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用于防治[具体病害名称未给出]、[具体病害名称未给出]和[具体病害名称未给出]的三种分离物的代谢谱及杀真菌活性

Metabolic Profile and Mycoherbicidal Activity of Three Isolates for the Control of , , and .

作者信息

Abdessemed Nesma, Staropoli Alessia, Zermane Nadjia, Vinale Francesco

机构信息

Department of Botany, Ecole Nationale Supérieure d'Agronomie (ENSA, ex. INA), 16200 Algiers, Algeria.

Department of Agricultural Sciences, University of Naples Federico II, 80055 Portici, Italy.

出版信息

Pathogens. 2021 Nov 7;10(11):1448. doi: 10.3390/pathogens10111448.

Abstract

isolates C1, S1, and X3 were isolated respectively from the weeds , , and in Algiers during 2016 and identified by morphological and molecular analyses. The aim of this investigation was to chemically characterize the exometabolome of these fungi and to evaluate the myco-herbicidal potential of their culture filtrates, crude extracts, or fractions towards target weeds. Results revealed a great heterogeneity in the biochemical profiles of the exometabolome with the remarkable presence of two compounds: tenuazonic acid (TeA) and triprenyl phenol-7 (SMTP-7). To the best of our knowledge, SMTP-7-found in all the isolates-as well as 12-methoxycitromycin detected in the culture filtrate of isolate C1, have never been reported to be produced by . Some fractions of isolates C1 and S1 showed symptoms (necrosis and chlorosis) on the detached leaves of and , respectively with up to 100% phytotoxic effect at low concentration. In conclusion, biochemical characterization revealed great difference of C1, S1, and X3 exometabolome that is likely to explain the difference in their phytotoxic activity. Some fractions (d, e, h, i, a, and f) of isolates C1 and S1 of caused severe necrosis and chlorosis on the injured detached leaves of and respectively.

摘要

2016年期间,分别从阿尔及尔的杂草中分离出菌株C1、S1和X3,并通过形态学和分子分析进行鉴定。本研究的目的是对这些真菌的胞外代谢组进行化学表征,并评估其培养滤液、粗提物或馏分对目标杂草的除草潜力。结果显示,胞外代谢组的生化图谱存在很大的异质性,其中两种化合物:细交链孢菌酮酸(TeA)和三异戊烯基苯酚-7(SMTP-7)显著存在。据我们所知,在所有分离物中均发现的SMTP-7,以及在分离物C1的培养滤液中检测到的12-甲氧基柠檬霉素,从未被报道由产生。分离物C1和S1的一些馏分分别在和的离体叶片上表现出症状(坏死和黄化),在低浓度下具有高达100%的植物毒性作用。总之,生化表征揭示了C1、S1和X3胞外代谢组的巨大差异,这可能解释了它们植物毒性活性的差异。分离物C1和S1的一些馏分(d、e、h、i、a和f)分别在和受伤的离体叶片上引起严重的坏死和黄化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/169f/8620798/6b337c123412/pathogens-10-01448-g001.jpg

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