首页> 外文学位 >Use of HPPD-inhibiting herbicides for control of common weeds in Arkansas and current status of herbicide-resistance among Echinochloa populations in Arkansas.
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Use of HPPD-inhibiting herbicides for control of common weeds in Arkansas and current status of herbicide-resistance among Echinochloa populations in Arkansas.

机译:抑制HPPD的除草剂在阿肯色州控制常见杂草的用途以及阿肯色州E虫种群中抗除草剂的现状。

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摘要

Herbicide-resistant weeds in Arkansas cause problems for growers. Up-to-date information and new technologies can help plan mitigation strategies to slow resistant weeds. The objectives of this research were to provide a 'snapshot' of herbicide-resistant Echinochloa spp. in rice producing counties, determine how much resistance has spread across the state, and understand the effectiveness of 4-hydroxyphenylpyruvate dioxygenase (HPPD)-inhibiting herbicides for control of glyphosate-resistant (GR) Palmer amaranth relative to commercial standards currently labeled in soybean. To assess the prevalence of Echinochloa spp. resistance, 82 samples were collected from 23 rice producing counties in 2010. The samples were tested for resistance to commonly used rice herbicides: propanil, quinclorac, imazethapyr, fenoxaprop, clomazone, and glyphosate. Of the 82 samples collected, 29 were resistant to propanil, 13 were resistant to quinclorac and 9 samples were resistant to both propanil and quinclorac. Accessions were also treated with 0.5x the labeled field rate for glufosinate and isoxaflutole to determine background variation in sensitivity among populations to these herbicides as Echinochloa is among the major weeds in crops where these herbicides are used. No resistance to imazethapyr, clomazone, fenoxaprop, or glyphosate was observed; likewise all accessions were sensitive to glufosinate or isoxaflutole. One strategy for controlling herbicide-resistant weeds is the use of transgenic crops. The expected release of soybean in 2016 and cotton in 2020 with resistance to HPPD-inhibiting herbicides provide alternative mechanisms-of-action to control weeds. Experiments were conducted in 2010 and 2011 to determine the efficacy of HPPD-inhibiting herbicides as a preemergence (PRE) option for Echinochloa spp. and Palmer amaranth control and as a postemergence (POST) option with and without glyphosate or glufosinate. The PRE applied HPPD-inhibiting herbicides do not carry the residual control as the current industry standards; however they are still capable of providing 4 weeks of control of Palmer amaranth and Echinochloa spp.. For both years in the POST trials, all treatments, except glyphosate alone, provided >90% control of 2.5- to 10-cm tall GR-Palmer amaranth at 3 wk after treatment. When herbicides were applied to larger Palmer amaranth, 15- to 25-cm tall, control with isoxaflutole + glyphosate, tembotrione + glufosinate, and tembotrione + glyphosate were greater than 90%. Applications made to Palmer amaranth larger than 25 cm was not effective (< 80% control).
机译:阿肯色州的抗除草剂杂草给种植者带来麻烦。最新的信息和新技术可以帮助制定减缓杂草减缓策略。这项研究的目的是提供抗除草剂棘轮虫属植物的“快照”。在水稻生产县,确定在全州分布了多少抗药性,并了解相对于目前在大豆中标记的商业标准,抑制4-羟苯基丙酮酸双加氧酶(HPPD)的除草剂对于控制草甘膦抗性(GR)Palmer mar菜的有效性。评估of虫的患病率。抗药性,2010年从23个水稻生产县收集了82个样品。对样品进行了抗水稻常用除草剂测试:丙胺,喹克洛拉克,咪唑乙烟,非诺沙普,克霉唑和草甘膦。在收集的82个样本中,有29个对丙氨酸有抗药性,有13个对喹氯拉克有抗药性,有9个样品对丙胺和喹氯拉克都有抗药性。还用0.5x标记的草铵膦和异草铵磷的田间处理量处理种质,以测定种群对这些除草剂的敏感性的背景差异,因为E草是使用这些除草剂的农作物中的主要杂草之一。没有观察到对咪唑乙烟,氯马zone,非诺沙普或草甘膦有抗药性;同样,所有种质均对草铵膦或异草铵磷敏感。控制抗除草剂杂草的一种策略是使用转基因作物。预计对2016年大豆的释放以及对2020年棉花的抗HPPD抑制性除草剂的抗性提供了控制杂草的替代作用机制。在2010年和2011年进行了实验,以确定抑制HPPD的除草剂作为E草(Echinochloa spp)的出苗前(PRE)选项的功效。和Palmer mar菜红素防治,以及在有或没有草甘膦或草铵膦的情况下作为发芽后(POST)选项。 PRE所施加的HPPD抑制性除草剂没有按照当前行业标准进行残留控制。但是,它们仍然能够控制Palmer mar菜和E草(Echinochloa spp。)4周。在POST试验的两年中,除草甘膦以外的所有处理方法均能对2.5到10厘米高的GR-Palmer进行> 90%的控制治疗后3周k菜红。当将除草剂施用于15至25厘米高的较大Palmer mar菜时,用异草磷谷草酮+草甘膦,替康三酮+草铵膦和替康三酮+草甘膦防治的比例大于90%。大于25 cm的Palmer mar菜的施用无效(<80%对照)。

著录项

  • 作者

    Starkey, Clay E.;

  • 作者单位

    University of Arkansas.;

  • 授予单位 University of Arkansas.;
  • 学科 Agronomy.;Agriculture.
  • 学位 M.S.
  • 年度 2015
  • 页码 77 p.
  • 总页数 77
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:25

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