Jang Yoon-Hee, Park Jae-Ryoung, Kim Kyung-Min
Division of Plant Biosciences, School of Applied Biosciences, College of Agriculture and Life Science, Kyungpook National University, Daegu 41566, Korea.
Biology (Basel). 2020 Nov 7;9(11):382. doi: 10.3390/biology9110382.
As environmental damage caused by chemical pesticides appears worldwide, eco-friendly agriculture is increasing, and finding eco-friendly pesticide materials has become very important. Chrysoeriol and cochlioquinone, two flavonoids, act as an antibacterial and antioxidant, and increase the resistance of rice to the white-backed planthopper (WBPH). In this experiment, chrysoeriol 7 (C7) and cochlioquinone 9 (C9) were extracted from rice inoculated with the WBPH using MeOH, and cultivars with high extraction efficiency were selected. In addition, the antimicrobial activity of C7 and C9 against various pathogens causing disease in rice was tested. The results show that C7 has antifungal activity against and , and C9 show antifungal activity against , , , and . When both substances were treated at a concentration of 1000 ppm, they showed high inhibition rates of 62.3% and 36.2% against , respectively. After that, a phylogenetic tree was created to clarify the relationship between the microorganisms whose growth was inhibited and divided into three groups. This result can contribute to the study of biopesticide materials that can control pests and pathogens.
随着化学农药造成的环境破坏在全球范围内出现,生态友好型农业正在增加,寻找生态友好型农药材料变得非常重要。两种黄酮类化合物 Chrysoeriol 和 cochlioquinone 具有抗菌和抗氧化作用,并能增强水稻对白背飞虱(WBPH)的抗性。在本实验中,使用甲醇从接种了 WBPH 的水稻中提取 Chrysoeriol 7(C7)和 cochlioquinone 9(C9),并筛选出提取效率高的品种。此外,还测试了 C7 和 C9 对引起水稻病害的各种病原体的抗菌活性。结果表明,C7 对 和 具有抗真菌活性,C9 对 、 、 、 和 具有抗真菌活性。当两种物质都以 1000 ppm 的浓度处理时,它们对 的抑制率分别高达 62.3%和 36.2%。之后,构建了系统发育树以阐明生长受到抑制的微生物之间的关系,并将其分为三组。这一结果有助于研究能够控制害虫和病原体的生物农药材料。