Open Access
| Issue |
BCAS
Volume 39, 2025
|
|
|---|---|---|
| Article Number | 2025007 | |
| Number of page(s) | 10 | |
| DOI | https://doi.org/10.1051/bcas/2025007 | |
| Published online | 22 December 2025 | |
- Ao Man, Guan Yixin, Chen Jun, Du Xin, Zhang Yingnan, Wang Xiaoguang, Ma Sicong, Li Bo, Huang Qi, Bai Zixuan, & Li Binghao. (2023). Technical Specification for Integrated Water and Fertilizer Management in Strip Tillage with Maize Straw Mulching [S/OL]. DB2203/T 6–2023. [Google Scholar]
- FAO. (2022). Global status of black soils. Rome: Food and Agriculture Organization of the United Nations. https://doi.org/10.4060/cc3124en. ISBN: 978-92-5-137309-5. [Google Scholar]
- Gao Ruimin, Yan Jun, Han Xiaozeng, Chen Xu, Zou Wenxiu, Lu Xinchun, Piao Yongjie, & Jiang Rui. (2024). Construction effect of fertile cultivated layer in albic soil I. Effects of inversion tillage with organic materials on the redistribution of organic matter in surface layer of albic soil. Chinese Journal of Applied Ecology, 35 (6): 1590–1598. (In Chinese) [Google Scholar]
- Gao Yan, Liang Aizhen, Fan Ruqin, Guo Yafei, Zhang Yan, McLaughlin Neil, Chen Xuewen, Zheng Haifeng, & Wu Donghui. (2022). Quantifying influence of tillage practices on soil aggregate microstructure using synchrotron-based micro-computed tomography. Soil Use and Management, 38(1): 850–860. [Google Scholar]
- Guan Yixin, Ao Man, Dong Wenhe, et. al. (2023). A combined land preparation machine with strip subsoiling and shallow harrowing for straw mulching, ZL 202222729750.5. Invention Patent, China. [Google Scholar]
- Han Xing, Zhang Xingyi, Liu Su, Ma Xiulan, Wang Yujun, Zhang Yu, Li Hao, Chen Xuewen, & Cui Bin. (2023). Technical Specification for Reclamation of Cultivated Land Erosion Gullies [S/OL]. DB22/T 3489–2023. [Google Scholar]
- Hou Xia, Wang Xinhong, Ou Yang, Yan Liming, Liu Huiping, Li Xinyi, & Shang Minglian. (2025). Response of acetochlor degradation and bacterial community in black soil to the application of vermicompost. Biology and Fertility of Soils. 61: 13–26. [Google Scholar]
- Hu Xiaojing, Liu Junjie, Liang Aizhen, Gu Haidong, Liu Zhuxiu, Jin Jian, & Wang Guanghua. (2025). Soil metagenomics reveals reduced tillage improves soil functional profiles of carbon, nitrogen, and phosphorus cycling in bulk and rhizosphere soils. Agriculture, Ecosystems & Environment, 379, 109371. [Google Scholar]
- Ji Yuxuan, Zhao Ying, Han Xiaozeng, Chen Xu, Yan Jun, Lu Xinchun, Zhu Yuanchen, & Zou Wenxiu. (2024). Effect of long-term fertilization practices on the stability of soil organic matter in the northeast black soil region in China. Agronomy, 14(10): 2272–2272. [Google Scholar]
- Jia Zhongjun, Qian Wei, & Cao Xiaofeng. (2025). Preface to the special issue on Microbiome in Black Soils. Acta Microbiologica Sinica, 65(8): 3237–3240. (In Chinese) [Google Scholar]
- Jiang Ming, Jia Zhongjun, Wen Ya, Xu Hang,Wang Hongsheng, Zeng Yan, Li Lujun, Cui Mingxing, Li He, Zhang Jiabao. (2024). Safeguarding the “Black Soil Granary”: Innovations in soil conservation and sustainable agriculture. Bulletin of the Chinese Academy of Sciences, 38: 2024018. [Google Scholar]
- Jiang Ming, Wen Ya, Sun Ming, Wang Hongsheng, Zeng Yan, Han Yongbin, Li Xiujun, Wu Haitao, Li Lu-Jun, & Xu Shangqi. (2021). Thinking and implementation approach of science and technology strategy of well raising black soil. Bulletin of Chinese Academy of Sciences, 36(10): 1146–1154. (in Chinese) [Google Scholar]
- Li Lu-Jun, Burger Martin, Du Shuli, Zou Wenxiu, You Mengyang, Hao Xiangxiang, Lu Xinchun, Zheng Lin, Han Xiaozeng. (2016). Change in soil organic carbon between 1981 and 2011 in croplands of Heilongjiang Province, northeast China. Journal of the Science of Food and Agriculture, 96: 1275–1283. [Google Scholar]
- Li Rui, Hu Wenyou, Jia Zhongjun, Liu Hanqiang, Zhang Chao, Huang Biao, Yang Shunhua, Zhao Yuguo, Zhao Yongcun, Manoj K. Shukla, & Miguel Angel Taboada. (2025). Soil degradation: A global threat to sustainable use of black soils. Pedosphere, 35(1): 264–279. [Google Scholar]
- Liang Aizhen, Peng Fei, & Huang Dandan, et al., (2022a). Agricultural machinery and equipment for strip tillage with straw, ZL202220474117.3, Invention Patent, China. [Google Scholar]
- Liang Aizhen, Zhang Xiaoping, Shen Yan, Li Wenfeng, & Yang Xueming. (2008). Distribution of water-stable aggregates and aggregate-associated C in black soil in northeast China. Chinese Journal of Applied Ecology, 22(2): 148–152. (In Chinese) [Google Scholar]
