...
首页> 外文期刊>The Journal of Applied Ecology >Metabarcoding of canopy arthropods reveals negative impacts of forestry insecticides on community structure across multiple taxa
【24h】

Metabarcoding of canopy arthropods reveals negative impacts of forestry insecticides on community structure across multiple taxa

机译:Metabarcoding树冠的节肢动物负面影响林业杀虫剂跨多个类群群落结构

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Abstract Insecticides used to combat outbreaks of forest defoliators can adversely affect non‐target arthropods. Forestry insecticides typically suppress Lepidoptera larvae which are the cornerstone of the canopy community of deciduous oak forests. The abrupt removal of this dominant component of the food web could have far‐reaching implications for forest ecosystems, yet it is rarely investigated in practice owing to several methodological shortcomings. The taxonomic impediment and the biased nature of arthropod sampling techniques particularly impede the assessment of insecticide impacts on diverse communities. To tackle this issue, we propose an experimental approach combining sampling by pyrethrum knockdown and species determination via DNA metabarcoding, using community subsampling to derive estimates of species abundances. We applied this protocol to investigate the short‐term effects of the insecticides diflubenzuron (DFB) and Bacillus thuringiensis var. kurstaki (BTK) on canopy‐dwelling arthropod communities in German oak woodlands. Our approach allowed us to detect most of the diversity and integrate species abundances in our analyses. By classifying arthropod species into assemblages based on their expected sensitivity rather than coarse taxonomic groupings, we could unveil substantial effects of DFB across multiple taxa 5 weeks after application. Although strong effects on single species appear related to direct toxicity, substantial impacts of DFB on parasitoids and xylophagous beetles suggest that anti‐defoliator treatments can have previously unsuspected indirect effects on some components of forest arthropod communities. The impacts of BTK on community structure were consistent with that of DFB though much weaker. Synthesis and applications. Comparing diversity patterns in the arthropod communities of sprayed and unsprayed oak canopies, our results show that selective insecticides can alter species diversity in presumably non‐sensitive taxa. Even though the ecological significance of these impacts has yet to be assessed in an operational setting, their existence calls for increased regulatory scrutiny on indirect effects. As community approaches become more attainable with the rapid development of DNA metabarcoding, we suggest the inclusion of community‐level end points as regulatory requirements for the approval of forest‐use insecticides.
机译:抽象的杀虫剂用于作战的爆发森林去叶剂可以产生不利影响非目标节肢动物。通常抑制鳞翅目幼虫树冠共同体的基石落叶橡树森林。食物网的主要组件量达到对森林生态系统,然而,很少在实践中由于调查几种方法的缺点。分类障碍和偏见的本质节肢动物采样技术特别是阻碍杀虫剂对多样化的影响的评估社区。实验方法结合抽样除虫菊击倒和物种决心通过DNA metabarcoding,使用社区二次抽样中物种丰度的估计。该协议适用于调查短学期杀虫剂的影响二氟脲(足协)和苏云金杆菌社区在德国橡树林中。让我们发现大部分的多样性和在我们分析集成物种丰度。节肢动物物种分类组合基于他们预期的敏感性而不是粗分类分组,我们可以推出实质性的影响跨多个类群分布反馈5周后的应用程序。对单一物种出现相关的影响直接毒性,足协在实质性的影响拟寄生物和xylophagous甲虫建议反食疗法可以以前未知的一些组件上的间接影响森林的节肢动物的社区。对社区结构是一致的杀人案足协虽然弱得多。应用程序。节肢动物群落的喷洒和unsprayed橡树的树冠上,我们的结果表明,选择性杀虫剂可以改变物种的多样性大概非敏感类群。这些影响的生态意义他们在一个操作环境进行评估存在增加监管审查的呼声间接影响。更可以实现快速发展DNA metabarcoding,我们建议的社区检测端点作为监管水平要求批准的森林使用杀虫剂。

著录项

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