有机培肥对根际解磷细菌群落及玉米生产力的影响
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1.南京师范大学生命科学学院;2.土壤与农业可持续发展国家重点实验室中国科学院南京土壤研究所

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中国科学院前瞻战略科技先导专项(A类)(XDA0440203)、国家自然科学基金项目(42177298,42307396)和江苏省卓越博士后基金(2023ZB565)


Effects of Organic Fertilization on the Phosphorus Solubilizing Bacteria Community and Maize Productivity in Dryland Red Soil
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1.College of Life Science,Nanjing Normal University;2.State Key Laboratory of Soil and Sustainable Agriculture,Institute of Soil Science,Chinese Academy of Sciences

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Strategic Priority Research Program of Chinese Academy of Sciences (XDA0440203), the National Natural Science Foundation of China (42177298,42307396) and the Jiangsu Funding Program for Excellent Postdoctoral Talent (2023ZB565).

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    摘要:

    根际解磷细菌作为土壤中重要的功能微生物群,其丰度、群落组成和多样性变化能够影响土壤碱性磷酸酶(ALP)活性与磷循环。探究有机培肥处理下根际解磷细菌丰度、群落组成和多样性的影响机制具有重要意义。基于中国科学院鹰潭红壤生态实验站的有机培肥长期定位试验,设置了4个处理:不施肥对照(M0)、低量有机肥(M1)、高量有机肥(M2)和高量有机肥加石灰(M3),通过高通量测序技术,分析有机肥处理下根际解磷细菌丰度、群落组成和多样性的变化特征。结果发现,相比于M0处理,有机肥处理(M1、M2和M3)均显著提高了土壤pH、有机质(SOM)、全氮(TN)、全磷(TP)、速效磷(AP)、解磷细菌丰度、ALP活性以及玉米生产力,其中以M3处理提升效果最佳。施用有机肥影响了解磷细菌群落组成和多样性指数,高肥处理下(M2和M3)慢生根瘤菌属(Bradyrhizobium)、中慢生根瘤菌属(Mesorhizobium)和假单胞菌属(Pseudomonas)是解磷细菌群落的优势菌属,相比于M0处理,M1处理下解磷细菌多样性显著增加。土壤AP是影响解磷细菌多样性和群落结构的关键因子。相关性和结构方程模型分析表明AP和TP通过提高解磷细菌丰度和改变优势类群的相对丰度,提高了ALP活性,进而间接影响了玉米生产力。本研究明确了根际解磷细菌对土壤有机磷矿化和玉米生产力的调控机制,为建立合理的有机培肥措施及提升红壤健康提供科学依据。

    Abstract:

    【Objective】Phosphorus solubilizing bacteria (PSB) is an important functional group of the soil microbial community. The changes in the abundance, composition, and diversity of the PSB community in the rhizosphere can affect soil alkaline phosphomonoesterase (ALP) activity and phosphorus (P) cycle dynamics. Here, we explored the mechanism of the abundance, composition, and diversity of the PSB community in regulating maize productivity under different organic fertilization treatments.【Method】In this study, we conducted a long-term field experiment with different organic fertilization treatments at the Yingtan National Agroecosystem Field Experiment Station of the Chinese Academy of Sciences in Jiangxi. The field experiment included four treatments: no manure (M0), low manure (M1), high manure (M2), and high manure with lime addition (M3). Illumina sequencing was used to investigate the abundance, composition, and diversity of the PSB community in the rhizosphere.【Result】Different organic fertilization treatments (M1, M2, and M3) significantly increased pH, soil organic matter (SOM), total nitrogen (TN), total phosphorus (TP), available phosphorus (AP), abundance of PSB, ALP activity, and maize productivity compared to M0 treatment, with the highest values observed under M3 treatment. Organic fertilizer treatments affected the PSB community composition and diversity in the rhizosphere. Bradyrhizobium, Mesorhizobium, and Pseudomonas were the dominant genera in the PSB community under M2 and M3 treatments. Compared with the M0 treatment, the PSB community diversity was significantly increased under the M1 treatment. The abundance and dominant genera of the rhizosphere PSB community were mainly affected by AP. Correlation analysis and structural equation modeling revealed that AP and TP indirectly affected maize productivity by increasing the abundance and changing the relative abundance of dominant genera of PSB.【Conclusion】Taken together, this study elucidates the promotion mechanisms of the rhizosphere PSB community on the mineralization of soil organic phosphorus and maize productivity. Our findings provide a scientific basis for establishing better organic fertilization practices and enhancing the fertility and health of red soils.

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杨叶钰萍,郑洁,靳乐乐,彭紫怡,王晓玥,徐勤松,蒋瑀霁.有机培肥对根际解磷细菌群落及玉米生产力的影响[J].土壤学报,,[待发表]
YANG Yeyuping, ZHENG Jie, JIN Lele, PENG Ziyi, WANG Xiaoyue, XU Qinsong, JIANG Yuji. Effects of Organic Fertilization on the Phosphorus Solubilizing Bacteria Community and Maize Productivity in Dryland Red Soil[J]. Acta Pedologica Sinica,,[In Press]

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  • 收稿日期:2023-11-17
  • 最后修改日期:2024-02-24
  • 录用日期:2024-05-21
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