Safeguarding Pollination Services in a Changing World: theory into practice (SURPASS2)
Safeguarding Pollination Services in a Changing World: theory into practice (SURPASS2)
批准号:
NE/S011870/1
负责人:
Matthew Heard
金额:
$182.06万
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2019
资助国家:
英国
项目状态:
已结题
起止时间:
2019 至 --
中文摘要
由于集约农业、栖息地丧失、气候变化和入侵物种等因素,昆虫传粉者在世界各地都出现了下降。这是拉丁美洲(LATAM)的一个主要关切,在那里它威胁到重要的经济作物和更广泛的生物多样性。LATAM的这些损失的影响仍然知之甚少,削弱了制定政策的能力,这些政策对于减少传粉者损失和支持农业生产和更广泛的生态系统健康至关重要。需要一个新的、连贯的证据基础,考虑对单个物种的影响、它们的分布和种群、它们坚持的景观以及它们向不同作物授粉的独特能力。如果没有这一点,就不可能开发政策制定者提供可持续农业经济所需的实用的实验和建模解决方案。这项建议建立在牛顿第一阶段项目超越的基础上,该项目是37个参与者之间的国际合作,确定了优先保护和可持续使用LATAM传粉者的知识差距、问题和研究领域。SURPASS2的目标是提供证据,证明为可持续经济增长、改善人类健康和福祉以及积极的环境和农业成果创造有弹性的授粉服务。这将通过与学者和利益攸关方共同设计的五个主要目标来解决,这些目标建立相互关联的一揽子工作方案,建设管理授粉服务和提供切实成果的能力。我们的目标将通过4个工作包实现:WP1)监测种群并了解其分布:在开发任何有效的解决方案来管理LATAM传粉者之前,我们了解当前物种的分布并开发和试验长期监测方法是至关重要的。只有了解在哪里可以找到传粉者,我们才能开发出实用的解决方案来管理它们。我们将设计一个标准化的框架,通过现有的和新的监测计划,包括公民科学,评估传粉者种群的状况和趋势。传粉者生活的环境如何影响它们,以及这如何影响作物授粉的能力:土地利用变化和土地管理是影响传粉者种群的基本因素。我们将在整个LATAM进行详细的景观规模实验,重点是重要的经济作物的生产,以了解景观管理如何影响授粉者及其提供的授粉服务。这将为模型提供数据,并帮助种植者、土地管理者和政策制定者优化授粉,以可持续地提高作物产量和质量。我们还将量化入侵物种的传粉者对野生和本地昆虫传粉者和植物的影响。WP3)了解关键作物授粉方面的国家规模赤字,确定授粉服务处于高风险的地区。利用先进的卫星图像,我们将在全国范围内绘制关键昆虫授粉作物的发生情况图。我们将把这些数据与昆虫传粉者群落的分布联系起来,以评估这些种群是否提供了足够的授粉,以及模拟这些群落对物种丧失的适应能力。由于每种昆虫传粉者都是独一无二的,它们的丧失可能会对农业生产产生潜在的巨大后果。WP4)制定一个国家规模预测框架,以支持授粉为农业生产力带来的利益最大化的政策目标。这将整合来自WP1-3的结果,以建立传粉者群落模型,为受益于昆虫授粉的不同利益相关者制定有效的决策过程战略。这将提供一个框架,与利益相关者合作,为最大限度地利用LATAM的授粉服务和长期监测制定路线图。
英文摘要
Insect pollinators have undergone declines across the world, a result of factors including intensive agriculture, habitat loss, climate change and invasive species. This represents a major concern in Latin America (LATAM) where it threatens economically important crops and wider biodiversity. The impact of these losses in LATAM remains poorly understood, undermining the capacity to develop policies vital to mitigate pollinator losses and support both agricultural production and wider ecosystem health. A new, coherent evidence base is required, that considers impacts on individual species, their distributions and populations, the landscapes they persist in and their unique capacities to deliver pollination to different crops. Without this it will not be possible to develop the applied experimental and modelling solutions policy makers need to deliver sustainable farming economies. This proposal builds on Newton Phase 1 project SURPASS, an international collaboration between 37 participants, that identified knowledge gaps, issues, and research areas that prioritise conservation and sustainable use of LATAM pollinators. The SURPASS2 goal is to deliver evidence for the creation of resilient pollination services for sustainable economic growth, improved human health and wellbeing as well as positive environmental and agricultural outcomes. This will be addressed by five main objectives, co-designed with academics and stakeholders that establish interconnected work packages that build capacity to manage pollination services and provide tangible outcomes. Our goals will be delivered through 4 work packages: WP1) Monitoring populations and understanding their distributions: before any effective solution can be developed to manage LATAM pollinators it is crucial that we understand the current distribution of species and develop and trial approaches for long term monitoring. Only by understanding where pollinators can be found can we develop applied solutions to manage them. We will design a standardised framework to assess the status and trends of pollinator populations through existing and new monitoring schemes, including citizen science. WP2) How does the environment in which pollinators live affect them, and how does this affect capacity to