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促腐细菌对盐碱地玉米秸秆分解特性及春大豆产量的影响

Effects of rot-promoting bacteria on decomposition characteristics of corn straw and spring soybean yield in Saline-alkali Land.

作者信息

Wang Yuqing, Zhang Mingcong, Lu Lei, Wang Chen, Wang Jianing, Hu Yang, Li Siyan, Xie Wei, Hu Xiwen, Guo Haiqing

机构信息

College of Agronomy, Heilongjiang Bayi Agricultural University, Daqing, China.

Key Laboratory of Low-carbon Green Agriculture in Northeastern China, Ministry of Agriculture and Rural Affairs P. R. China, Daqing, China.

出版信息

Front Plant Sci. 2025 May 13;16:1572868. doi: 10.3389/fpls.2025.1572868. eCollection 2025.

Abstract

Understanding the relationship between microbial inoculants and straw decomposition is crucial for achieving a high soybean yield in northern China's cold region. This study investigated the effects of different microbial inoculants on nutrient release characteristics and extracellular enzyme activities. A pot experiment was conducted over two growing seasons (2023 and 2024) using the soybean ( max L. Merrill) cultivar Nongqing 28, the saline-alkali soil as the test soil, and corn straw as the test straw. The microbial inoculants tested were sp. and sp. . The following treatments were employed: straw with no microbial agent application (CK), straw with sp. application (T1), straw with sp. application (T2), and straw with a 1:1 application of Bacillus sp. and sp. compound bacteria (T3).The two-year results showed that the T1, T2, and T3 treatments significantly increased the rate of straw decomposition, reduced the lignocellulose content, and progressively released nitrogen, phosphorus, and potassium from the straw compared to the CK. During both years, the T3 treatment exhibited the highest straw decomposition rate and enzyme activity at R2(Full Bloom period), R4(Full Pod period), R6(Full Seed period) and R8(Full Maturity period) periods, which ultimately increased soybean yield by 24.00%-28.00% (<0.05). These findings indicate that microbial inoculants have significant potential for application in straw management and provide an important basis for optimizing straw return and crop yield. In summary, T3 treatment can accelerate straw decomposition and nutrient release rates, increase soybean yield, and provide a theoretical basis for optimizing the straw decomposition effect and rational utilization of organic resources by promoting the activity of extracellular enzymes and the degradation of straw cellulose, hemicellulose, and lignin.

摘要

了解微生物接种剂与秸秆分解之间的关系对于中国北方寒冷地区实现大豆高产至关重要。本研究调查了不同微生物接种剂对养分释放特性和细胞外酶活性的影响。在两个生长季节(2023年和2024年)进行了盆栽试验,使用大豆( max L. Merrill)品种农青28,以盐碱土为试验土壤,玉米秸秆为试验秸秆。测试的微生物接种剂为 sp. 和 sp. 。采用以下处理:不施用微生物剂的秸秆(CK)、施用 sp. 的秸秆(T1)、施用 sp. 的秸秆(T2)以及以1:1比例施用芽孢杆菌 sp. 和 sp. 复合菌剂的秸秆(T3)。两年的结果表明,与CK相比,T1、T2和T3处理显著提高了秸秆分解速率,降低了木质纤维素含量,并使秸秆中的氮、磷和钾逐步释放。在这两年中,T3处理在R2(盛花期)、R4(结荚期)、R6(鼓粒期)和R8(成熟期)的秸秆分解速率和酶活性最高,最终使大豆产量提高了24.00%-28.00%(<0.05)。这些发现表明,微生物接种剂在秸秆管理方面具有巨大的应用潜力,并为优化秸秆还田和作物产量提供了重要依据。总之,T3处理可以加速秸秆分解和养分释放速率,提高大豆产量,并通过促进细胞外酶活性以及秸秆纤维素、半纤维素和木质素的降解,为优化秸秆分解效果和合理利用有机资源提供理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cded/12106462/7ea895d60cc2/fpls-16-1572868-g001.jpg

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