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褪黑素与生物杀菌剂协同防治卵菌性黑胫病的效果。

Synergistic anti-oomycete effect of melatonin with a biofungicide against oomycetic black shank disease.

机构信息

School of Life Sciences, Chongqing University, Chongqing, China.

School of Basic Medical Sciences, North Sichuan Medical College, Nanchong, China.

出版信息

J Pineal Res. 2018 Sep;65(2):e12492. doi: 10.1111/jpi.12492. Epub 2018 Apr 6.

Abstract

Human health, food safety, and agriculture have been threatened by oomycetic diseases caused by notorious pathogenic oomycetes. Chemical oomyceticides are the main approaches in control of pathogenic oomycetes. However, the overused chemical oomyceticides have resulted in serious environmental pollution and drug resistance. The eco-friendly bio-oomyceticides are required for sustainable development through screening synergistic drug combinations. In this study, Phytophthora nicotianae (P. nicotianae), as one of the most destructive oomycetic diseases in agriculture, was used as a model system to screen the novel bio-oomyceticides based on drug combination. The results showed that treatment of melatonin or ethylicin (IUPAC Name: 1-ethylsulfonylsulfanylethane) alone displayed similar phenotypes such as the inhibition of the hyphal growth, reduction of the cell viability, and suppression of the virulence of P. nicotianae. Importantly, melatonin and ethylicin shared the same targets of interfering with the amino acid metabolism, overexpressing apoptosis-inducing factor, and dysregulating the virulence-related genes. Furthermore, strong synergism against P. nicotianae was induced by combining melatonin with ethylicin. Under treatment of the combination of melatonin and ethylicin, the expression of genes associated with amino acid, the apoptosis-inducing factor, and the virulence-related genes was much more significantly dysregulated than that of single drug treatment. Thus, the tobacco black shank caused by P. nicotianae can be successfully controlled using the combination of melatonin and ethylicin. These observations suggest that the synergistic effect based on the combination of melatonin and ethylicin is an eco-friendly alternative for the control of the destructive oomycetic diseases.

摘要

人类健康、食品安全和农业受到了由臭名昭著的致病性卵菌引起的卵菌病的威胁。化学杀卵剂是防治病原菌的主要方法。然而,过度使用化学杀卵剂导致了严重的环境污染和抗药性。为了可持续发展,需要筛选协同药物组合的环保型生物杀卵剂。在这项研究中,以烟草疫霉(P. nicotianae)为模型系统,作为农业中最具破坏性的卵菌病之一,筛选基于药物组合的新型生物杀卵剂。结果表明,褪黑素或乙硫氨酸(IUPAC 名称:1-乙基磺酰基硫基乙烷)单独处理表现出相似的表型,如抑制菌丝生长、降低细胞活力和抑制 P. nicotianae 的毒力。重要的是,褪黑素和乙硫氨酸具有相同的干扰氨基酸代谢、过表达凋亡诱导因子和失调与毒力相关基因的靶标。此外,褪黑素和乙硫氨酸联合使用可产生强烈的协同作用对抗 P. nicotianae。在褪黑素和乙硫氨酸联合处理下,与氨基酸、凋亡诱导因子和与毒力相关的基因相关的基因表达的失调比单一药物处理更为显著。因此,使用褪黑素和乙硫氨酸的组合可以成功控制由 P. nicotianae 引起的烟草黑胫病。这些观察结果表明,基于褪黑素和乙硫氨酸组合的协同作用是防治破坏性卵菌病的一种环保替代方法。

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