渗出液
焊剂(冶金)
碳通量
碳循环
环境科学
生态系统
土壤科学
碳纤维
大气科学
地质学
水文学(农业)
地球科学
生态学
植物
数学
化学
生物
岩土工程
有机化学
算法
复合数
作者
Nikhil R. Chari,Shersingh Joseph Tumber‐Dávila,Richard P. Phillips,Taryn L. Bauerle,Melanie Brunn,Benjamin Häfner,Tamir Klein,Sophie Obersteiner,Michaela Reay,Sami Ullah,Benton N. Taylor
标识
DOI:10.1007/s10533-024-01161-z
摘要
Abstract Root exudation, the export of low-molecular weight organic carbon (C) from living plant roots to soil, influences microbial activity, nutrient availability, and ecosystem feedbacks to climate change, but the magnitude of this C flux at ecosystem and global scales is largely unknown. Here, we synthesize in situ measurements of root exudation rates and couple those to estimates of fine root biomass to estimate global and biome-level root exudate C fluxes. We estimate a global root exudate flux of 13.4 (10.1–20.2) Pg C y −1 , or about 9% (7–14%) of global annual gross primary productivity. We did not find differences in root mass-specific exudation rates among biomes, though total exudate fluxes are estimated to be greatest in grasslands owing to their high density of absorptive root biomass. Our synthesis highlights the global importance of root exudates in the terrestrial C cycle and identifies regions where more in situ measurements are needed to improve future estimates of root exudate C fluxes.
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