Postgraduate Program in Microbiology, Department of Pathology, Federal University of Paraná (UFPR), Curitiba, Brazil.
Department of Pharmaceutical Sciences, College of Pharmacy, University of Kentucky, Lexington, Kentucky, United States.
Planta Med. 2023 Oct;89(12):1178-1189. doi: 10.1055/a-2063-5481. Epub 2023 Mar 28.
Chemical investigation of the endophyte CMRP4328 isolated from the medicinal plant yielded ten compounds, including two new dihydrochromones, paecilins Q (1: ) and R (2: ). The antifungal activity of the isolated metabolites was assessed against an important citrus pathogen, . Cytochalasin H (6: ) (78.3%), phomoxanthone A (3: ) (70.2%), phomoxanthone B (4: ) (63.1%), and paecilin Q (1: ) (50.5%) decreased the number of pycnidia produced by , which are responsible for the disease dissemination in orchards. In addition, compounds 3: and 6: inhibited the development of citrus black spot symptoms in citrus fruits. Cytochalasin H (6: ) and one of the new compounds, paecilin Q (1: ), appear particularly promising, as they showed strong activity against this citrus pathogen, and low or no cytotoxic activity. The strain CMRP4328 of and its metabolites deserve further investigation for the control of citrus black spot disease.
从药用植物中分离出的内生菌 CMRP4328 的化学成分研究得到了 10 种化合物,包括两种新的二氢查尔酮,即 paecilins Q(1:)和 R(2:)。对分离得到的代谢产物进行了抗真菌活性评估,以对抗柑橘重要病原菌 。细胞松弛素 H(6:)(78.3%)、石竹烯酮 A(3:)(70.2%)、石竹烯酮 B(4:)(63.1%)和 paecilin Q(1:)(50.5%)减少了 引起的分生孢子数量,这是在果园中传播疾病的原因。此外,化合物 3:和 6:抑制了柑橘果实中柑橘黑斑病症状的发展。细胞松弛素 H(6:)和一种新化合物 paecilin Q(1:)表现出特别有希望的前景,因为它们对这种柑橘病原菌表现出强烈的活性,而且细胞毒性低或没有。CMRP4328 菌株及其代谢产物值得进一步研究,以控制柑橘黑斑病。