Departamento de Genética, Universidade Federal do Paraná, Cx. Postal 19071, 81531-980, Curitiba, PR, Brazil.
Departamento de Química, Universidade Federal do Paraná, Av. Coronel Francisco Heráclito dos Santos, 210, 81531-980, Curitiba, PR, Brazil.
Microbiol Res. 2019 Apr;221:28-35. doi: 10.1016/j.micres.2019.01.002. Epub 2019 Jan 18.
Endophytic fungi belonging to Muscodor genus are considered as promising alternatives to be used in biological control due to the production of volatile organic compounds (VOCs). The strains LGMF1255 and LGMF1256 were isolated from the medicinal plant Schinus terebinthifolius and, by morphological data and phylogenetic analysis, identified as belonging to Muscodor genus. Phylogenetic analysis suggests that strain LGMF1256 is a new species, which is herein introduced as Muscodor brasiliensis sp. nov. The analysis of VOCs production revealed that compounds phenylethyl alcohol, α-curcumene, and E (β) farnesene until now has been reported only from M. brasiliensis, data that supports the classification of strain LGMF1256 as a new species. M. brasiliensis completely inhibited the phytopathogen P. digitatum in vitro. We also evaluated the ability of VOCs from LGMF1256 to inhibit the development of green mold symptoms by inoculation of P. digitatum in detached oranges. M. brasiliensis reduced the severity of diseases in 77%, and showed potential to be used for fruits storage and transportation to prevent the green mold symptoms development, eventually reducing the use of fungicides.
内生真菌属 Muscodor 由于能够产生挥发性有机化合物(VOCs),被认为是生物防治中很有前途的替代品。菌株 LGMF1255 和 LGMF1256 从药用植物 Schinus terebinthifolius 中分离出来,通过形态数据和系统发育分析,鉴定为 Muscodor 属。系统发育分析表明,菌株 LGMF1256 是一个新种,本文将其引入为 Muscodor brasiliensis sp. nov.。VOCs 产生分析表明,化合物苯乙醇、α-姜黄烯和 E(β)-法呢烯迄今为止仅从 M. brasiliensis 中报道过,这一数据支持菌株 LGMF1256 被分类为一个新种。M. brasiliensis 在体外完全抑制了病原菌 P. digitatum。我们还评估了 LGMF1256 的 VOCs 通过接种在离体橙子上的 P. digitatum 来抑制青霉病症状发展的能力。M. brasiliensis 将病害严重度降低了 77%,具有用于水果贮藏和运输的潜力,以防止青霉病症状的发展,最终减少杀菌剂的使用。