Improvement of Saline-Alkali Soil and Straw Degradation Efficiency in Cold and Arid Areas Using Klebsiella sp. and Pseudomonas sp.
文献类型: 外文期刊
第一作者: Zhao, Xiaoyu
作者: Zhao, Xiaoyu;Yu, Xiaofang;Gao, Julin;Qu, Jiawei;Borjigin, Qinggeer;Li, Dongbo;Zhao, Xiaoyu;Meng, Tiantian
作者机构:
关键词: low temperature; saline-alkali soil; degradation bacteria; straw degradation; soil factor
期刊名称:AGRONOMY-BASEL ( 影响因子:3.4; 五年影响因子:3.8 )
ISSN:
年卷期: 2024 年 14 卷 11 期
页码:
收录情况: SCI
摘要: Corn straw is an important renewable resource, which could improve the quality of saline-alkali cultivated land. However, the slow decomposition of crop residues in cold, arid, and saline-alkali soils can lead to serious resource waste and ecological crises. The use of beneficial microorganisms with degradation functions could solve these problems. In this study, three types of saline-alkali soil with low, medium, and high salinity levels were used in the straw-returning experiment. The experiment was conducted with four treatments: GF2 (Klebsiella sp.), GF7 (Pseudomonas sp.), GF2+GF7, and CK (control without bacteria). Microbial characteristics, straw degradation efficiency, element release rate, and soil factors were compared, and random forest linear regression and partial least squares path modeling analysis methods were utilized. The results indicated that the degradation of bacterial metabolites, the efficiency of corn stover degradation, the efficiency of component degradation, and the release rates of elements (C, N, P, and K) initially increased and then decreased with the increase in salinity. At the maximum value of moderately saline-alkali soil, the effect of GF2+GF7 treatment was significantly better than that of other treatments (p < 0.05). Given the interactive effects of saline-alkali soil and microbial factors, the application of exogenous degrading bacteria could significantly increase soil enzyme activity and soil available nutrients, as well as regulate the salt-alkali ion balance in soil. The cation exchange capacity (9.13%, p < 0.01) was the primary driving force for the degradation rate of straw in saline-alkali soil with different degrees of salinization under the influence of exogenous degrading bacteria. Straw decomposition directly affected the soil chemical properties and indirectly affected soil enzyme activity. The results of this study would provide new strategies and insights into the utilization of microbial resources to promote straw degradation.
分类号:
- 相关文献
作者其他论文 更多>>
-
Degradable film mulching recruited beneficial microbiota and increased rhizosphere bacterial diversity in sunflower
作者:Meng, Tiantian;Lu, Zhanyuan;Meng, Tiantian;Zhang, Xiangqian;Zhang, Jianwei;Lu, Zhanyuan;Zhao, Xiaoyu;Bu, Hengtong;Chen, Xuanyi;Zhao, Min;Zhang, Dejian;Lu, Zhanyuan;Wang, Weini;Liu, Junmei;Zhang, Xiangqian;Lu, Zhanyuan
关键词:Degradation film; Sunflower; Root niche; Microbial community assembly; Yield
-
Integrative denoising and feature extraction method (D-FE) for improving low-quality Raman data
作者:Wang, Chunjie;Zhao, Xiaoyu;Zhao, Yue;Cai, Lijing;Tong, Liang;Wang, Baicheng
关键词:Raman spectroscopy; SHapley Additive exPlanations; Density functional theory; Preprocessing; Feature extraction
-
Genomic evidence for hybridization and introgression between blue peafowl and endangered green peafowl and molecular foundation of leucistic plumage of blue peafowl
作者:Wang, Gang;Zhang, Xinye;Zhao, Xiurong;Ren, Xufang;Chen, Anqi;Cheng, Xue;Zhang, Yalan;Ning, Zhonghua;Qu, Lujiang;Dai, Wenting;Ban, Liping;Zhang, Li;Lu, Yan;Jiang, Zhihua;Wang, Huie;Liu, Yong;Zhao, Xiaoyu
关键词:peafowl; hybridization; introgression; conservation; leucistic plumage
-
Seaweed extract combined with boron promotes the growth of sugar beet by improving the photosynthetic performance under boron deficiency
作者:Yang, Songlin;Wu, Wenyu;Liu, Shangxuan;Zhao, Xiaoyu;Wang, Yan;Song, Baiquan;Yang, Songlin;Wu, Wenyu;Liu, Shangxuan;Zhao, Xiaoyu;Wang, Yan;Song, Baiquan;Yang, Songlin;Wu, Wenyu;Liu, Shangxuan;Zhao, Xiaoyu;Wang, Yan;Song, Baiquan;Xing, Wang;Song, Baiquan;Xing, Wang;Song, Baiquan;Riaz, Muhammad;Ishfaq, Muhammad;Kuerban, Abudukadier
关键词:
-
Using Klebsiella sp. and Pseudomonas sp. to Study the Mechanism of Improving Maize Seedling Growth Under Saline Stress
作者:Zhao, Xiaoyu;Yu, Xiaofang;Gao, Julin;Qu, Jiawei;Borjigin, Qinggeer;Li, Dongbo;Zhao, Xiaoyu;Meng, Tiantian
关键词:saline stress; maize seedling; soil properties; diversity of microorganisms; assembly of microorganisms; co-occurrence network
-
Effects of Tillage Methods on Carbon and Nitrogen Sequestration and Soil Microbial Stoichiometric Equilibrium in a Black Soil Farmland with Full Return of Straw to the Field
作者:Rong, Meiren;Wang, Zhigang;Bai, Lanfang;Cheng, Zhipeng;Wang, Tianhao;Zhang, Yajing;Zhang, Xiangqian;Lu, Zhanyuan;Liang, Hongwei;Meng, Tiantian;Zhang, Xiangqian;Lu, Zhanyuan;Meng, Tiantian;Liu, Lingyue;Luo, Fang
关键词:soil physico-chemical and biological properties; soil microbial quotient; soil carbon and nitrogen balance; maize yield
-
Organic Nitrogen Substitution Enhances Carbon Sequestration but Increases Greenhouse Gas Emissions in Maize Cropping Systems
作者:Liu, Yanan;Xie, Rui;Meng, Tiantian;Lu, Zhanyuan;Liu, Yanan;Zhao, Xiaoqing;Cheng, Yuchen;Xie, Rui;Meng, Tiantian;Chen, Liyu;Ren, Yongfeng;Xue, Chunlei;Zhao, Kun;Wei, Shuli;Fang, Jing;Zhang, Xiangqian;Sun, Fengcheng;Lu, Zhanyuan;Liu, Yanan;Zhao, Xiaoqing;Cheng, Yuchen;Xie, Rui;Meng, Tiantian;Chen, Liyu;Ren, Yongfeng;Zhao, Kun;Wei, Shuli;Fang, Jing;Zhang, Xiangqian;Sun, Fengcheng;Lu, Zhanyuan
关键词:nitrogen fertilizer; organic substitution; maize; greenhouse gas emissions; carbon sequestration