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首页> 外文期刊>The Journal of Applied Ecology >Trait matching of flower visitors and crops predicts fruit set better than trait diversity
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Trait matching of flower visitors and crops predicts fruit set better than trait diversity

机译:特征匹配的花游客和农作物预测水果组比特征的多样性

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摘要

Understanding the relationships between trait diversity, species diversity and ecosystem functioning is essential for sustainable management. For functions comprising two trophic levels, trait matching between interacting partners should also drive functioning. However, the predictive ability of trait diversity and matching is unclear for most functions, particularly for crop pollination, where interacting partners did not necessarily co-evolve. World-wide, we collected data on traits of flower visitors and crops, visitation rates to crop flowers per insect species and fruit set in 469 fields of 33 crop systems. Through hierarchical mixed-effects models, we tested whether flower visitor trait diversity and/or trait matching between flower visitors and crops improve the prediction of crop fruit set (functioning) beyond flower visitor species diversity and abundance. Flower visitor trait diversity was positively related to fruit set, but surprisingly did not explain more variation than flower visitor species diversity. The best prediction of fruit set was obtained by matching traits of flower visitors (body size and mouthpart length) and crops (nectar accessibility of flowers) in addition to flower visitor abundance, species richness and species evenness. Fruit set increased with species richness, and more so in assemblages with high evenness, indicating that additional species of flower visitors contribute more to crop pollination when species abundances are similar.Synthesis and applications. Despite contrasting floral traits for crops world-wide, only the abundance of a few pollinator species is commonly managed for greater yield. Our results suggest that the identification and enhancement of pollinator species with traits matching those of the focal crop, as well as the enhancement of pollinator richness and evenness, will increase crop yield beyond current practices. Furthermore, we show that field practitioners can predict and manage agroecosystems for pollination services based on knowledge of just a few traits that are known for a wide range of flower visitor species.
机译:理解特征之间的关系多样性、物种多样性和生态系统功能对可持续发展至关重要管理。水平,特征匹配之间的相互作用合作伙伴也应该驱动功能。多样性和预测能力的特征匹配的大多数功能尚不清楚,特别是对于农作物授粉,互动合作伙伴并不一定同步进化。花游客和作物的性状,探视利率每昆虫物种和作物的花朵果469年33作物系统的领域。通过分层mixed-effects模型,我们测试是否花游客特征的多样性和/或花游客和之间的特征匹配作物提高作物果实的预测集(功能)除了花游客的物种多样性和丰富。水果多样性呈正相关,但令人惊讶的是没有解释了更多的变异比花游客物种多样性。预测的水果是通过匹配特征(体型和花的游客昆虫等的口器长度)和作物(花蜜可访问性花)除了花游客丰富,物种丰富度和物种均匀度。水果与物种丰富度增加,所以在组合均匀度高,表明更多种类的花游客为作物授粉时作出更大贡献物种丰度是相似的。应用程序。全球农作物中,只有少数的丰度授粉物种通常管理更大的收益。识别和增强的传粉者物种特征匹配的焦点作物,以及增强传粉者丰富度和均匀度,增加作物产量超出当前实践。这一领域从业者可以预测和管理根据农业生态系统为授粉服务知识的几个特征而闻名各种花游客的物种。

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