中国稻米 ›› 2026, Vol. 32 ›› Issue (5): 11-15.DOI: 10.3969/j.issn.1006-8082.2026.05.003

• 专论与研究 • 上一篇    下一篇

上海市优质食味粳稻核心栽培技术研究进展

范鹏(), 张玉, 张秋丽, 何壮, 吉平平, 李刚*   

  1. 上海市农业技术推广服务中心上海 201103
  • 收稿日期:2026-03-09 出版日期:2026-09-20 发布日期:2026-09-04
  • 通讯作者: *
  • 作者简介:

    第一作者:liveforf@163.com

  • 基金资助:
    有机稻鳖综合种养关键技术提升与应用(沪农科(I2024005));2025年度上海市农业技术推广服务中心科技发展基金项目;上海“水稻+”绿色高效种植模式研究与示范(沪农科(A2025002))

Research Progress on Key Cultivation Techniques of High Eating-Quality Japonica Rice in Shanghai

FAN Peng(), ZHANG Yu, ZHANG Qiuli, HE Zhuang, JI Pingping, LI Gang*   

  1. Shanghai Agricultural Technology Extension and Service Center, Shanghai 201103, China
  • Received:2026-03-09 Published:2026-09-20 Online:2026-09-04
  • Contact: *
  • About author:

    1st author: liveforf@163.com

摘要:

我国粳稻产业已由产量主导转向品质优先,优质食味粳稻(软米)已成为上海水稻产业高质量发展的核心方向,食味品质已成为上海地产大米差异化竞争的关键优势。上海气候、土壤、水源等自然条件优越,适宜优质食味粳稻生长。本文系统梳理上海地区优质食味粳稻栽培技术研究进展,重点从秧苗素质、移栽调控、土壤改良、氮肥运筹、水浆管理及适宜收获期等关键栽培环节,总结影响优质食味粳稻食味品质形成的调控途径与技术要点。分析表明,当前上海优质食味粳稻生产存在栽培技术集成度不高、标准化水平偏低、品种抗逆性与食味品质协同提升难度大、绿色生产与优质丰产难以兼顾等问题。未来应强化优质食味粳稻食味形成机理与抗逆栽培基础研究,创新品种-栽培协同、绿色-优质协同关键技术,构建区域适配、标准化、集成化的优质食味粳稻栽培技术体系,推动上海地产优质稻米品牌化、订单化发展及全程质量管控。

关键词: 优质食味粳稻, 软米, 集成栽培技术, 上海

Abstract:

China’s japonica rice industry has transitioned from prioritizing yield to emphasizing quality, with high eating-quality japonica rice(soft rice) becoming the core driver for the high-quality development of Shanghai’s rice sector. Consequently, eating quality has emerged as a key competitive advantage for locally produced rice in Shanghai. Shanghai possesses superior natural conditions—including climate, soil, and water resources—that are conducive to the growth of high eating-quality japonica rice. This paper systematically reviews the research progress on cultivation techniques for high eating-quality japonica rice in the Shanghai region. It focuses on critical cultivation aspects—such as seedling vigor, transplanting regulation, soil amendment, nitrogen fertilizer management, water regime control, and optimal harvest timing—to summarize the regulatory pathways and technical key points influencing the formation of eating quality. Analysis indicates that current production faces several challenges, including insufficient integration of cultivation technologies, low standardization levels, difficulties in synergistically improving stress resistance and eating quality, and the difficulty of balancing green production with high quality and yield. Future efforts should focus on strengthening basic research on the mechanism of eating quality formation and stress-resistant cultivation. Furthermore, it is essential to innovate key techniques that coordinate variety selection with cultivation practices and align green production with quality enhancement. The ultimate goal is to establish a regionalized, standardized, and integrated cultivation technology system for high eating-quality japonica rice, thereby promoting the branding, contract-farming development, and whole-process quality control of Shanghai’s premium rice.

Key words: high eating-quality japonica rice, soft rice, integrated cultivation technology, Shanghai

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