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首页> 外文期刊>The Journal of Applied Ecology >Birds and butterflies respond to soil-induced habitat heterogeneity in experimental plantings of tallgrass prairie species managed as agroenergy crops in Iowa, USA
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Birds and butterflies respond to soil-induced habitat heterogeneity in experimental plantings of tallgrass prairie species managed as agroenergy crops in Iowa, USA

机译:鸟和蝴蝶应对导致土体生境异质性在实验种植高草草原物种的管理agroenergy作物在爱荷华州,美国

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摘要

The maintenance of habitat heterogeneity in agricultural landscapes has been promoted as a key strategy to conserve biodiversity. Animal response to grassland heterogeneity resulting from spatiotemporal variation in disturbance is well documented; however, the degree to which edaphic variation generates heterogeneity detectable by grassland wildlife has proven more difficult to study in natural settings. We conducted a field experiment to study how soils directly affect vegetation structure and composition and indirectly affect bird and butterfly assemblages using plantings of tallgrass prairie species managed as agroenergy crops in Iowa, USA. The experimental design included four vegetation treatments of varying species richness replicated on three soil types. Habitat characteristics varied widely among soils. Crops on sandy loam, the driest, most acidic soil with the lowest nutrient content, developed shorter, less dense vegetation with sparse litter accumulation and more bare ground compared to crops on loam and clay loam. Birds and butterflies responded similarly to soil-induced variation in habitat characteristics. Their abundance and species richness were similar on all soils, but their assemblage compositions varied among soils in certain vegetation treatments. In low-diversity grass crops, bird assemblages using sandy loam were dominated by species preferring open ground and sparse vegetation for foraging and nesting, whereas assemblages using loam and clay loam were dominated by birds preferring tall, dense vegetation with abundant litter. In high-diversity prairie crops, the species composition of forbs in bloom varied among soils and strongly influenced butterfly assemblages.Synthesis and applications. Prairie agroenergy crops established with identical management practices developed variable habitat characteristics due to natural edaphic variation, and this heterogeneity influenced the spatial distribution of bird and butterfly assemblages due to differential habitat use among species. This finding suggests that if unfertilized prairie crops were grown for agroenergy by land managers large-scale, soil-induced habitat heterogeneity would promote wildlife diversity within and among fields, further increasing the habitat value of these crops compared to the fertilized, annual monocultures that currently dominate the agricultural landscape. Our study also highlights the need for managers to consider soil properties when selecting sites to restore grassland habitat for species of conservation concern.
机译:生境异质性的维护农业景观已经被提升为一个保护生物多样性的关键策略。应对草地异质性产生的从时空变化的干扰良好的文档记录;土壤变化产生的异质性被草原野生动物已经被证明难以研究在自然环境中。进行了现场试验研究土壤直接影响植被结构和成分和间接影响鸟类和蝴蝶组合使用的种植高草草原物种作为agroenergy进行管理作物在爱荷华州,美国。包括四个植被不同的治疗方法物种丰富度在三种土壤类型。栖息地特征之间的差异很大的土壤。酸性土壤养分含量最低的,发展短,植被密度较低稀疏的垃圾积累和更裸露的地面相比,作物在壤土和粘壤土。和蝴蝶作出了类似的反应导致土体栖息地的变化特征。丰富土壤相似,但是他们的组合成分不同的土壤中某些植物治疗。草作物,鸟组合使用的砂质壤土是由物种倾向于开地面觅食、筑巢和稀疏的植被,而组合使用壤土和粘壤土由鸟类喜欢高,致密植被丰富的垃圾。高的基因多样性草原作物,该物种福布斯盛开的组成不同的土壤中,强烈影响蝴蝶组合。建立了具有相同agroenergy作物管理实践发展变量的栖息地由于自然土壤变化特点,这空间异质性的影响组合分布的鸟和蝴蝶由于微分栖息地的物种间使用。这一发现表明,如果未孕草原agroenergy作物种植的土地经理大规模,导致土体的栖息地异质性将促进野生动物多样性和在领域内,进一步增加了栖息地相比,这些作物的价值受精,一年一度的单一栽培,目前占主导地位的农业景观。还强调了管理者需要考虑在选择网站恢复土壤属性草原栖息地保护的物种担忧。

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