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Soil organic phosphorus transformations during 2000 years of paddy-rice and non-paddy management in the Yangtze River Delta China

机译:长江三角洲稻田和非稻田管理2000年来土壤有机磷的转化

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摘要

The contents and properties of soil organic phosphorus (Po) largely drive ecosystem productivity with increasing development of natural soil. We hypothesized that soil Po would initially increase with paddy management and then would persist under steady-state conditions. We analyzed soils from a 2000-year chronosequence of a rice-wheat rotation and an adjacent non-paddy 700-year chronosequence in Bay of Hangzhou (China) for their Po composition using solution 31P-NMR after NaOH-EDTA extraction. Land reclamation promoted Po accumulation in both paddy and non-paddy topsoils (depths ≤ 18 cm) until steady-state equilibria were reached within 200 years of land use. Greater Po concentrations were found, however, in the non-paddy subsoils than in those under paddy management. Apparently, the formation of a dense paddy plough pan hindered long-term Po accumulation in the paddy subsoil. The surface soils showed higher proportions of orthophosphate diesters under paddy than under non-paddy management, likely reflecting suppressed decomposition of crop residues despite elevated microbial P compounds stocks under anaerobic paddy-rice management. Intriguingly, the composition of Po was remarkably stable after 194-years of paddy management and 144-years of non-paddy management, suggesting novel steady-state equilibria of P dynamics had been reached in these man-made ecosystems after less than two centuries.
机译:随着天然土壤的发展,土壤有机磷的含量和性质在很大程度上推动了生态系统生产力的提高。我们假设土壤坡度最初会随着稻田管理而增加,然后在稳态条件下会持续存在。我们采用溶液 31 P-NMR分析了杭州湾(中国)2000年稻麦轮作的时序和相邻的非水稻700年时序的土壤的Po组成。 NaOH-EDTA萃取。土地开垦促进了稻田和非稻田表土(深度≤18 cm)中的Po积累,直到在土地利用200年内达到稳态平衡为止。然而,发现非稻田下层土壤中的Po含量高于稻田管理下。显然,致密的稻田犁盘的形成阻碍了稻田底土中的长期Po积累。与非稻田管理相比,表土土壤中正磷酸盐二酯的比例更高,这可能反映了尽管在厌氧稻田管理下微生物磷化合物的存量增加,但农作物残留物的分解受到抑制。有趣的是,经过194年的稻田管理和144年的非稻田管理后,Po的组成非常稳定,这表明在不到两个世纪的时间里,这些人造生态系统中P动力学就达到了新的稳态平衡。

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