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Effect of land use on microbial biomass-C, -N and -P in red soils

机译:土地使用对红壤微生物生物量-C,-N和-P的影响

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Eleven red soils varying in land use and fertility status were used to examine the effect of land use on microbial biomass -C, -N and -P. microbial biomass-C in the red soils ranged from about 68 mg C/kg to 225 mg C/kg, which is generally lower than that reported from other types of soil, probably because of low organic matter and high acidity in the red soils. land use had considerable effects on the amounts of soil Cmic. The Cmic was the lowest in eroded fallow land, followed by woodland, tea garden, citrus grove and fallow grassland, and the highest in vegetable and paddy fields. There was significant correlation between Cmic and organic matter content, suggesting that the influence of land use on Cmic is mainly related to the input and accumulation of organic matter. Microbial biomass-N in the soils ranged from 12.1 Nmg/kg to 31.7 Nmg/kg and was also affected by land use. The change of Nmic with land use was similar to that of Cmic. The microbial C/N ratio ranged from 5.2 to 9.9 and averaged 7.6. The Nmic was significantly correlated with soil total N and available N. Microbial biomass-P in the soils ranged from 4.5 mg P/kg to 52.3 mg P/kg. The microbial C/P ratio was in the range of 4-23. The Pmic was relatively less affected by land use due to differences in fertilization practices for various land use systems.
机译:在土地使用和生育状态下变化的十一红壤用于检查土地使用对微生物生物量-C,-N和-P的影响。红壤中的微生物生物量-C范围为约68mg C / kg至225mg C / kg,这通常低于其他类型的土壤报道,可能是因为红壤中的有机质和高酸度。土地利用对土壤的数量具有相当大的影响。 CMIC是侵蚀的休耕土地中最低,其次是林地,茶园,柑橘树丛和休耕草原,以及蔬菜和稻田最高。 CMIC和有机质含量之间存在显着的相关性,这表明土地使用对CMIC的影响主要与有机物的输入和积累有关。土壤中的微生物生物量-N范围为12.1nmg / kg至31.7 nmg / kg,也受土地使用的影响。与土地使用的纳米的变化类似于CMIC的变化。微生物C / N比范围为5.2至9.9,平均为7.6。 NMIC与土壤中的土壤和可用的NMIC含量显着相关。土壤中的微生物生物量-P范围为4.5mg p / kg至52.3mg p / kg。微生物C / P比在4-23的范围内。由于各种土地利用系统的施肥措施的差异,PMIC对土地利用的影响相对较低。

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