冻土带
磷
生态学
环境科学
土壤学
植被(病理学)
草原
纬度
陆生植物
生态系统
大气科学
地理
生物
陆地生态系统
化学
地质学
土壤水分
病理
有机化学
医学
大地测量学
作者
Enqing Hou,Dazhi Wen,Lifen Jiang,Xianzhen Luo,Yuanwen Kuang,X. L. Lu,Chengrong Chen,Keanan T Allen,Xianjin He,Xingzhao Huang,Yiqi Luo
摘要
Abstract Phosphorus limitation on terrestrial plant growth is being incorporated into Earth system models. The global pattern of terrestrial phosphorus limitation, however, remains unstudied. Here, we examined the global‐scale latitudinal pattern of terrestrial phosphorus limitation by analysing a total of 1068 observations of aboveground plant production response to phosphorus additions at 351 forest, grassland or tundra sites that are distributed globally. The observed phosphorus‐addition effect varied greatly (either positive or negative), depending significantly upon fertilisation regime and production measure, but did not change significantly with latitude. In contrast, phosphorus‐addition effect standardised by fertilisation regime and production measure was consistently positive and decreased significantly with latitude. Latitudinal gradient in the standardised phosphorus‐addition effect was explained by several mechanisms involving substrate age, climate, vegetation type, edaphic properties and biochemical machinery. This study suggests that latitudinal pattern of terrestrial phosphorus limitation is jointly shaped by macro‐scale driving forces and the fundamental structure of life.
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