provide crop pollination: Land use change and land management represent fundamental factors affecting pollinator populations. We will undertake detailed landscape scale experiments across LATAM focusing on production of economically significant crops to understand how landscape management affects pollinators and the pollination services they supply. This will provide data for models and help growers, land managers and policy makers to optimise pollination to sustainably increase crop yields and quality. We will also quantify how invasive species of pollinators impact on wild and native insect pollinators and plants. WP3) Understanding national scale deficits in pollination for key crops identifying areas where pollination services are at high risk. Using cutting edge satellite imagery we will map nationally the occurrence of key insect pollinated crops. We will link this data to the distribution of insect pollinator communities to assess if these populations provide adequate pollination, as well as modelling how resilient these communities are to species losses. As each species of insect pollinator is unique their loss can have potentially huge consequences for agricultural production. WP4) Develop a national scale predictive framework to support policy goals of maximising benefits for agricultural productivity provided by pollination. This will integrate results from WP1-3 to model pollinator communities to develop effective strategies for decision making processes for different stakeholders that benefit from insect pollination. This will provide the framework to work with stakeholders to produce a roadmap for maximising pollination services and long term monitoring in LATAM.
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DOI:
10.1007/s10841-022-00384-5
发表时间:
2022-02
期刊:
Journal of Insect Conservation
影响因子:
1.9
作者:
[C. Morales;J. Montalvà;M. Arbetman;M. Aizen;A. C. Martins;D. P. Silva]
通讯作者:
C. Morales;J. Montalvà;M. Arbetman;M. Aizen;A. C. Martins;D. P. Silva
Mistletoes in a changing world: a premonition of a non-analog future?
不断变化的世界中的槲寄生:非模拟未来的预感?
DOI:
10.1139/cjb-2019-0195
发表时间:
2020
期刊:
Botany
影响因子:
1.1
作者:
[Fontúrbel F]
通讯作者:
Fontúrbel F
Large-scale monoculture reduces honey yield: The case of soybean expansion in Argentina
大规模单一种植降低了蜂蜜产量:阿根廷大豆扩张案例
DOI:
10.1016/j.agee.2020.107203
发表时间:
2021
期刊:
Agriculture, Ecosystems & Environment
影响因子:
--
作者:
[De Groot G]
通讯作者:
De Groot G
Phenological overlap between crop and pollinators: Contrasting influence of native and non-native bees on raspberry fruits over the flowering season
作物和传粉者之间的物候重叠:开花季节本地和非本地蜜蜂对覆盆子果实的影响对比
DOI:
10.1111/1365-2664.14519
发表时间:
2023
期刊:
Journal of Applied Ecology
影响因子:
5.7
作者:
[Sáez A]
通讯作者:
Sáez A
Crop-Specific Effects on Pan-Trap Sampling of Potential Pollinators as Influenced by Trap Color and Location
诱集器颜色和位置对潜在传粉者泛诱器采样的作物特异性影响
DOI:
10.3390/agronomy13020552
发表时间:
2023
期刊:
Agronomy
影响因子:
--
作者:
[Jaques S]
通讯作者:
Jaques S
共 7 条
Integrating networked large datasets into undergraduate teaching and research through a collaborative workshop with EREN, NEON and Project EDDIE
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批准号:2005443
-
项目类别:Standard Grant
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资助金额:$10.0万
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财政年份:2020
-
负责人:Matthew Heard
-
依托单位:
Developing the BEESOCOSM - a modular, multi-species bee cage for laboratory experiments (NEC05913)
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批准号:NE/P008844/1
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项目类别:Research Grant
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资助金额:$1.88万
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财政年份:2016
-
负责人:Matthew Heard
-
依托单位:
海外基金