• 中文核心期刊
  • CSCD来源期刊
  • 中国科技核心期刊
  • CA、CABI、ZR收录期刊

杉木内生细菌的分离筛选及功能菌的鉴定

Identification of Plant Growth-promoting Strains among Endophytic Bacteria Isolated from Cunninghamia lanceolata

  • 摘要:
    目的 探究杉木不同组织中可培养内生细菌的多样性,并筛选具有促生特性的内生细菌,为杉木菌肥的研制提供参考依据。
    方法 以多年生大径材杉木根、茎、叶组织为研究材料,通过植物匀浆法从杉木不同组织中分离出内生细菌,并对分离出的菌株进行多种促生能力检测,再基于16S rDNA序列鉴定确定部分促生功能菌的菌属。
    结果 杉木根、茎、叶组织中共分离出内生细菌79株,其中根33株,占总量的41.77%,茎32株,占总量的40.51%,叶14株,占总量的17.72%。在促生能力检测中,共检测出52株菌株具有产IAA能力;46株菌株具有固氮能力;17株菌株具有溶磷能力;73株菌株具有产铁载体能力。16S rDNA序列鉴定表明4株促生功能菌Y6、Y25、J3和G21分别为皮特不动杆菌(Acinetobacter pittii)、鼠李糖小短杆菌(Brachybacterium rhamnosum)、蜡样芽孢杆菌(Bacillus cereus)和解蛋白芽胞杆菌(Bacillus proteolyticus)。
    结论 从杉木根、茎、叶组织中共分离出79株内生细菌,具有产IAA、固氮、溶磷、产铁载体能力的菌株分别占65.82%、58.23%、21.52%、92.41%,并从中筛选出综合促生能力相对较强的功能菌Y6、Y25、J3和G21。

     

    Abstract:
    Objective Plant growth-promoting strains in the diverse culturable endophytic bacteria in tissues of Cunninghamia lanceolata were identified for development of biofertilizer.
    Methods Roots, stems, and leaves of mature C. lanceolata plants were collected to isolate the endophytic bacteria by a homogenization method. The isolates were tested for plant growth-promoting abilities followed by species identification with 16S rDNA sequencing.
    Results A total of 79 endophytic bacteria were isolated from the tissues of C. lanceolata. Thirty-three of them came from the roots that accounted for 41.77% of total; 32 from the stems, accounting for 40.51%; and 14 from the leaves, accounting for 17.72%. On the ability of promoting plant growth, 52 of the isolated strains were found capable of producing IAA, 46 of fixing nitrogen, 17 of solubilizing phosphorus, and 73 of chelating iron. The 16S rDNA sequencing identified the functional Y6, Y25, J3, and G21 as Acinetobacter pittii, Brachybacterium rhamnosum, Bacillus cereus, and Bacillus proteolyticus, respectively.
    Conclusion A total of 79 endophytic bacteria were isolated from the root, stem, and leaf tissues of C. lanceolata tissues. Among them, 65.82% exhibited the ability to produce IAA, 58.23% demonstrated nitrogen fixation, 21.52% showed phosphate solubilization, and 92.41% were capable of siderophore production. From these isolates, functional strains Y6, Y25, J3, and G21 with relatively strong comprehensive growth-promoting abilities were selected.

     

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