长期施氮加剧亚热带米槠天然林不同深度土壤磷限制:基于土壤胞外酶活性及其化学计量比角度
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S718.5

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福建省科技厅对外合作项目( 2022I0012),福建省科技厅公益类项目( 2021R1002004)和国家自然科学基金项目( 32271717)资助。


Long-term Nitrogen Application Exacerbates Soil Phosphorus Limitation at Different Depths in Subtropical Natural Castanopsis carlesii Forest: Based on Soil Extracellular Enzymes and Their Stoichiometric Ratios
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    摘要:

    以福建三明格氏栲自然保护区内的米槠天然林为研究对象,通过设置对照(CK)、低氮(LN,N 40 kg/(hm2·a))、高氮(HN,N 80 kg/(hm2·a))处理模拟氮沉降,研究不同施氮年限(4、8 a)、不同深度(0 ~ 10 cm和10 ~ 20 cm)土壤理化特性和土壤酶活性及其化学计量比的变化,探究长期氮沉降是否加剧亚热带地区土壤磷限制。结果表明:①不同年限施氮后土壤pH下降,0 ~ 10 cm土层可溶性有机氮(DON)含量随施氮量增加而增加;施氮4 a,0 ~ 10 cm土层微生物生物量氮(MBN)含量随施氮量增加显著下降,10 ~ 20 cm土层则相反,两土层土壤硝态氮含量均随施氮量的增加而增加;施氮8 a,HN处理下各土层土壤微生物生物量碳(MBC)和MBN含量均最低,0 ~ 10 cm土层铵态氮含量随施氮量的增加显著降低。②不同年限HN处理提高了各土层土壤β-葡萄糖苷酶(βG)活性,但HN处理8 a明显降低0 ~ 10 cm土层β-N-乙酰氨基葡萄糖苷酶(NAG)活性;LN和HN处理4 a显著提高0 ~ 10 cm土层酸性磷酸酶(ACP)活性,但显著降低10 ~ 20 cm土层ACP活性。③不同施氮年限下,不同深度土壤酶化学计量比向量角度均大于45°,而且施氮8 a的向量角度要显著大于施氮4 a的向量角度,表明长期施氮加剧了土壤微生物磷限制;不同施氮年限下,0 ~ 10 cm和10 ~ 20 cm土层土壤酶C∶N∶P化学计量比分别为1∶1∶2和1∶1∶3,与全球生态系统土壤酶C∶N∶P的比值1∶1∶1相比偏离。④冗余分析(RDA)表明,DON、MBN和NH4+-N是调控不同施氮年限各土层土壤酶活性和化学计量比变化的主要因子。总之,长期氮沉降明显加剧了亚热带地区土壤磷限制。

    Abstract:

    Three nitrogen application treatments viz. control (CK), low nitrogen(LN,N 40 kg/(hm2·a))and high nitrogen(HN,N 80 kg/(hm2·a))were set in a natural Castanopsis carlesii forest in the Castanopsis kawakii conservation area in Fujian Province, the changes of soil physicochemical properties, enzyme activities and their stoichiometric ratios under different nitrogen application years (4 years and 8 years) and different soil depths (0–10 cm and 10–20 cm) were studied to explore whether long-term nitrogen deposition aggravates soil phosphorus limitation in the subtropical areas. The results showed that:1) soil pH decreased after different years of nitrogen application, and soil dissolved organic nitrogen (DON) content in the 0–10 cm soil increased with the increase of nitrogen application. The content of microbial biomass nitrogen (MBN) decreased significantly in the 0–10 cm soil layer but increased significantly in the 10–20 cm soil layer with the increase of nitrogen application for 4 years. Soil nitrate nitrogen in both soil layers increased with the increase of nitrogen application. The contents of microbial biomass carbon (MBC) and MBN in both soil layers under HN treatment were the lowest after 8 years of nitrogen application. The content of ammonium nitrogen in the 0–10 cm soil decreased significantly with the increase of nitrogen application, while the content of nitrate nitrogen increased significantly. 2) HN treatment increased β-glucosidase (βG) activities in both soil layers after different years of nitrogen application, but 8 years of HN treatment significantly decreased β-N-acetylglucosaminidase (NAG) activity in the 0–10 cm soil. Four years of LN and HN treatments significantly increased the activity of acid phosphatase (ACP) in the 0–10 cm soil, but significantly decreased ACP activity in the 10–20 cm soil. 3) Under different nitrogen application years, the vector angles of soil enzyme stoichiometric ratios at different soil depths were all greater than 45°, moreover, the vector angles of soil enzyme stoichiometric ratios under nitrogen application for 8 years were significantly greater than that for 4 years, indicating that long-term nitrogen application exacerbated soil microbial Phosphorus limitation. Under different nitrogen application years, the stoichiometric ratios of soil enzyme C∶N∶P were 1∶1∶2 in the 0–10 cm and 1∶1∶3 in the 10–20 cm soil layers, which deviated from the ratio of soil enzyme activity C∶N∶P in global ecosystem (1∶1∶1). 4) Redundancy analysis (RDA) showed that DON, MBN and NH4+-N were the main factors regulating the changes of soil enzyme activities and stoichiometric ratios in two soil layers for different nitrogen application years. In conclusion, long-term nitrogen deposition significantly aggravates soil phosphorus limitation in subtropical regions.

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李欣冉,林浩,曹平丽,林伟盛,刘小飞,钟羡芳,郭剑芬.长期施氮加剧亚热带米槠天然林不同深度土壤磷限制:基于土壤胞外酶活性及其化学计量比角度[J].土壤,2024,56(5):963-974. LI Xinran, LIN Hao, CAO Pingli, LIN Weisheng, LIU Xiaofei, ZHONG Xianfang, GUO Jianfen. Long-term Nitrogen Application Exacerbates Soil Phosphorus Limitation at Different Depths in Subtropical Natural Castanopsis carlesii Forest: Based on Soil Extracellular Enzymes and Their Stoichiometric Ratios[J]. Soils,2024,56(5):963-974

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  • 收稿日期:2023-10-16
  • 最后修改日期:2023-11-16
  • 录用日期:2023-11-17
  • 在线发布日期: 2024-11-14
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