土壤水分
碳酸盐
草原
土壤碳
环境科学
生态系统
引进物种
生态学
乡土植物
陆地生态系统
农学
土壤pH值
土壤科学
化学
生物
有机化学
作者
Brian J. Wilsey,Xia Xu,H. Wayne Polley,Kirsten Hofmockel,Steven J. Hall
出处
期刊:Ecology
[Wiley]
日期:2020-03-05
卷期号:101 (7)
被引量:19
摘要
Abstract Global change includes invasion by exotic (nonnative) plant species and altered precipitation patterns, and these factors may affect terrestrial carbon (C) storage. We measured soil C changes in experimental mixtures of all exotic or all native grassland plant species under two levels of summer drought stress (0 and +128 mm). After 8 yr, soils were sampled in 10‐cm increments to 100‐cm depth to determine if soil C differed among treatments in deeper soils. Total soil C (organic + inorganic) content was significantly higher under native than exotic plantings, and differences increased with depth. Surprisingly, differences after 8 yr in C were due to carbonate and not organic C fractions, where carbonate was ~250 g C/m 2 lower to 1‐m soil depth under exotic than native plantings. Our results indicate that soil carbonate is an active pool and can respond to differences in plant species traits over timescales of years. Significant losses of inorganic C might be avoided by conserving native grasslands in subhumid ecosystems.
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