Trichoderma species from typical forests system in China: Geographical distribution and comparative genome-wide evaluation of selected species related to biocontrol

中国典型森林系统中木霉属真菌的地理分布及与生物防治相关的部分菌种的全基因组比较评价

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Abstract

In this study, we isolated 633 Trichoderma strains from 15 forest types across six climate zones. Our findings revealed that species diversity was highly underestimated, with 239 isolates identified as new species based on ITS, rpb2, and tef1 sequences. In tropical and subtropical regions, the mean values for the haplotype Chao1 richness index and the Shannon-Weiner diversity index are 73 and 3, respectively, significantly higher than those in temperate regions. Trichoderma cf. taiwanense was the most widely distributed, followed by T. asperellum, rather than widely reported T. harzianum. The maximum entropy model was used to analyse the effects of climatic factors on distribution of T. cf. taiwanense and T. asperellum, and showed that precipitation in the warmest quarter was the most important factor influencing their distribution. T. cf. taiwanense zj625y demonstrated significantly higher antagonistic ability, outperforming the other tested Trichoderma species. The genomic characteristics of T. cf. taiwanense were firstly revealed with 36.49 Mbp in size and contained 17 genes of β-1,3-glucanase and 24 genes of chitinase genes. Additionally, the activities of endochitinase, endo-1,3(4)-β-glucanase, and metallopeptidase were highly expressed in culture. Metabolomic analysis further identified specific substances produced by T. cf. taiwanense zj625y, such as ergothioneine, (3-carboxypropyl) trimethylammonium cation, NG-dimethyl-L-arginine (ADMA), N-acetyl-D-glucosamine, stearic acid, tyramine, citrate, L-leucine, and acetylcarnitine, which contribute to its potential antagonism and environmental adaptability.

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