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首页> 外文期刊>The Journal of Applied Ecology >Crop heterogeneity is positively associated with beneficial insect diversity in subtropical farmlands
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Crop heterogeneity is positively associated with beneficial insect diversity in subtropical farmlands

机译:作物的异质性是积极相关有益的昆虫多样性亚热带农田

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摘要

1. Increasing crop configurational heterogeneity-smaller crop fields with more field margins-has been repeatedly found to support farmland biodiversity. But research on compositional crop heterogeneity-the number and evenness of crop types-has usually shown only weak effects. However, much of this research has been conducted in large-scale temperate agroecosystems. 2. We examined smallholder subtropical agroecosystems in southern China to assess the effects of crop heterogeneity on beneficial insect biodiversity. In addition to pollinators (bees, apoid and vespid wasps, and butterflies), we studied dung beetles and dragonflies/damselflies, which are not usually considered in cropland heterogeneity studies, but are abundant in these multi-functional agroecosystems. We sampled these taxa in 468 transects placed inside 52 farms across three seasons (summer, spring and winter), collecting data on 27,245 insects belonging to 160 species. 3. We found a strong positive effect of crop compositional heterogeneity (measured by Shannon-Wiener index) on dung beetle and dragonfly/damselfly diversity. Bee/wasp and butterfly diversity, conversely, was positively affected by crop configurational heterogeneity (measured by cumulative field margin length). 4. Field margin type, categorized by the structure of the dominant crop types, was consistently an important explanatory variable, with weedy margins having high insect diversity. The presence of a vegetable crop on one side of the field margin, compared to non-vegetable monocultures on both sides, increased diversity in 3/4 taxon-season comparisons made for rice and 6/9 comparisons made for sugarcane or corn. 5. Synthesis and applications. We demonstrate that crop compositional heterogeneity can support insects that respond to differences among crop types, including taxa that play a key role in nutrient cycling (dung beetles) and natural pest control (dragonflies/damselflies). Incorporating structurally diverse crops into monocult
机译:1. heterogeneity-smaller农田与更多的字段利润率不断发现的支持农田生物多样性。作物heterogeneity-the数量和成分农作物类型通常只显示的均匀度疲软的影响。在大规模的温带农业生态系统。在中国南部亚热带农业生态系统评估作物异质性的影响有益的昆虫生物多样性。传粉昆虫(蜜蜂、apoid和黄蜂黄蜂和蝴蝶),我们研究了金龟子蜻蜓/豆娘,不是很经常考虑农田异质性的研究,但是在这些多功能丰富农业生态系统。横断面放在52农场跨三个季节(夏天、春天和冬天),收集27245种昆虫属于160年的数据。3.组成的异质性(衡量甲虫和Shannon-Wiener指数)蜻蜓/豆娘的多样性。蝴蝶多样性,相反的,是积极的影响作物构型异构性(以累积字段长度)。场边缘类型,分类的结构占统治地位的作物类型,始终是一个重要的解释变量,用瘦弱的利润率高的昆虫多样性。存在一种蔬菜作物的一侧场,而non-vegetable双方的单一栽培,增加多样性在3/4 taxon-season为大米和比较6/9的比较为甘蔗或玉米。合成和应用程序。作物组成的异质性可以支持昆虫对不同作物之一类型,包括分类单元中发挥关键作用养分循环和自然害虫(甲虫)控制(蜻蜓/豆娘)。结构多样化的作物monocult

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