数字农科院2.0

Soil microbial biomass and extracellular enzyme–mediated mineralization potentials of carbon and nitrogen under long-term fertilization (> 30 years) in a rice–rice cropping system

文献类型: 外文期刊

作者: Muhammad Nadeem Ashraf;Gao Jusheng;Wu Lei;Adnan Mustafa;Ahmed Waqas;Tariq Aziz;Waqas ud Din Khan;Shafeeq-ur-Rehman;Babar Hussain;Muhammad Farooq;Zhang Wenju;Xu Minggang

作者机构:

关键词: Enzymes;Long-term fertilization;Microbial biomass;Mineralization;Soil fertility

期刊名称: Journal of Soils and Sediments

ISSN: 1439-0108

年卷期: 2021 年 21.0 卷 12.0 期

页码:

收录情况: JCR(2021版)

摘要: Purpose: Soil microbial biomass and extracellular enzymes are involved in the decomposition of soil organic matter, a temporary nutrient pool for plants. This study was conducted to evaluate the mineralization potentials of carbon (CMP) and nitrogen (NMP), and the relationship of CMP and NMP with microbial biomass and extracellular enzymes in soil fertilized with mineral and manure amendments for 3 decades. Materials and methods: A long-term experiment (37 years) consisted of seven fertilizer treatments, including unfertilized control (CK); nitrogen, phosphorus, and potassium (NPK); manure (M); manure plus phosphorus and potassium (PKM); nitrogen and potassium plus manure (NKM); nitrogen and phosphorus plus manure (NPM); and NPK plus manure (NPKM), was selected. Results and discussion: Compared to the CK treatment, the long-term mineral fertilizer (NPK) and combined manure plus mineral fertilization (e.g., M, PKM, NKM, NPM, and NPKM) significantly increased soil microbial biomass carbon (SMBC) by 58% and 131% and nitrogen (SMBN) by 66% and 161%, respectively. Similarly, soil microbial biomass phosphorus (SMBP) also significantly increased by 67–156% in combined manure and mineral fertilizer treatments than the CK and NPK treatment. Higher values of β-glucosidase and cellobiohydrolase activities were observed with the application of PKM. In comparison with CK, the application of combined manure and mineral fertilization significantly increased the leucine aminopeptidase and N-acetyl-glucosaminidase enzyme by 129% and 175%, respectively. Soil CMP and NMP significantly increased by 231–307% and 176–289% in combined treatments than the CK. A significant positive correlation was also observed between the microbial biomass, extracellular enzymes, and the CMP and NMP (R2 = 0.66–0.84, 0.44–0.76, P < 0.0001). Conclusions: This study suggested that long-term manure application greatly increased the microbial biomass and enzyme activities, playing an important role in co-mineralization potentials of organic carbon and nitrogen for improving soil fertility.

分类号:

  • 相关文献

[1]Soil microbial biomass and extracellular enzyme–mediated mineralization potentials of carbon and nitrogen under long-term fertilization (> 30 years) in a rice–rice cropping system. Muhammad Nadeem Ashraf,Gao Jusheng,Wu Lei,Adnan Mustafa,Ahmed Waqas,Tariq Aziz,Waqas ud Din Khan,Shafeeq-ur-Rehman,Babar Hussain,Muhammad Farooq,Zhang Wenju,Xu Minggang. 2021

[2]Interaction of soil microbial communities and phosphorus fractions under long-term fertilization in paddy soil. Muhammad QASWAR,Waqas AHMED,Jing HUANG,Kai lou LIU,Lu ZHANG,Tian fu HAN,Jiang xue DU,Sehrish ALI,Hafeez UR-RAHIM,Qing hai HUANG,Hui min ZHANG. 2022

[3]Improvement of soil fertility and rice yield after long-term application of cow manure combined with inorganic fertilizers. Peng GAO,Tuo ZHANG,Xing yu LEI,Xin wei CUI,Yao xiong LU,Peng fei FAN,Shi ping LONG,Jing HUANG,Ju sheng GAO,Zhen hua ZHANG,Hui min ZHANG. 2023

[4]Progress in Significant Soil Science Fields of China over the Last Three Decades: A Review. Zhao Qi-Guo,Yan Xiao-Yuan,Zhang Gan-Lin,Cai Zu-Cong,He Ji-Zheng,Zhang Bin.

