根结线虫侵染下番茄根系产铁载体内生细菌的筛选与鉴定

    Screening and Identification of Siderophore-Producing Endophytic Bacteria from Tomato Roots Infected by Root-Knot Nematodes

    • 摘要: 番茄作为对缺铁胁迫高度敏感的作物,常同时遭受根结线虫和青枯菌等土传病原细菌的复合侵染。为了挖掘产铁载体内生菌资源,获得兼具拮抗病原菌与活化土壤养分潜力的根结线虫生防菌株,采用铬天青(Chrome Azurol S, CAS)检测法对实验室前期分离自患根结线虫病的179株番茄根内生菌进行产铁载体能力测定。结果表明:从179株番茄根内生菌中共获得20株具有稳定铁载体分泌活性的菌株,其中11株铁载体活性等级为中等阳性及以上水平。分子鉴定和序列分析表明,11株高产铁载体菌株分别归属于芽孢杆菌、赖氨酸芽孢杆菌短杆菌、黄单胞菌以及根瘤菌等属,其中芽孢杆菌属细菌(Bacillus)为最优势类群,占高产菌株的63.6%。研究丰富了植物内生源产铁载体细菌的资源储备,为后续研究植物益生菌-青枯菌以及根结线虫相互作用机制以及开发兼具病原菌拮抗功能的新型线虫生防菌剂提供参考。

       

      Abstract: Tomato plants are highly sensitive to iron deficiency stress and are often subjected to combined infection by root-knot nematodes and soil-borne pathogenic bacteria such as Ralstonia solanacearum. To explore the resources of siderophore-producing endophytes and obtain biocontrol strains against root-knot nematodes with the potential to antagonize pathogens and mobilize soil nutrients, the Chrome Azurol S(CAS)assay was used in this study to determine the siderophore-producing capacity of 179 tomato root endophytic bacterial strains previously isolated from root-knot nematode-infected tomato roots in our laboratory. The results showed that 20 strains with stable siderophore secretion activity were obtained from the 179 tested strains, among which 11 strains exhibited siderophore activity at moderate positive level or above. Molecular identification and sequence analysis indicated that the 11 high siderophore-yielding strains were assigned to genera including Bacillus, Lysinibacillus, Brevibacterium, Xanthomonas and Rhizobium. Among them, the genus Bacillus was the most dominant group, accounting for 63.6% of the high-yield strains. This study enriches the resource pool of endophytic siderophore-producing bacteria from plant sources, and provides a reference for further research on the interaction mechanisms among plant beneficial bacteria, Ralstonia solanacearum and root-knot nematodes, as well as the development of novel nematode biocontrol agents with pathogen-antagonistic functions.

       

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