我们的研究结果表明,reNFB与土壤或结核固氮细菌相似,可以潜在地促进植物生长,并可能在非豆科植物的入侵中发挥重要作用。有必要对reNFB与入侵植物之间的相关性进行更详细的研究。

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