摆竹根际可培养细菌的分离评价及合成群落促生
作者:
作者单位:

1.中国林业科学研究院林业研究所,林木资源高效生产全国重点实验室,国家林业和草原局林木培育 重点实验室,北京;2.中国林业科学研究院亚热带林业研究所,浙江 杭州

作者简介:

杨芾:研究设计、数据收集和分析,撰写初稿;岳晋军:提供研究所需的关键资源和材料,并对研究结果进行验证;袁金玲:参与实验设计,进行了实验室工作,并协助数据分析;孙启武:文献综述,并对研究方法论提供了关键建议;刘蕾:研究构思与设计,参与数据解读,对论文的最终修订提供了重要反馈。

基金项目:

中国林业科学研究院中央级公益性科研院所基本科研业务费专项资金(CAFBB2022XE001)


Cultivable bacteria from the rhizosphere of Indosasa acutiligulata: isolation, evaluation, and SynComs for promoting plant growth
Author:
Affiliation:

1.State Key Laboratory of Efficient Production of Forest Resources, Key Laboratory of Tree Breeding and Cultivation of National Forestry and Grassland Administration, Research Institute of Forestry, Chinese Academy of Forestry, Beijing, China;2.Research Institute of Subtropical Forestry, Chinese Academy of Forestry, Hangzhou, Zhejiang, China

Fund Project:

This work was supported by the Fundamental Research Fund for the Central Non-profit Research Institution of Chinese Academy of Forestry (CAFBB2022XE001).

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    摘要:

    目的 植物根际富集有大量微生物,植物根系-根际微生物之间的相互作用显著影响了植物的生长和健康。摆竹(Indosasa acutiligulata)是重要的经济竹种。挖掘摆竹根际土壤功能细菌,明确合成群落对竹类植物生长的影响,旨在为竹类植物功能菌株资源的开发利用提供新的途径和思路,对精准提升森林质量、保障森林“四库”功能具有重要理论意义和实践价值。方法 以湖南省九嶷山国家级自然保护区的摆竹根际土壤为研究对象,采用稀释培养法分离细菌,利用最大似然法基于16S rRNA基因序列构建系统发育树;依托功能筛选平板和特异性颜色变化进行功能评价,筛选出效果良好且相互不拮抗的菌株进行复合,最后通过回接试验检测合成群落对毛竹(Phyllostachys edulis)幼苗生长的影响。结果 共分离获得70株根际细菌,隶属于4门21科35属;假单胞菌门(Pseudomonadota)为优势门,伯克霍尔德氏菌科(Burkholderiaceae)为优势菌科。对这70株细菌进行功能评价发现,30株具有产吲哚乙酸(indole-3-acetic acid, IAA)功能,16株具有产铁载体功能。在兼具2种功能的细菌中,可溶解无机磷和矿化有机磷的菌株各有4株,另有3株具有解钾功能。菌株TR5、TN6、TN26不仅兼具产IAA和产铁载体的能力,还具备无机磷溶解和有机磷矿化的能力。基于生理生化指标测定及16S rRNA基因序列比对,结果表明它们分别为吡咯素伯克霍尔德氏菌(Burkholderia pyrrocinia)、沼泽伯克霍尔德氏菌(Burkholderia paludis)和克斯腾伯斯副伯克霍尔德氏菌(Paraburkholderia kirstenboschensis)。通过回接试验发现,由菌株TR5、TN6、TN26复合形成的菌液FH能够显著促进毛竹幼苗根和叶片的伸长,以及毛竹幼苗竹鞭的生长。结论 摆竹根际土壤中功能细菌资源丰富,本研究筛选获得了多株具有产IAA、产铁载体、溶磷和解钾功能的菌株,且回接试验表明,合成群落FH对毛竹幼苗生长具有显著的促进作用。

    Abstract:

    Objective The rhizosphere of plants hosts a diverse array of microorganisms that play a crucial role in plant growth and health. This study identified functional bacteria in the rhizosphere soil of an economic bamboo species Indosasa acutiligulata and assessed the effects of synthetic microbial communities (SynComs) on bamboo growth. The results are expected to provide implications for enhancing forest quality and utilizing beneficial microorganisms in bamboo cultivation.Methods Rhizosphere soil samples of In. acutiligulata were collected from the Jiuyi Mountain National Nature Reserve. Bacteria were isolated by the dilution culture method, and a phylogenetic tree was established by the maximum-likelihood algorithm based on 16S rRNA gene sequences. Specific media and colorimetric assays were employed to study the functions of strains. The strains with plant growth-promoting effects and no antagonistic effects between each other were combined. The effects of SynComs on the growth of Phyllostachys edulis seedlings were examined by re-inoculation experiments.Results Seventy strains of rhizosphere bacteria were isolated, representing 35 genera belonging to 21 families of four phyla. The dominant phylum was Pseudomonadota and the predominant family was Burkholderiaceae. Functional analyses revealed that 30 strains produced indole-3-acetic acid (IAA), while 16 strains produced siderophores. Among those with dual functions, there were four strains capable of solubilizing inorganic phosphorus, four strains capable of mineralizing organic phosphorus, and three strains capable of solubilizing potassium. Strains TR5, TN6, and TN26 exhibited capabilities to produce IAA and siderophores, as well as solubilize inorganic phosphorus and mineralize organic phosphorus. They were identified as Burkholderia pyrrocinia, Burkholderia paludis, and Paraburkholderia kirstenboschensis, respectively, based on physiological and biochemical properties and 16S rRNA gene sequences alignments. Re-inoculation experiments demonstrated that the SynCom FH, comprising strains TR5, TN6, and TN26, significantly enhanced the root, leaf, and rhizoma growth of Ph. edulis seedlings.Conclusion The rhizosphere of In. acutiligulata harbors diverse functional microorganisms capable of producing IAA and siderophores, solubilizing phosphorus, and releasing potassium. The re-inoculation experiments confirmed that the SynCom FH promotes the growth of Ph. edulis seedlings.

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杨芾,岳晋军,袁金玲,孙启武,刘蕾. 摆竹根际可培养细菌的分离评价及合成群落促生[J]. 微生物学报, 2025, 65(4): 1558-1570

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  • 收稿日期:2024-09-09
  • 在线发布日期: 2025-04-12
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