College of Animal Science and Veterinary Medicine, Shanxi Agriculture University, Taigu, Shanxi, 030801, P.R. China.
College of Life Science, Shanxi Agriculture University, Taigu, Shanxi, 030801, P.R. China.
Sci Rep. 2017 Oct 31;7(1):14442. doi: 10.1038/s41598-017-14937-1.
Botanical fungicides comprise attractive alternatives to chemical fungicides because of their environmental compatibility. Flavonoids extracted from Tagetes erecta L. have an inhibitory effect on fusarium wilt in watermelons caused by Fusarium oxysporum f. sp. niveum (FON). In this study, we synthesized one of these flavonoids, 2,5-dicyclopentylidene cyclopentanone (Tagetes erecta L. fungicide (TEF)) and assessed its activity against FON. In vitro, TEF inhibited FON growth and killed FON cells directly. TEF also affected FON cell physiology and mycelial structure. In watermelon plants with fusarium wilt, TEF protected the leaf cell structure and improved the germination rate of infected seeds while increasing overall plant resistance. A TEF-resistant mutant (FONM) was created by chemical mutagenesis. FON and FONM were analysed using iTRAQ and RNA-Seq, which identified 422 differentially expressed proteins and 7817 differentially expressed mRNAs in the proteome and transcriptome, respectively. The FONM mutations caused changes in the cell membrane and cell wall, which may constitute the site of action of TEF. Together, these results demonstrate that TEF could effectively control the watermelon fusarium wilt caused by FON, possibly through the inhibition of sterol biosynthesis. The data presented here suggest that TEF represents a new potential botanical anti-fungal drug.
植物源杀菌剂由于其环境相容性,成为化学杀菌剂的有吸引力的替代品。从万寿菊中提取的类黄酮对由尖孢镰刀菌(FON)引起的西瓜枯萎病有抑制作用。在这项研究中,我们合成了其中一种类黄酮,2,5-二环戊基-2,5-二烯-1-环戊酮(Tagetes erecta L. 杀菌剂(TEF)),并评估了其对 FON 的活性。体外,TEF 抑制 FON 的生长并直接杀死 FON 细胞。TEF 还影响 FON 细胞的生理和菌丝结构。在感染枯萎病的西瓜植株中,TEF 保护叶片细胞结构,提高受感染种子的发芽率,同时提高整体植物抗性。通过化学诱变产生了对 TEF 具有抗性的突变体(FONM)。使用 iTRAQ 和 RNA-Seq 分析了 FON 和 FONM,分别在蛋白质组和转录组中鉴定出 422 个差异表达蛋白和 7817 个差异表达 mRNA。FONM 的突变导致细胞膜和细胞壁发生变化,这可能是 TEF 的作用部位。总之,这些结果表明 TEF 可以有效控制由 FON 引起的西瓜枯萎病,可能是通过抑制甾醇生物合成。本研究结果表明,TEF 可能是一种新的潜在植物源抗真菌药物。