...
首页> 外文期刊>The Journal of Applied Ecology >Plant diversity ameliorates the evolutionary development of fungicide resistance in an agricultural ecosystem
【24h】

Plant diversity ameliorates the evolutionary development of fungicide resistance in an agricultural ecosystem

机译:植物在改善着进化的多样性杀菌剂抗性的发展农业生态系统

获取原文
获取原文并翻译 | 示例

摘要

1. The evolution of fungicide resistance in agricultural and natural ecosystems is associated with the biology of pathogens, the chemical property and application strategies of the fungicides. The influence of ecological factors such as host diversity on the evolution of fungicide resistance has been largely overlooked but is highly relevant to social and natural sustainability. In this study, we used an experimental evolution approach to understand how host population heterogeneity may affect the evolution of fungicide resistance in the associated pathogens. 2. Potato populations with six levels of genetic heterogeneity were grown in the same field and naturally infected by Phytophthora infestans. Pathogen isolates (~1,200) recovered from the field experiment were molecularly genotyped. Genetically distinct isolates were selected from each population and 142 isolates were assayed for their tolerance to two fungicides differing in the mode of action. Tolerance was determined by calculating the relative growth rate of the isolates in the presence and absence of fungicides and the effective concentration for 50% inhibition. 3. The evolution of fungicide resistance in P. infestans was affected by the genetic variation of host populations. Higher potato diversification increased the sensitivity of P. infestans to both fungicides and reduced genetic variation of the pathogen available for the development of fungicide resistance. These mitigating effects are independent of biochemical properties of fungicides and are likely caused by host selection for pathogen strains differing in the ability of fungicide influxes, effluxes or detoxification rather than mutations in fungicide target genes. 4. Synthesis and applications. The development of fungicide resistance greatly threatens food security and ecological sustainability, and it is urgent need to develop agricultural practices which can ameliorate this problem. Our results show that potato crop with a higher genetic diver
机译:1. 农业与自然生态系统相关联病原生物学,化学的性质和应用策略杀真菌剂。如主机进化的多样性杀菌剂抵抗被人们忽视了但高度相关的社会和自然可持续性。了解实验进化方法主机人口异质性可能影响进化的杀菌剂抵抗病原体有关。遗传异质性是生长在六级相同的字段和自然感染5种。(1200年~)从田间试验中恢复分子水平上的基因分型。从每个人口和隔离被选中142隔离化验的宽容两个杀真菌剂不同的行动模式。宽容是由计算决定相对增长率的隔离存在和缺乏杀菌剂有效抑制浓度为50%。在P杀菌剂的发展阻力。5种遗传变异的影响的主机数量。多样化的敏感性增加P。5种杀菌剂和减少遗传可用的病原体的变异杀菌剂抗性的发展。减轻生化效应是独立的杀真菌剂的性质和可能造成的宿主病原体不同菌株的选择杀菌剂请自来的能力,流出解毒而不是突变杀菌剂目标基因。杀菌剂的发展阻力很大威胁食品安全和生态可持续发展,是迫切需要发展农业实践,可以改善这个问题问题。较高的遗传潜水员

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号