[5]Aerated Reclaimed Water Drip Irrigation Improves Soil Fertility and Beneficial Microbial Enrichment in Maize Rhizospheres. Chen, Jiayao,Li, Peng,Lu, Yunchao,Wang, Yuqiao,Junejo, Abdul Rahim,Li, Hao. 2025

[6]Mineralization of organic sulfur and its importance as a reservoir of plant-available sulfur in upland soils of north China. Zhou, W,Li, ST,Wang, H,He, P,Lin, B. 1999

[7]Mineralization of organic sulfur in paddy soils under flooded conditions and its availability to plants. Zhou, W,He, P,Li, ST,Lin, B. 2005

[8]Drivers of soil net nitrogen mineralization in the temperate grasslands in Inner Mongolia, China. Liu, Xing-Ren,Li, Sheng-Gong,Liu, Xing-Ren,Li, Sheng-Gong,Ren, Jian-Qiang,Ren, Jian-Qiang.

[9]Nutritional responses to soil drying and rewetting cycles under partial root-zone drying irrigation. Wang, Yaosheng,Wang, Yaosheng,Jensen, Christian R.,Liu, Fulai.

[10]Changes in Phosphorus Fractions, pH, and Phosphatase Activity in Rhizosphere of Two Rice Genotypes. Li Yong-Fu,Luo An-Cheng,Yao Xu-Guo,Li Yong-Fu,Wei Xing-Hua.

[11]Quantification of the effects of various soil fumigation treatments on nitrogen mineralization and nitrification in laboratory incubation and field studies. Wang, Qiuxia,Mao, Liangang,Li, Wei,Xie, Hongwei,Guo, Meixia,Cao, Aocheng.

[12]Mineralization of chlorpyrifos by co-culture of Serratia and Trichosporon spp.. Xu, Gangming,Li, Yingying,Zheng, Wei,Peng, Xiang,Li, Wen,Yan, Yanchun.

[13]Nitrogen and Phosphorus Fertilization Reshapes the Abundance and Structure of Ammonia Oxidizers on a Leymus chinensis Steppe in Northern China. Qin Y.,Liu W.,He F.,Li X.. 2022

[14]Carbon and nitrogen fractions are more important than bacterial composition for carbon and nitrogen mineralization considering parent material and fertilization. Shaoqi Xue,Shiqi Xu,Wei Kou,Jiale Han,Ting Fan,Xia Zhang,Xudong Wang. 2023

[15]Establishment and evaluation of the primary cultured tibial osteoblast model of broiler chicks. CAO S.-M.,LI T.-T.,SHAO Y.-X.,ZHAO Y.-Z.,ZHANG L.-Y.,LU L.,ZHANG R.-J.,HOU S.-S.,LIAO X.-D.,LUO X.-G.,WANG R.-L.. 2023

[16]Effects of Fertilization Regimes on Soil Organic Carbon Fractions and Its Mineralization in Tea Gardens. Li G.,Li H.,Yi X.,Hu Z.,Ni K.,Ruan J.,Yang Y.. 2022

[17]Stability of soil organic carbon under long-term fertilization: Results from 13C NMR analysis and laboratory incubation. Adnan Mustafa,Jan Frouz,Muhammad Naveed,Zhu Ping,Sun Nan,Xu Minggang,Avelino Núñez-Delgado. 2022

[18]Soil calcium constrains nitrogen mineralization and nitrification rates in subtropical karst regions. Shuting Yang,Lin Yang,Dongni Wen,Lijun Liu,Kang Ni,Jianhua Cao,Tongbin Zhu,Christoph Müller. 2023

[19]Biodegradation of aryl-organophosphate flame retardants by Rhodococcus pyridinivorans YC-MTN: Performance, pathway and potential in environmental remediation. Yuan Long,Junhuan Wang,May Thet Nwe,Xinyun Zou,Wei Wu,Yanchun Yan. 2024

[20]Improving litter nutrients import/export modeling in a forested watershed through enhanced forest growth representation. Xintong Cui,Wei Ouyang,Lianhua Liu,Pengtao Wang,Zeshan Wu,Xin Hao,Ri Jin,Weihong Zhu. 2023

作者其他论文 更多>>