中国集约化农区水田生物多样性建设对策

IF 8.4
Yinan Xu , Jing Sheng , Zhi Guo , Qian Yue , Sichu Wang , Jianwei Zhang
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引用次数: 0

摘要

以自然为基础的生物多样性农业是目前公认的绿色农业的最佳途径。具有生物多样性的农业系统可以提供有害生物和温室气体排放控制、水和养分调节、授粉等生态功能。如何构建健康的农业生物多样性系统,使其在绿色农业中发挥有益作用,是一个迫切需要关注的问题。因此,本研究总结了传统生物多样性利用与培育技术及其综合效果。结果表明,水稻轮作模式提高了水稻产量,提高了土壤有机质(SOC)、全氮(TN)、速效磷(AP)和速效钾(AK)等土壤肥力指标。水稻共栽模式对稻飞虱、稻卷叶螟、稻瘟病、杂草等主要病虫害的防治效果显著,减少幅度在15.5% ~ 73.9%之间。有机肥和秸秆还田增加了土壤微生物多样性,细菌Shannon指数(1.9% ~ 7.5%)和真菌Shannon指数(6.5% ~ 24.1%)增加。基于这些发现,本研究确定了现代集约农业促进农业生物多样性的三个关键挑战:人力资源利用效率、功能整合和对环境异质性的适应。进而提出了生产功能区、生产与生态服务结合功能区、生产与生态服务结合功能区、生态服务功能区的“四区”战略。研究结果表明,在不同的气候和土地利用条件下,合理的空间配置和物种组合对实现生态可持续性和经济可行性的双重目标至关重要,应成为未来研究和实践的重点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Strategies for constructing biodiversity of paddy fields in intensive agricultural areas in China
Nature-based biodiversity agriculture is currently recognized as the best path for green agriculture. Agricultural systems with biodiversity can provide ecological functions such as pest and greenhouse gas emission control, water and nutrient regulation, pollination, etc. How to construct a healthy agricultural biodiversity system and make it play a beneficial role for green agriculture is an urgent issue that needs attention. Thus, this study summarizes traditional biodiversity utilization and cultivation techniques and their comprehensive effects. Results showed that paddy rotation modes improved rice yield and enhanced soil fertility indicators such as soil organic matter (SOC), total nitrogen (TN), available phosphorus (AP), and available potassium (AK). Paddy co-culture modes effectively suppressed major pests and diseases, including rice planthopper, rice leaf roller, rice blast, and weeds, with reductions ranging from 15.5 % to 73.9 %. Organic fertilization and straw returning practices increased microbial diversity, as evidenced by the rise in bacterial (1.9 %–7.5 %) and fungal (6.5 %–24.1 %) Shannon index. Based on these findings, this study identifies three key challenges in promoting agricultural biodiversity in modern intensive farming: efficiency in human resource utilization, integration of functions, and adaptation to environmental heterogeneity. And then proposed the “four zones” strategies including production functional zone, production and ecological service combined functional zone, production service and ecological service combined functional zone, and ecological service functional zone. As a conclusion, the study highlights that the rational spatial configuration and species combination of these zones under diverse climatic and land-use conditions is essential for achieving the dual goals of ecological sustainability and economic viability, and should be a key focus for future research and practice.
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1.20
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