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鉴定棕榈树内生 Xylariale 真菌与植物病原菌的拮抗化合物。

Identification of Antagonistic Compounds between the Palm Tree Xylariale Endophytic Fungi and the Phytopathogen .

机构信息

CNRS, Institut de Chimie des Substances Naturelles, UPR 2301, Université Paris-Saclay, 91198 Gif-sur-Yvette, France.

Laboratoire Ecologie, Evolution, Interactions des Systèmes Amazoniens (LEEISA), USR 3456, Université De Guyane, CNRS Guyane, 97300 Cayenne, French Guiana, France.

出版信息

J Agric Food Chem. 2021 Sep 22;69(37):10893-10906. doi: 10.1021/acs.jafc.1c03141. Epub 2021 Sep 13.

DOI:10.1021/acs.jafc.1c03141
PMID:34516124
Abstract

To discover microorganisms that naturally possess chemical weapons against the phytopathogen , the biological and chemical diversity of plant leaf endophytes was investigated. Endophytes were isolated from the palm tree collected in pristine forests of French Guiana. Several Xylariaceae inhibited the growth of and were further explored. Antifungal specialized metabolites were isolated from the Xylariaceae BSNB-0294 strain in confrontation with the phytopathogen and led to the identification of undescribed compounds, i.e., two depsipeptides named xylariaceins, two metabolites containing a 3-imidazolinone moiety, and four new compounds including a nitro-phenylpropanamide and three phenylalanine analogues named xylariains A-D. In parallel, the chemical investigation of the phytopathogen during the coculture led to the identification of an unknown compound, which we named focicin. The production of focicin was exacerbated during the competition. Matrix-assisted laser desorption/ionization coupled to time-of-flight mass spectometry (MALDI-TOF MS) imaging of the competition between BSNB-0294 (endophytic strain) and f.sp. (phytopathogen) highlighted time-dependent chemical interactions between the two microorganisms.

摘要

为了发现具有天然化学武器来对抗植物病原菌的微生物,研究了植物叶内共生菌的生物和化学多样性。内生菌是从法属圭亚那原始森林中采集的棕榈树中分离出来的。几种珊瑚菌科(Xylariaceae)抑制了 的生长,并进一步进行了研究。从与病原菌对峙的珊瑚菌科 BSNB-0294 菌株中分离出了抗真菌的特殊代谢产物,导致了一些未被描述的化合物的鉴定,即两种被命名为 xylariaceins 的环二肽、两种含有 3-咪唑啉酮部分的代谢产物,以及包括一种硝基苯丙酰胺和三种苯丙氨酸类似物在内的四种新化合物,被命名为 xylariains A-D。同时,在共培养过程中对病原菌的化学研究导致了一种未知化合物的鉴定,我们将其命名为 focicin。在竞争过程中 focicin 的产生加剧了。基质辅助激光解吸/电离与飞行时间质谱联用(MALDI-TOF MS)对 BSNB-0294(内生菌株)和 f.sp. (病原菌)之间竞争的成像分析强调了两种微生物之间随时间变化的化学相互作用。

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