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Toward an integrated approach to crop production and pollination ecology through the application of remote sensing

机译:通过遥感技术实现作物生产和授粉生态的综合方法

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摘要

Insect pollinators provide an essential ecosystem service by transferring pollen to crops and native vegetation. The extent to which pollinator communities vary both spatially and temporally has important implications for ecology, conservation and agricultural production. However, understanding the complex interactions that determine pollination service provisioning and production measures over space and time has remained a major challenge. Remote sensing technologies (RST), including satellite, airborne and ground based sensors, are effective tools for measuring the spatial and temporal variability of vegetation health, diversity and productivity within natural and modified systems. Yet while there are synergies between remote sensing science, pollination ecology and agricultural production, research communities have only recently begun to actively connect these research areas. Here, we review the utility of RST in advancing crop pollination research and highlight knowledge gaps and future research priorities. We found that RST are currently used across many different research fields to assess changes in plant health and production (agricultural production) and to monitor and evaluate changes in biodiversity across multiple landscape types (ecology and conservation). In crop pollination research, the use of RST are limited and largely restricted to quantifying remnant habitat use by pollinators by ascertaining the proportion of, and/or isolation from, a given land use type or local variable. Synchronization between research fields is essential to better understand the spatial and temporal variability in pollinator dependent crop production. RST enable these applications to be scaled across much larger areas than is possible with field-based methods and will facilitate large scale ecological changes to be detected and monitored. We advocate greater use of RST to better understand interactions between pollination, plant health and yield spatial variation in pollinator dependent crops. This more holistic approach is necessary for decision-makers to improve strategies toward managing multiple land use types and ecosystem services.
机译:昆虫传粉者通过将花粉转移到农作物和本地植被中来提供基本的生态系统服务。传粉媒介群落在空间和时间上变化的程度对生态,保护和农业生产具有重要意义。然而,了解决定授粉服务供应和生产措施在空间和时间上的复杂相互作用仍然是一个重大挑战。遥感技术(RST),包括卫星,空中和地面传感器,是衡量自然和改良系统内植被健康,多样性和生产力的时空变化的有效工具。然而,尽管遥感科学,授粉生态学和农业生产之间具有协同增效作用,但研究社区直到最近才开始积极联系这些研究领域。在这里,我们回顾了RST在推进作物授粉研究中的效用,并强调了知识差距和未来研究的重点。我们发现,RST目前被用于许多不同的研究领域,以评估植物健康和生产(农业生产)的变化,以及监视和评估多种景观类型(生态和保护)中生物多样性的变化。在农作物授粉研究中,RST的使用受到限制,并且在很大程度上限于通过确定给定土地利用类型或局部变量的比例和/或与之隔离来量化传粉媒介的剩余生境使用。研究领域之间的同步对于更好地了解授粉媒介依赖作物的时空变异至关重要。与基于现场的方法相比,RST使这些应用程序可以在更大的范围内扩展,并且将有助于检测和监视大规模的生态变化。我们主张更多地使用RST,以更好地了解授粉媒介依赖作物的授粉,植物健康和产量空间变异之间的相互作用。对于决策者来说,这种更全面的方法对于改进管理多种土地使用类型和生态系统服务的策略是必要的。

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