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Evaluation of surfactants and new oomycete fungicides for the control of Phytophthora root rot of citrus, caused by Phytophthora parasitica.

机译:评价表面活性剂和新的卵菌杀菌剂,以控制由寄生性疫霉菌引起的柑橘疫霉菌根腐病。

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摘要

The toxicity and efficacy of a commercial soil surfactant (Naiad ®) and new fungicides were evaluated against Phytophthora parasitica and Phytophthora root rot of citrus. The effect of Naiad ® on Phytophthora root rot of navel orange trees on sweet orange rootstocks, total microbial soil populations, citrus tree health, and soil properties was also evaluated in a multi-year field trial. Mycelial growth was insensitive to Tween 20, Tergitol NP-10, and Naiad® at concentrations as high as 200 μg a.i./ml. The duration of zoospore motility and the production of sporangia were significantly reduced in the presence of these surfactants. Naiad® at 20, 100, and 200-μg a.i./ml penetrated columns of soil 5.1, 10.2, and 20.3 cm in length and effluents reduced the duration of zoospore motility to less than 30 min.; In greenhouse experiments, Naiad® treatments reduced the incidence and severity of Phytophthora root rot of citrus, regardless of soil inoculation method (zoospores or chlamydospores). Application of 200 μg/ml Naiad® with each watering was the only treatment comparable to the standard fungicide treatment (Ridomil 2E or Ridomil Gold EC) in all trials. Except root flush applications, all Naiad® treatments reduced Phytophthora root rot. Naiad® applied during every irrigation at 100 μg a.i./ml and Ridomil 2E applications reduced soil populations of P. parasitica and increased rootstock diameter and fresh root weight of trees as compared to the control. Surfactant and fungicide treatments had no apparent negative effect on total soil bacterial or fungal populations, plant health, or soil properties. Application of Naiad ® in the first 12 h of a wetting cycle reduced colonization of leaf baits for up to 108 h.; Mefenoxam, with EC50 values ranging from 0.02 to 0.81 and 0.01 to 0.04 μg/ml, was the most inhibitory fungicide to P. parasitica mycelial growth and sporangia production of the fungicide evaluated. Fenamidone was the least effective with EC50 values ranging from 0.08 to 1887 and 1.44 to 50.10 μg/ml, respectively. Zoospore motility was most inhibited by fenamidone (EC50 ≤ 0.08 μg/ml). Single applications of these fungicides at 2 μg/ml significantly reduced Phytophthora root rot, as compared to water controls, in greenhouse trials.
机译:评价了商用土壤表面活性剂(Naiad ®)和新型杀菌剂对柑橘的 Phytophthora parasitica 和Phytophthora根腐病的毒性和功效。一项多年田间试验还评估了Naiad ®对脐橙树疫霉菌根腐烂对甜橙砧木,总微生物土壤种群,柑橘树健康和土壤特性的影响。浓度高达200μga.i./ml的菌丝体生长对Tween 20,Tergitol NP-10和Naiad 不敏感。在这些表面活性剂的存在下,游动孢子运动的持续时间和孢子囊的产生明显减少。 Naiad ®分别以20、100和200μga.i./ml的深度渗透到土壤5.1、10.2和20.3 cm的土壤柱中,流出物将游动孢子运动的持续时间缩短至不到30分钟。在温室实验中,无论采用何种接种方法(孢子或衣原体),Naiad ®处理均可降低柑橘疫霉菌根腐病的发生率和严重程度。在所有试验中,每次浇水均使用200μg/ ml Naiad ®是唯一与标准杀菌剂处理(Ridomil 2E或Ridomil Gold EC)相当的处理。除根冲洗外,所有Naiad ®处理均可减少疫霉根腐病。 Naiad ®在每次灌溉期间以100μga.i./ml施用,Ridomil 2E施用减少了 P的土壤种群。与对照相比,树木的根茎直径和新鲜根重增加。表面活性剂和杀真菌剂处理对土壤细菌或真菌的总数,植物健康或土壤特性没有明显的负面影响。 Naiad ®在湿润周期的前12小时内施用可减少长达108小时的叶饵定植。对 P而言,最有效的杀真菌剂是Mefenoxam,其EC 50 值在0.02至0.81和0.01至0.04μg/ ml之间。评价了杀菌剂的寄生虫菌丝体生长和孢子囊生成。 Fenamidone效果最差,EC 50 值分别为0.08至1887和1.44至50.10μg/ ml。芬尼酮(EC 50 ≤0.08μg/ ml)对游动孢子的运动具有最大的抑制作用。与水对照相比,在温室试验中,一次施用2μg/ ml的这些杀菌剂可显着减少疫霉根腐病。

著录项

  • 作者

    Mickler, Cheryl Jan.;

  • 作者单位

    University of California, Riverside.;

  • 授予单位 University of California, Riverside.;
  • 学科 Agriculture Plant Pathology.; Agriculture Agronomy.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 179 p.
  • 总页数 179
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物病理学;农学(农艺学);
  • 关键词

  • 入库时间 2022-08-17 11:46:17

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