Legume integration for biological control deserves a firmer scientific base

IF 3.5 3区 经济学 Q1 AGRICULTURE, MULTIDISCIPLINARY Outlook on Agriculture Pub Date : 2023-08-21 DOI:10.1177/00307270231194086
K. Wyckhuys, M. González-Chang, B. Lavandero, Yd Gc, Barghamadi Hadi
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Abstract

Diversification measures are widely recognized for their potential to enhance the resilience of agri-food production systems under global change. Nitrogen-fixing legumes commonly feature in diversification schemes, where they exert positive impacts on soil structure, nutrient retention, carbon sequestration or fertilizer reduction. Though legumes are premier tools for conservation agriculture, their impacts on (invertebrate, microbial) biological control are far less clear. As legumes secrete copious amounts of energy-rich (floral, extra-floral) nectar and provide alternative host or prey items for resident natural enemies, their deployment is expected to benefit biological control. Yet, its mechanistic basis is poorly understood and scientific underpinnings weak. In this Perspective piece, we collate data from the published literature and open-access databases on the extent to which different natural enemy guilds interact with 25 legume species that are commonly used as intercrops in the (sub)tropics. Our work unveils how natural enemies regularly forage on legumes, but the portrayal of those interaction linkages –or “biostructure” data- is profoundly incomplete and their ensuing implications for biological control are under-investigated. For instance, merely 4 (out of 167) parasitoids of the globally invasive fall armyworm Spodoptera frugiperda have been recorded in association with legumes. We hope that this Perspective piece will stimulate further thought, drive a new wave of biodiversity x ecosystem function research, and ultimately result in the design and implementation (or preservation) of more resilient, resource-frugal and pest-suppressive farming systems.
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豆类生物防治一体化应有更坚实的科学基础
多样化措施因其在全球变化下增强农业食品生产系统复原力的潜力而得到广泛认可。固氮豆类通常是多样化计划的特色,它们对土壤结构、养分保持、碳固存或化肥减少产生积极影响。尽管豆类是保护性农业的首要工具,但它们对(无脊椎动物、微生物)生物控制的影响远不明确。由于豆科植物分泌大量富含能量的(花、花外)花蜜,并为常驻天敌提供替代宿主或猎物,因此它们的部署有望有利于生物控制。然而,人们对其机械基础知之甚少,科学基础薄弱。在这篇透视文章中,我们整理了已发表的文献和开放获取数据库中的数据,了解不同的天敌集团与25种豆类物种的相互作用程度,这些豆类物种在(亚)热带地区通常被用作间作作物。我们的工作揭示了天敌是如何定期以豆类为食的,但对这些相互作用联系或“生物结构”数据的描述极不完整,其对生物控制的影响正在调查中。例如,在全球入侵的秋粘虫草地贪夜蛾中,只有4种(167种)寄生蜂与豆类有关。我们希望这篇透视文章将激发进一步的思考,推动新一波生物多样性x生态系统功能研究,并最终设计和实施(或保护)更具弹性、资源节约和害虫抑制的农业系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Outlook on Agriculture
Outlook on Agriculture 农林科学-农业综合
CiteScore
5.60
自引率
13.30%
发文量
38
审稿时长
>36 weeks
期刊介绍: Outlook on Agriculture is a peer reviewed journal, published quarterly, which welcomes original research papers, research notes, invited reviews and commentary for an international and interdisciplinary readership. Special attention is paid to agricultural policy, international trade in the agricultural sector, strategic developments in food production, the links between agricultural systems and food security, the role of agriculture in social and economic development, agriculture in developing countries and environmental issues, including natural resources for agriculture and climate impacts.
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