- Liang Aizhen, Zhang Yan, Chen Xuewen, Zhang Shixiu, Huang Dandan, Yang Xueming, Zhang Xiaoping, Li Xiujun, Tian Chunjie, McLaughlin Neil, Xiang & Yang. (2022b). Development and effects of conservation tillage in the black soil region of northeast China. Scientia Geographica Sinica, 42(8): 1325–1335. (In Chinese) [Google Scholar]
- Liu Chunzhu, Si Bingcheng, Zhao Ying, Wu Zhimin, Lu Xinchun, Chen Xu, Han Xiaozeng, Zhu Yuanchen, & Zou Wenxiu. (2025). Drivers of soil quality and maize yield under long-term tillage and straw incorporation in Mollisols. Soil & Tillage Research, 246: 106360. [Google Scholar]
- Lu Xinchun, Han Xiaozeng, Qiu Chen, Chen Xu, Yan Jun, Zhang Naiwen, Zhang Zhiming, Gan Jiawei, Zou Wenxiu, & Liu Honggang. (2024). Effects of organic material incorporation within soil layer on meadow soil pore structure and maize yield. Soils and Crops, 13(1): 52–65. (In Chinese) [Google Scholar]
- Peng Jue, Yang Qingsong, Zhang Chenyang, Ni Shimin, Wang Junguang, & Cai Chongfa. (2023). Aggregate pore structure, stability characteristics, and biochemical properties induced by different cultivation durations in the Mollisol region of northeast China. Soil and Tillage Research, 233: 105797. [Google Scholar]
- Qin Lei, Tian Wei, Yang Liang, Freeman Chris, & Jiang Ming. (2020). Nitrogen availability influences microbial reduction of ferrihydrite-organic carbon with substantial implications for exports of iron and carbon from peatlands. Applied Soil Ecology, 153: 103637. [Google Scholar]
- Yang Xueming, Zhang Xiaoping, & Fang Huajun. (2003). Erosion Losses of Black soil Under Different Types of Management in Jilin. Chinese Journal of Soil Science, 34 (5): 389–393. (In Chinese) [Google Scholar]
- You Mengyang, Hao Xiangxiang, Li Lu-Jun. (2020). Changes of soil organic carbon and nutrients in Hailun Mollisols in the past thirty years. Soils and Crops, 9(3): 211–220. (In Chinese) [Google Scholar]
- Zhang Jiabao. (2023). Improving inherent soil productivity underpins agricultural sustainability. Pedosphere, 33(1): 3–5. [Google Scholar]
- Zhang Xingyi, Qi Zhi, Zhang Shengmin, Li Hao, Du Shuli, Hu Wei, Ding Chao, & Han Xing. (2019). Rehabilitation engineering of gully filling in the Mollisols farmland of northeast China. Science of Soil and Water Conservation, 17(5): 128–135. (In Chinese) [Google Scholar]
- Zhang Yan, Li Xiujun, Gregorich G. Edward, McLaughlin B. Neil, Zhang Xiaoping, Guo Yafei, Liang Aizhen, Fan Ruqin, & Sun Bingjie. (2018). No-tillage with continuous maize cropping enhances soil aggregation and organic carbon storage in northeast China. Geoderma, 330: 204–211. [Google Scholar]
- Zhang Yang, Zhang Yan, Gao Yan, Huang Dandan, Chen Xuewen, Zhang Shixiu, Zhang Xiaoping, McLaughlin Neil, & Liang Aizhen. (2022). Distribution of nitrogen storage in density and size fractions varied with tillage practices and cropping systems with residue return in black soil of northeast China. Soil Science Society of America Journal, 86(6): 1483–1494. [Google Scholar]
- Zhao Binhan, Dong Wenjun, Chen Zhiling, Zhao Xin, Cai Zhanjun, Feng Junjian, Li Shaojie, & Sun Xianyun. (2024). Microbial inoculation accelerates rice straw decomposition by reshaping structure and function of lignocellulose-degrading microbial consortia in paddy fields. Bioresource Technology, 413: 131545. [Google Scholar]
- Zhao Meiling, Wang Guodong, Zou Yuanchun, Qin Lei, Yang Liang, & Jiang Ming. (2025a). The accumulation of microbial residues decreases with time after wetland-to-cropland conversion. Applied Soil Ecology, 212: 106226. [Google Scholar]
- Zhao Ying, Biswas Asim, Liu Mingtao, Han Xiaozeng, Lu Xinchun, Chen Xu, Hao Xiangxiang, & Zou Wenxiu. (2025b). Land use effects on soil carbon retention through glomalin-mediated aggregation. Geoderma, 456: 117252. [Google Scholar]
- Zhao Yongcun, Wang Meiyan, Hu Shuijin, Zhang Xudong, Ouyang Zhu, Zhang Ganlin, Huang Biao, Zhao Shiwei, Wu Jinshui, Xie Deti, Zhu Bo, Yu Dongsheng, Pan Xianzhang, Xu Shengxiang, & Shi Xuezheng. (2018). Economics- and policy-driven organic carbon input enhancement dominates soil organic carbon accumulation in Chinese croplands. Proceedings of the National Academy of Sciences of the United States of America, 115 (16): 4045–4050. [Google Scholar]
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