Li Xueqing, Wang Jiarui, Shen Hang, Xing Chenxi, Kong Lingxin, Song Yu, Hou Wanpeng, Gao Jie, Jiang Yun, Chen Changqing
College of Plant Protection, Jilin Agricultural University, Changchun, China.
College of Life Science, Jilin Agricultural University, Changchun, China.
Front Microbiol. 2024 Jul 30;15:1447488. doi: 10.3389/fmicb.2024.1447488. eCollection 2024.
The strain NT35, which has strong biocontrol ability, was isolated from the rhizosphere soil of . The antifungal effects of the NT35 strain against the mycelium and spore growth of , which causes ginseng rusty root rot, were determined. The inhibitory rate of mycelial growth was 94.12% when the concentration of the NT35 strain was 10 CFU·mL, and the inhibitory rates of sporulation and spore germination reached 100 and 90.31%, respectively, when the concentration of the NT35 strain was 10 and 10 CFU·mL, respectively. Strain NT35 had good prevention effects against ginseng rust rot indoors and in the field with the control effect 51.99%, which was similar to that of commercial chemical and biocontrol agents. The labeled strain NT35-Rif-Stre was obtained and colonized ginseng roots, leaves, stems and rhizosphere soil after 90 days. NT35 can induce a significant increase in the expression of five defensive enzyme-encoding genes and ginsenoside biosynthesis-related genes in ginseng. In the rhizosphere soil, the four soil enzymes and the microbial community improved during different periods of ginseng growth in response to the biocontrol strain NT35. The NT35 strain can recruit several beneficial bacteria, such as , , , and , from the rhizosphere soil and reduce the relative abundance of , , and , which cause root rot and rusty root rot in ginseng plants. The disease indices were significantly negatively correlated with the abundances of and . Additionally, , and actinomycetes were significantly enriched under the NT35 treatment according to LEfSe analysis. These results lay the foundation for the development of a biological agent based on strain NT35.
菌株NT35具有很强的生防能力,是从[具体植物名称]的根际土壤中分离得到的。测定了NT35菌株对引起人参锈腐病的[病原菌名称]菌丝体和孢子生长的抗真菌作用。当NT35菌株浓度为10 CFU·mL时,对[病原菌名称]菌丝体生长的抑制率为94.12%;当NT35菌株浓度分别为10⁶和10⁷CFU·mL时,对[病原菌名称]孢子形成和孢子萌发的抑制率分别达到100%和90.31%。菌株NT35在室内和田间对人参锈腐病均有良好的防治效果,防治效果为51.99%,与市售化学和生防药剂相似。获得了标记菌株NT35-Rif-Stre,90天后定殖于人参根、叶、茎和根际土壤中。NT35能诱导人参中5个防御酶编码基因和人参皂苷生物合成相关基因的表达显著增加。在根际土壤中,响应生防菌株NT35,人参生长不同时期的4种土壤酶和微生物群落得到改善。NT35菌株可从根际土壤中招募几种有益细菌,如[有益细菌名称1]、[有益细菌名称2]、[有益细菌名称3]和[有益细菌名称4],并降低导致人参植株根腐病和锈腐病的[病原菌名称1]、[病原菌名称2]、[病原菌名称3]和[病原菌名称4]的相对丰度。病情指数与[病原菌名称1]和[病原菌名称2]的丰度显著负相关。此外,根据LEfSe分析,在NT35处理下[有益细菌名称5]、[有益细菌名称6]和放线菌显著富集。这些结果为基于菌株NT35开发生物制剂奠定了基础。