Conventional land‐use intensification reduces species richness and increases production: A global meta‐analysis

物种丰富度 荟萃分析 农林复合经营 生产(经济) 土地利用 生态学 土地利用、土地利用的变化和林业 环境科学 环境资源管理 地理 生物 经济 医学 内科学 宏观经济学
作者
Michael Beckmann,Katharina Gerstner,Morodoluwa Akin‐Fajiye,Silvia Ceaușu,Stephan Kambach,Nicole L. Kinlock,Helen R. P. Phillips,Willem Verhagen,Jessica Gurevitch,Stefan Klotz,Tim Newbold,Peter H. Verburg,Marten Winter,Ralf Seppelt
出处
期刊:Global Change Biology [Wiley]
卷期号:25 (6): 1941-1956 被引量:224
标识
DOI:10.1111/gcb.14606
摘要

Most current research on land-use intensification addresses its potential to either threaten biodiversity or to boost agricultural production. However, little is known about the simultaneous effects of intensification on biodiversity and yield. To determine the responses of species richness and yield to conventional intensification, we conducted a global meta-analysis synthesizing 115 studies which collected data for both variables at the same locations. We extracted 449 cases that cover a variety of areas used for agricultural (crops, fodder) and silvicultural (wood) production. We found that, across all production systems and species groups, conventional intensification is successful in increasing yield (grand mean + 20.3%), but it also results in a loss of species richness (-8.9%). However, analysis of sub-groups revealed inconsistent results. For example, small intensification steps within low intensity systems did not affect yield or species richness. Within high-intensity systems species losses were non-significant but yield gains were substantial (+15.2%). Conventional intensification within medium intensity systems revealed the highest yield increase (+84.9%) and showed the largest loss in species richness (-22.9%). Production systems differed in their magnitude of richness response, with insignificant changes in silvicultural systems and substantial losses in crop systems (-21.2%). In addition, this meta-analysis identifies a lack of studies that collect robust biodiversity (i.e. beyond species richness) and yield data at the same sites and that provide quantitative information on land-use intensity. Our findings suggest that, in many cases, conventional land-use intensification drives a trade-off between species richness and production. However, species richness losses were often not significantly different from zero, suggesting even conventional intensification can result in yield increases without coming at the expense of biodiversity loss. These results should guide future research to close existing research gaps and to understand the circumstances required to achieve such win-win or win-no-harm situations in conventional agriculture.
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