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Parasitic Fitness of Fungicide-Resistant and -Sensitive Isolates ofAlternaria solani

机译:杀菌剂抗性和敏感分离株的寄生体健康

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摘要

Resistance to chemistries of the succinate dehydrogenase inhibiting (SDHI) and quinone outside inhibiting (Qol) fungicides has developed rapidly in populations of Alternaria solani, the cause of early blight of potato. Reduced sensitivity to the anilinopyrimidine (AP) fungicide pyr-imethanil has also been identified recently, determining that resistance to three chemical classes of fungicides is present within the A. solani population. Although no mutations have been characterized to confer resistance to APs, in A. solani five point mutations on three AsSdh genes have been determined to convey resistance to SDHIs, and the substitution of phenylalanine with leucine at position 129 (F129L) in the cytb gene confers resistance to Qols. The objective ofthis study was to investigate the parasitic fitness of A. solani isolates with resistance to one or more of these chemical classes. A total of 120 A. solani isolates collected from various geographical locations around the United States were chosenfor in vitro assessment, and 60 of these isolates were further evaluated in vivo. Fitness parameters measured were (i) spore germination in vitro, (ii) mycelial expansion in vitro, and (iii) aggressiveness in vivo. No significant differences in spore germination or mycelial expansion (P = 0.44 and 0.51, respectively) were observed among wild-type and fungicide-resistant isolates in vitro. Only A. solani isolates possessing the D123E mutation were shown to be significantly more aggressive in vivo (P < 0.0001) compared with wild-type isolates. These results indicate that fungicide-resistant A. solani isolates have no significant fitness penalties compared with sensitive isolates under the parameters evaluated regardless of the presence or absence of reduced sensitivity to multiple chemical classes. Results of these studies suggest that A. solani isolates with multiple fungicide resistances may compete successfully with wild-type isolates under field conditions.
机译:抗琥珀酸脱氢酶抑制(SDHI)和醌外抑制(QOL)杀菌剂的耐化学性迅速发展,在alertaria solani群体中迅速发展,早期枯萎的土豆。最近还鉴定了对苯胺嘧啶(AP)杀菌剂的敏感性降低,确定了A.Solani群中存在对三种化学类杀菌剂的抗性。尽管没有表征突变赋予APS的耐药性,但是在A.索尔替五点突变已经确定了对SDHIS的抗性传达,并在细胞组基因中的第129(F129L)的亮氨酸替代苯丙氨酸抵抗QoL。本研究的目的是研究A.Solani分离物的寄生合适性,其具有抗这些化学类别中的一种或多种。共选择从美国周围的各种地理位置收集的120 A.茄属分离物。在体外评估中,这些分离株中的60种进一步评估。测量的健身参数是(i)体外孢子萌发,(ii)体外菌丝体膨胀,(iii)体内侵略性。在体外野生型和杀菌剂抗性分离物中没有观察到孢子萌发或菌丝膨胀(P = 0.44和0.51)的显着差异。与野生型分离株相比,仅显示具有D123E突变的A. Solani分离物在体内(P <0.0001)中显着更具侵袭性。这些结果表明,无论存在对多种化学类别的敏感性如何降低的敏感性如何,抗菌剂抗性A.抗杀菌剂A分离物与参数的敏感分离物相比没有显着的健身局部。这些研究的结果表明,具有多种杀真菌剂电阻的A. solani分离物可以在现场条件下使用野生型分离物成功竞争。

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  • 来源
    《Plant Disease》 |2018年第3期|共8页
  • 作者单位

    Department of Plant Pathology North Dakota State University Fargo 58105;

    Department of Plant Pathology North Dakota State University Fargo 58105;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物保护;
  • 关键词

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