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Identification and characterization of new Muscodor endophytes from gramineous plants in Xishuangbanna China

机译:西双版纳禾本科植物新Muscodor内生菌的鉴定与鉴定

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摘要

The endophytic fungi Muscodor spp. produce volatile organic compounds (VOCs) which can inhibit and even kill pathogenic fungi, bacteria, and nematodes. Nine endophytic fungal strains, isolated from the shoots of gramineous plants including Arthraxon hispidus, Eleusine indica, Oplismenus undulatifolius, and Oryza granulata, were identified as Muscodor through phylogenetic analysis of the internal transcribed spacer. Through an SPSS K‐means cluster analysis, the nine Muscodor strains were divided into four groups based on the antifungal activities of the VOCs produced by these fungi determined by a two‐section confrontation test. The first group contains the strains Y‐L‐54, W‐S‐41, Y‐S‐35, W‐T‐27, and Y‐L‐56, which showed the strongest activity. The second and third groups contain W‐S‐35 and Y‐L‐43, which showed stronger and moderate activity, respectively. The fourth group contains W‐S‐38 and N‐L‐7, which were the weakest in inhibiting the tested pathogens. Thirty‐five compounds and the relative amounts of VOCs were determined by SPME‐GC‐MS and comparison with the NIST14 mass spectrometry database and Agilent MassHunter qualitative and quantitative analyses. These 35 compounds were classified into two different categories: (a) the product of fatty acid degradation, and (b) the intermediate and final metabolite of the metabolic pathway with the precursor of mevalonic acid. SPSS clustering analysis showed that the chemical components of VOCs might be correlated with their bioactivity rather than their phylogenetic assignment and some of the identified compounds might be responsible for antifungal activity. In conclusion, new Muscodor endophytes were recorded in tropical gramineous plants and a number of strains showed remarkable bioactive properties. Therefore, they have important potential applications in the fields of plant disease control.
机译:内生真菌Muscodor spp。会产生挥发性有机化合物(VOC),可以抑制甚至杀死致病性真菌,细菌和线虫。通过对内部转录间隔区进行系统进化分析,从禾本科植物的芽中分离出的九种内生真菌菌株被鉴定为Muscodor,所述禾本科植物的茎包括Arthraxon hispidus,Eleusine indica,Olismenus undulatifolius和Oryza granulata。通过SPSS K均值聚类分析,根据两部分对抗测试确定的这些真菌产生的VOC的抗真菌活性,将9个Muscodor菌株分为4组。第一组包含菌株Y-L-54,WS-41,Y-S-35,WT-27和Y-L-56,它们显示出最强的活性。第二和第三组包含W-S-35和Y-L-43,分别显示出较强的和中等的活性。第四组包含W-S-38和N-L-7,它们在抑制测试病原体方面最弱。通过SPME-GC-MS测定了35种化合物和VOC的相对含量,并与NIST14质谱数据库和安捷伦MassHunter定性和定量分析进行了比较。这35种化合物分为两类:(a)脂肪酸降解产物,(b)与甲羟戊酸前体的代谢途径的中间和最终代谢产物。 SPSS聚类分析表明,VOC的化学成分可能与其生物活性相关,而不是其系统发生分配,某些已鉴定的化合物可能与抗真菌活性有关。总之,在热带禾本科植物中记录了新的Muscodor内生菌,许多菌株显示出显着的生物活性。因此,它们在植物病害控制领域具有重要的潜在应用。

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