Different Infection Structures and Point Mutation of Diaporthe citri Showing Resistant against Systemic Fungicides.

IF 1.8 3区 农林科学 Q2 PLANT SCIENCES
Zar Zar Soe, Yong Ho Shin, Yong Chull Jeun
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Abstract

Infection behaviors of some susceptible and resistant Diaporthe citri isolates against two fungicides such as benomyl and kresoxim-methyl were observed on citrus leaves. On the chemically unsprayed leaves, there were no differences in not only the conidial germination rate but also hyphal growth between the resistant and susceptible isolates. However, on the benomyl or kresoximmethyl-pretreated leaves, both conidial germination rate and hyphal growth of the resistant isolates were not decreased, which was different with those of the susceptible isolates. These unchanging germination rate and hyphal growth of the resistant isolates, resulting in the lack of chemical efficacy, coincided with the previous studies in which strong infection was observed by the resistant isolates after pre-treatment with each chemical. On the other hand, a point mutation occurred at 198th amino acid of β-tubulin gene in the resistant isolate NEL21-2 which may cause the resistant against benomyl. However, no mutation was found in cytochrome b in the resistant isolates indicating other genomic changes may be responsible for the resistant against kresoxim-methyl.

柑桔不同侵染结构及点突变对系统杀菌剂的抗性。
观察了柑桔双孢子虫对苯甲酰和甲基氯霉辛两种杀菌剂的敏感和抗性分离株在柑桔叶片上的侵染行为。在未施用化学药剂的叶片上,抗性菌株和敏感菌株的分生孢子发芽率和菌丝生长均无差异。而在经苯甲酰或氯吡肟预处理的叶片上,抗性菌株的分生孢子发芽率和菌丝生长均未降低,但与敏感菌株不同。这些耐药菌株的发芽率和菌丝生长不变,导致缺乏化学效果,这与之前的研究相吻合,在每种化学物质预处理后,耐药菌株观察到强烈的感染。另一方面,耐药菌株NEL21-2 β-微管蛋白基因第198个氨基酸发生点突变,可能导致耐苯甲酰基的产生。然而,在耐药菌株中未发现细胞色素b突变,表明其他基因组变化可能导致对甲基克雷索辛的耐药。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Plant Pathology Journal
Plant Pathology Journal 生物-植物科学
CiteScore
4.90
自引率
4.30%
发文量
71
审稿时长
12 months
期刊介绍: Information not localized
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