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Challenges and opportunities for the Quebec cranberry industry: towards better management of wild pollinators

Challenges and opportunities for the Quebec cranberry industry: towards better management of wild pollinators
魁北克蔓越莓产业的挑战和机遇:更好地管理野生授粉昆虫
批准号:
571456-2021
负责人:
Gillung, JessicaJ
金额:
$3.28万
依托单位:
依托单位国家:
加拿大
项目类别:
Alliance Grants
财政年份:
2022
资助国家:
加拿大
项目状态:
已结题
起止时间:
2022-01-01 至 2023-12-31

项目摘要

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中文摘要
翻译
传粉媒介多样性和丰度的下降可归因于多种环境压力因素,包括气候变化、疾病传播和土地利用变化。最近的研究表明,农业集约化大大减少了授粉服务,但需要进行研究,以确定导致更大影响的具体农艺做法,或者相反,促进传粉者群落。蔓越莓是加拿大的一种重要作物,其产业在魁省迅速发展。蔓越莓的生产依赖于昆虫提供的授粉服务,种植者主要依靠管理蜜蜂,如大黄蜂和蜜蜂。然而,受管理的传粉媒介正在减少,成本越来越高,威胁着该行业的前景。加强野生传粉媒介可以减少对管理蜜蜂的依赖,但它们在农业生态系统中的持久性既取决于当地的管理做法,也取决于对农场周围高质量栖息地的维持。加强野生传粉媒介的蔓越莓生产实践可以增强该行业对管理蜜蜂数量下降的抵御能力,并降低租用或购买管理传粉媒介的相关成本。了解蔓越莓生产所需的授粉服务的基本进化和生态方面也可以告知如何使该产业更具可持续性,并减少作物对生物多样性的生态影响。该项目将评估不同的农场管理措施如何影响野生传粉者群落,以及传粉者系统发育多样性如何转化为最终调节生态系统服务的功能多样性。许多研究已经量化了由于土地利用变化而导致的传粉媒介功能和系统发育多样性的变化,但很少有人试图确定驱动这些变化的具体农艺实践。这些知识可以为种植者、利益相关者和政策制定者提供更可持续的蔓越莓实践信息,以保持理想的作物产量,同时增加本地传粉者的服务,降低蜜蜂和蜜蜂的密度。景观简化和农业集约化对减少传粉昆虫多样性的作用已经众所周知,但很少有研究探讨传粉昆虫系统发育、环境、功能性状和传粉服务之间的关系。该项目的创新方面包括:(1)整合分类、功能和系统发育多样性;(ii)将野生传粉媒介的功能生态学与农场管理做法和对受管理蜜蜂的需求联系起来;(3)利用现代基因组学和统计学方法对系统发育和功能多样性进行可靠的估计。本项目取样的昆虫将使用所要求的临界点干燥机在麦吉尔莱曼昆虫博物馆进行长期存档。该仪器防止了标本的萎缩,同时也保存了它们的DNA,从而促进了它们的鉴定和功能特征的获取以及用于系统发育估计的基因组数据。通过调查农场管理实践对蔓越莓田间及其周围本地传粉者群落的影响,项目成果将为魁北克及其他地区的利益相关者和决策者提供直接渠道。我们将评估分类、功能和系统发育多样性之间的联系,探索生物多样性的多个方面,以全面了解有助于增加农业生态系统中传粉者多样性和生态系统服务的文化实践。这项研究将为利益相关者和政策制定者提供更可持续和对传粉媒介友好的蔓越莓实践信息,从而提高农场盈利能力、行业恢复力,并促进对农业生态系统的更好管理。
英文摘要
Declines in pollinator diversity and abundance can be attributed to multiple environmental stressors, including climate change, disease spread, and land use change. Recent studies have shown that agricultural intensification greatly reduces pollination services, but research is needed to identify specific agronomic practices that lead to greater impacts, or conversely, promote pollinator communities. Cranberry is an important crop in Canada, and the industry is rapidly growing in Québec. Cranberry production depends on pollination services provided by insects, and growers mostly rely on managed bees, such as bumble and honey bees. Managed pollinators, however, are in decline and increasingly costly, threatening the industry's prospects. Enhancing wild pollinators could reduce dependence on manages bees, but their persistence in agroecosystems depends both on local management practices and the maintenance of high-quality habitats around farms. Cranberry production practices that enhance wild pollinators could strengthen the industry's resilience against managed bees decline and decrease the costs associated with renting or purchasing managed pollinators.Understanding basic evolutionary and ecological aspects of the pollination services required in cranberry production can also inform how to make the industry more sustainable and reduce the crop's ecological impact on biodiversity. This project will assess how different farm management practices affect wild pollinator communities, and how pollinator phylogenetic diversity translates to functional diversity'which ultimately mediates ecosystem services. Multiple studies have quantified changes in the functional and phylogenetic diversity of pollinators due to land-use change, but few have attempted to identify specific agronomic practices driving these changes. This knowledge could inform growers, stakeholders, and policy makers on more sustainable cranberry practices that maintain desired crop yield while simultaneously increasing native pollinator services and decreasing bumble and honey bee density.The role of landscape simplification and agricultural intensification on reducing pollinator diversity is well known, but few studies have examined the relationships among pollinator phylogeny, environment, functional traits, and pollination services. Innovative aspects of this project include: (i) integrating taxonomic, functional, and phylogenetic diversity; (ii) linking the functional ecology of wild pollinators to farm management practices and need for managed bees; and (iii) utilizing modern genomic and statistical methods for robust estimates of phylogeny and functional diversity. Insects sampled in this project will be prepared for long-term archival at the McGill Lyman Entomological Museum using the requested critical point dryer. This instrument prevents shrivelling of specimens while also preserving their DNA, thus facilitating their identification and the acquisition of functional traits and genomic data for phylogeny estimation. By investigating the effect of farm management practices on the native pollinator communities in and around cranberry fields, project outcomes will provide a direct channel to stakeholders and policy makers in Quebec and beyond. We will assess linkage between taxonomic, functional, and phylogenetic diversity, exploring multiple biodiversity facets for a comprehensive understanding of cultural practices conducive to increasing pollinator diversity and ecosystem services in agroecosystems. This research will inform stakeholders and policy makers on more sustainable and pollinator-friendly cranberry practices that enhance farm profitability, industry resilience, and promote better management of agroecosystems.
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