盐碱地作物“根际适生微域”理论架构与技术路径思考
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1.养分资源高效利用全国重点实验室/山东省农业科学院农业资源与环境研究所;2.中国农业大学资源与环境学院/国家农业绿色发展研究院/养分资源高效利用全国重点实验室;3.土壤与农业可持续发展全国重点实验室(中国科学院南京土壤研究所)

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基金项目:

国家重点研发计划项目(2021YFD19001900)和泰山学者工程项目(tsqn202312287)资助


The Theoretical Framework and Technical Pathway of
Author:
Affiliation:

1.State Key Laboratory of Nutrient Use and Management,Institute of Agricultural Resources and Environment,Shandong Academy of Agricultural Sciences,Jinan;2.College of Resources and Environmental Sciences / National Institute for Green Development / State Key Laboratory of Nutrient Use and Management,China Agricultural University;3.State Key Laboratory of Soil and Sustainable Agriculture,Institute of Soil Science,Chinese Academy of Sciences,Nanjing

Fund Project:

Supported by the National Key R&D Program of China (No. 2021YFD19001900), and the Taishan Scholars Program of Shandong Province, China (No. tsqn202312287)

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    摘要:

    盐碱地是一种重要的农业土地资源。近年来,中国在盐碱地治理方面采取了多种改良措施并取得了重要进展。然而,盐碱地改良和利用依然面临成本高、水资源严重制约的问题,且改良后的盐碱地稳定性差、易反复,低耗水、高效率的技术支撑有待加强。针对上述重大问题,提出盐碱地作物“根际适生微域”学术思路,围绕盐碱地作物“出苗难、立地难”的问题,与整体改土策略相对,阐释盐碱地作物“根际适生微域”(RSM) 理论框架,即在植物根系范围微小空间,人为建造与周围环境有所不同的特定局部环境,具备独特的物理、化学和生物特征,能够支持特定的生物群落或生命活动。拟通过土壤培肥增碳降盐、养分均衡供应抑盐、物理结构优化消板、根际生物功能强化等多理论交叉创新,提出“活土促根、离子养根、酸化调根、生物护根”为核心的技术路径构建设想,系统描绘“根际适生微域”构建原理和技术路径的探索。以耐盐高值作物品种为先锋,通过水分调控促进根际钠离子的运移,并思考以新型缓控释肥料为核心,辅以抗盐、促生和生物强化因子的盐碱地作物“根际适生微域”技术路径,文章指出了作物“根际适生微域”与盐碱地改良研究的重点方向与内容,以期推动盐碱地改良技术瓶颈突破和相关学科发展。

    Abstract:

    Saline-alkali land is an important agricultural land resource, and in recent years, China has adopted various improvement measures for the management of saline-alkali soil. However, the improvement and utilization of saline-alkali land still face challenges, including high costs, severe water resource constraints, poor stability of improved saline-alkali land with a tendency to revert, and the need for enhanced low-water-consumption and high-efficiency technical support. To address these significant issues, this study proposes the concept of "rhizosphere suitable microzones" (RSM) for crops in saline-alkali soils. Focusing on the problems of "difficult emergence and establishment" of crops in saline-alkali land, as opposed to the overall soil improvement strategy, it expounds the theoretical framework of RSM. RSM refers to creating a specific local environment with unique physical, chemical, and biological characteristics within the small space of plant root systems, which differs from the surrounding environment and can support specific biological communities or life activities. This study proposes the technical path construction concept centered around "activating soil to promote root growth, using ions to nourish roots, acidification to regulate roots, and biological agents to protect roots". This will be achieved through cross-innovation of multiple theories, including soil fertility enhancement with carbon addition and salt reduction, balanced nutrient supply for salt inhibition, physical structure optimization to eliminate compaction, and enhancement of rhizosphere biological functions. Thus, it depicts the exploration of the construction principles and technical paths of RSM from a systematic perspective. This study outlines the key directions and contents of research on RSM and saline-alkali land improvement, aiming to break through the technical bottlenecks of saline-alkali soil improvement and promote the development of related disciplines. Specifically, the study considers salt-tolerant high-value crop varieties as pioneers, promotes the migration of sodium ions in the rhizosphere through water regulation, and considers the research and development of the technical path of RSM for crops in saline-alkali soils. This is centered on new slow and controlled-release fertilizers supplemented by anti-salt, growth-promoting, and biological strengthening factors.

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引用本文

李光杰,于震,王冲,施卫明,王昭月,李彦,张琳,刘兆辉.盐碱地作物“根际适生微域”理论架构与技术路径思考[J].土壤学报,DOI:10.11766/trxb202503050101,[待发表]
LI Guangjie, YU Zhen, WANG Chong, SHI Weiming, WANG Zhaoyue, LI Yan, ZHANG Lin, LIU Zhaohui. The Theoretical Framework and Technical Pathway of[J]. Acta Pedologica Sinica, DOI:10.11766/trxb202503050101,[In Press]

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  • 收稿日期:2025-03-05
  • 最后修改日期:2025-07-03
  • 录用日期:2025-07-29
  • 在线发布日期: 2025-07-30
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