番茄根内生菌中产木质纤维素酶菌株筛选

    Screening and Identification of Lignocellulase-Producing Endophytic Bacteria from Tomato Roots

    • 摘要: 植物内生菌多样性丰富,是开发新型微生物肥料与绿色生防菌剂的优质菌种资源。为挖掘具备高根系定殖潜力的番茄根内生功能菌株,明确内生菌木质纤维素降解能力与根系定殖的关联机制,以实验室保存的135株番茄根内生细菌为材料,采用CMC平板和木聚糖平板透明圈法,通过初筛与复筛定性检测菌株的纤维素酶和木聚糖酶活性,系统评价其木质纤维素降解潜力。结果表明:多数试验菌株具有木质纤维素降解活性,其中67.4%具纤维素酶活性,68.8%的菌株具木聚糖酶活性,且双酶活性高度协同,契合植物细胞壁复合降解需求;已鉴定的芽孢杆菌属和假单胞菌属细菌普遍具备产酶能力,这两类菌是当前微生物菌剂的主要来源,侧面印证其优良的降解能力与根际、根内定殖性能密切相关。综上,木质纤维素降解能力在番茄内生菌中广泛存在,是微生物适应根内微环境、实现长效定殖的重要基础,可作为快速筛选高潜力内生生防菌株的关键评价指标。

       

      Abstract: Plant endophytes with abundant diversity are excellent strain resources for developing new microbial fertilizers and green biocontrol agents. In this study, 135 tomato root endophytic bacteria preserved in the laboratory were used to explore functional strains with strong root colonization potential and reveal the correlation between lignocellulose-degrading capacity and root colonization. The transparent circle method with CMC and xylan plates was applied to qualitatively detect cellulase and xylanase activities via primary and secondary screening, so as to systematically evaluate their lignocellulose degradation potential. The results showed that most strains exhibited lignocellulose-degrading activity; 67.4% of strains produced cellulase and 68.8% produced xylanase, with high synergism of the two enzymes matching the demand for plant cell wall degradation. The identified strains of Bacillus and Pseudomonas generally exhibit enzyme-producing ability. As the predominant strains for current microbial inoculants, these two genera indirectly verify that their prominent degrading capacity is tightly correlated with their colonization competence in the rhizosphere and root endosphere. In summary, lignocellulose-degrading traits widely exist in tomato root endophytes, which serve as a key basis for microbes to adapt to the root microenvironment and achieve persistent colonization. This property can be adopted as a vital index for rapid screening of high-efficiency endophytic biocontrol strains.

       

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