Department of Agricultural Biology, 1177 Campus Delivery, Colorado State University, Fort Collins, CO 80525, USA.
School of Agriculture, Food and Wine, University of Adelaide, Glen Osmond, SA, 5005, Australia.
Plant Sci. 2020 Nov;300:110631. doi: 10.1016/j.plantsci.2020.110631. Epub 2020 Aug 7.
Synthetic auxin herbicides are designed to mimic indole-3-acetic acid (IAA), an integral plant hormone affecting cell growth, development, and tropism. In this review, we explore target site genes in the auxin signaling pathway including SCF, Aux/IAA, and ARFs that are confirmed or proposed mechanisms for weed resistance to synthetic auxin herbicides. Resistance to auxin herbicides by metabolism, either by enhanced cytochrome P450 detoxification or by loss of pro-herbicide activation, is a major non-target-site resistance pathway. We speculate about potential fitness costs of resistance due to effects of resistance-conferring mutations, provide insight into the role of polyploidy in synthetic auxin resistance evolution, and address the genetic resources available for weeds. This knowledge will be the key to unlock the long-standing questions as to which components of the auxin signaling pathway are most likely to have a role in resistance evolution. We propose that an ambitious research effort into synthetic auxin herbicide/target site interactions is needed to 1) explain why some synthetic auxin chemical families have activity on certain dicot plant families but not others and 2) fully elucidate target-site cross-resistance patterns among synthetic auxin chemical families to guide best practices for resistance management.
合成生长素除草剂旨在模拟吲哚-3-乙酸(IAA),这是一种影响细胞生长、发育和向性的植物激素。在这篇综述中,我们探讨了生长素信号通路中的靶标基因,包括 SCF、Aux/IAA 和 ARFs,这些基因被证实或被提议为杂草对合成生长素除草剂产生抗性的机制。通过代谢对生长素除草剂产生抗性,无论是通过增强细胞色素 P450 解毒作用还是丧失原除草剂的激活作用,都是主要的非靶标抗性途径。我们推测了由于抗性赋予突变的影响而产生的潜在适应成本,深入了解了多倍体在合成生长素抗性进化中的作用,并探讨了杂草可用的遗传资源。这些知识将是解开生长素信号通路的哪些组成部分最有可能在抗性进化中发挥作用的长期存在的问题的关键。我们提出,需要对合成生长素除草剂/靶标相互作用进行积极的研究,以 1)解释为什么某些合成生长素化学家族对某些双子叶植物家族有活性而对其他家族没有活性,以及 2)充分阐明合成生长素化学家族之间的靶标交叉抗性模式,以指导抗性管理的最佳实践。