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噻虫嗪处理种子对弗吉尼亚西南部食荚菜豆上的墨西哥豆瓢虫(鞘翅目:瓢虫科)、非靶标节肢动物及作物表现的影响

Effects of Thiamethoxam-Treated Seed on Mexican Bean Beetle (Coleoptera: Coccinellidae), Nontarget Arthropods, and Crop Performance in Southwestern Virginia Snap Beans.

作者信息

Nottingham L, Kuhar T P, Kring T, Herbert D A, Arancibia R, Schultz P

机构信息

Washington State University Tree Fruit Research and Extension Center Wenatchee, WA 98801.

Department of Entomology, Virginia Tech, Blacksburg, VA 24061-0319.

出版信息

Environ Entomol. 2017 Dec 8;46(6):1397-1405. doi: 10.1093/ee/nvx152.

Abstract

Thiamethoxam is a neonicotinoid insecticide commonly applied directly to the seeds (seed-treatment) of commercial snap beans, Phaseolus vulgaris L. While previous studies have examined target and nontarget effects of thiamethoxam seed-treatments in snap beans and other crops, to our knowledge, none have been conducted in agroecosystems predominated by the pest Mexican bean beetle, Epilachna varivestis Mulsant (Coleoptera: Coccinellidae). This study examined the effects of thiamethoxam-treated snap beans on E. varivestis, other arthropods, and crop performance in southwestern Virginia. Greenhouse experiments were conducted to evaluate residual toxicity of treated snap beans to E. varivestis and a key predator, Podisus maculiventris (Say) (Hemiptera: Pentatomidae). Treated plants were highly toxic to E. varivestis at 13 d, moderately toxic from 16 to 20 d, and minimally toxic at 24 d. P. maculiventris was unaffected by exposure to treated plants or by feeding on E. varivestis that consumed treated plants. Small plot field experiments in 2014 and 2015 showed no significant effects of thiamethoxam seed-treatments on E. varivestis densities, other arthropods, crop injury, or yield. In 2016, planting was delayed by persistent rain, resulting in early E. varivestis colonization. In this year, thiamethoxam-treated plants had significantly lower densities and feeding injury from E. varivestis, followed by significantly higher yields. Natural enemies were unaffected by seed-treatments in all field experiments. These experiments demonstrated that thiamethoxam seed-treatments provide control of E. varivestis when beetles infest fields within 2 to 3 wk after planting; but otherwise provide negligible advantages. Negative effects from thiamethoxam seed-treatments on nontarget arthropods appear minimal for snap beans in this region.

摘要

噻虫嗪是一种新烟碱类杀虫剂,通常直接施用于商业种植的菜豆(Phaseolus vulgaris L.)种子上(种子处理)。虽然之前的研究已经考察了噻虫嗪种子处理对菜豆和其他作物的靶标及非靶标效应,但据我们所知,尚未在以害虫墨西哥豆瓢虫(Epilachna varivestis Mulsant,鞘翅目:瓢虫科)为主导的农业生态系统中开展相关研究。本研究考察了经噻虫嗪处理的菜豆对墨西哥豆瓢虫、其他节肢动物以及弗吉尼亚西南部作物表现的影响。开展了温室试验,以评估经处理的菜豆对墨西哥豆瓢虫和一种关键捕食者黄斑蝽(Podisus maculiventris (Say),半翅目:蝽科)的残留毒性。处理后的植株在第13天对墨西哥豆瓢虫具有高毒性,在第16至20天具有中等毒性,在第24天具有最低毒性。黄斑蝽不受接触处理后植株的影响,也不受取食取食了处理后植株的墨西哥豆瓢虫的影响。2014年和2015年的小区田间试验表明,噻虫嗪种子处理对墨西哥豆瓢虫密度、其他节肢动物、作物损伤或产量没有显著影响。2016年,由于持续降雨导致种植延迟,从而使得墨西哥豆瓢虫早期定殖。在这一年,经噻虫嗪处理的植株上墨西哥豆瓢虫的密度和取食损伤显著降低,随后产量显著提高。在所有田间试验中,天敌均未受到种子处理的影响。这些试验表明,当甲虫在种植后2至3周内侵染田地时,噻虫嗪种子处理可有效防治墨西哥豆瓢虫;但除此之外,其优势微不足道。在该地区,噻虫嗪种子处理对菜豆非靶标节肢动物的负面影响似乎极小。

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