The role of long-term mineral and manure fertilization on P species accumulation and phosphate-solubilizing microorganisms in paddy red soils
Author:
Chen Shuiqing, Gao Jusheng, Chen HuaihaiORCID, Zhang Zeyuan, Huang Jing, Lv Lefu, Tan Jinfang, Jiang Xiaoqian
Abstract
Abstract. Understanding soil phosphorus (P) transformation and turnover under various fertilization managements is important for evaluating sustainable P fertility and potential bioavailability in agriculture managements. Thus, long-term fertilization experiments (∼ 38 years) with the application of different inorganic and organic fertilizers in paddy red soils were
conducted to determine the effect of different fertilizer applications on P
pool accumulation and microbial communities, especially for phosphate-solubilizing microorganisms (PSMs). Long-term inorganic P (IP) fertilization increased the concentrations of total P (TP) (∼ 479 mg kg−1), available P (AP) (∼ 417 mg kg−1) and
inorganic P (∼ 18 mg kg−1), but manure
fertilization accelerated the accumulation of organic P, especially for
orthophosphate monoesters (e.g., myo-IHP, ∼ 12 mg kg−1). Long-term mineral fertilization decreased bacterial richness,
evenness and complexation of bacterial networks. In contrast, long-term
manure fertilization and rhizosphere accumulated more amounts of total
carbon, total nitrogen, and organic carbon, as well as regulated the soil
pH, thus improving the separation of bacterial communities. Furthermore, PSM compositions were greatly influenced by fertilization managements and
rhizosphere. For example, inorganic P fertilization increased the abundance
of Thiobacillus (i.e., the most abundant phosphate-solubilizing bacteria (PSB) in this study) and shifted the community structure of PSB. Correspondingly, the concentrations of inorganic and total P were the key factors for the variation of the PSB community structure. These findings are beneficial for understanding the variation of inorganic and organic P pools and the microbial community, especially for PSMs under long-term inorganic and/or organic fertilization.
Funder
National Natural Science Foundation of China
Publisher
Copernicus GmbH
Reference87 articles.
1. Achat, D., Bakker, M., Zeller, B. O. B., Pellerin, S., Bienaimé, S.,
and Morel, C.: Long-term organic phosphorus mineralization in Spodosols
under forests and its relation to carbon and nitrogen mineralization, Soil
Biol. Biochem., 42, 1479–1490, https://doi.org/10.1016/j.soilbio.2010.05.020, 2010. 2. Acosta-Martínez, V. and Ali Tabatabai, M.: Phosphorus Cycle Enzymes,
in: Methods of Soil Enzymology, edited by: Dick, R. P., SSSA Book Series, 161–183, https://doi.org/10.2136/sssabookser9.c8, 2011. 3. Ahmed, W., Liu, K., Qaswar, M., Huang, J., Huang, Q., Xu, Y., Ali, S.,
Mehmood, S., Ammar Asghar, R. M., Mahmood, M., and Zhang, H.: Long-term
mineral fertilization improved the grain yield and phosphorus use efficiency
by changing soil P fractions in ferralic cambisol, Agronomy, 9, 784,
https://doi.org/10.3390/agronomy9120784, 2019. 4. Alori, E. T., Glick, B. R., and Babalola, O. O.: Microbial phosphorus
solubilization and its potential for use in sustainable agriculture, Front
Microbiol., 8, 971, https://doi.org/10.3389/fmicb.2017.00971,
2017. 5. Arai, Y., Livi, K. J. T., and Sparks, D. L.: Phosphate reactivity in
long-term poultry litter-amended southern delaware sandy soils, Soil Sci. Soc.
Am. J., 69, 616–629, https://doi.org/10.2136/sssaj2004.0218,
2005.
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