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深土直播环境中陆稻胚芽鞘的适应性生理机制OA

Physiological mechanisms underlying coleoptile adaptation to deep-sowing conditions in upland rice

中文摘要英文摘要

[目的]在全球气候变化背景下,水资源短缺已成为制约传统水稻生产的主要因素之一,旱直播稻逐渐发展成为稻作生产的重要模式.然而,直播稻面临的关键挑战之一是种子出苗困难,尤其是在深土直播条件下.因此,筛选具有耐深土直播特性的稻种资源并揭示关键性状的适应机制,成为培育旱直播稻新品种的重要基础.[方法]在 8 cm 深土直播条件下,选用 4 份耐深土直播陆稻品种('镰刀谷''陆引 46''密粒毫图'和'矮红芝')与 4 份不耐深土直播水稻品种('绥粳 15''IR64''黄华占'和'中花 11'),测定其胚芽鞘长、中胚轴长、芽长、根长等关键农艺性状以及细胞学和相关生理指标.[结果]耐深土直播陆稻种质的胚芽鞘显著长于不耐深土直播水稻种质,且与芽长呈极显著正相关(r=0.441,P<0.01),具备更强的土壤穿透能力.通过石蜡切片观察到胚芽鞘细胞在出土过程中明显的形态变化,耐深土直播陆稻种质在顶端区域抑制细胞横向扩张,在基部促进细胞纵向伸长,形成"细长型"结构,从而有效降低出苗时的机械阻力.生理生化分析显示,与不耐深土直播的水稻种质相比,耐深土直播陆稻种质胚芽鞘具有更高的可溶性糖和总蛋白含量,抗氧化酶(SOD、CAT、POD)活性更强,活性氧(H2O2、O2·-)积累更少,有助于增强其在深土直播环境下的适应能力.[结论]本研究初步揭示了陆稻种质胚芽鞘响应深土直播出土的动态生理与细胞学变化,深入解析了其耐深土直播的生理机制,为直播稻育种中关键性状的挖掘与利用提供了理论依据.

[Objective]Under global climate change,water scarcity has emerged as a major constraint on traditional rice production,prompting the increasing adoption of dry direct-seeded rice(DDSR)as a key cultivation system.However,one of the primary challenges in direct-sowing is poor seedling emergence,particularly under deep-sowing conditions.Therefore,screening for DDSR germplasm resources and revealing the adaptive mechanisms of key traits has become crucial for breeding improved DDSR cultivars.[Method]Four deep-sowing-tolerant upland rice varieties('Liandaogu''Luyin 46''Milihaotu'and'Aihongzhi')and four non-tolerant lowland rice varieties('Suijing 15''IR64''Huanghuazhan'and'Zhonghua 11')were evaluated under 8 cm deep-sowing conditions to assess key agronomic traits such as the coleoptile length,mesocotyl length,shoot length,and root length,along with cytological characteristics and relevant physiological indicators.[Result]The deep-sowing-tolerant upland rice varieties exhibited significantly longer coleoptiles than their non-tolerant counterparts,with a highly significant positive correlation between coleoptile length and bud length(r=0.441,P<0.01),reflecting enhanced soil penetration capacity.Paraffin sectioning revealed distinct coleoptile cellular dynamics during emergence,and tolerant upland rice varieties suppressed lateral cell expansion in the apical region while promoting longitudinal cell elongation in the basal region,resulting in a slender,elongated structure that effectively reduced mechanical resistance.Physiological and biochemical analyses demonstrated that tolerant upland rice maintained higher levels of soluble sugar and total protein,exhibited elevated activities of antioxidant enzymes(SOD,CAT,and POD),and accumulated lower levels of reactive oxygen species(H2O2,O2·-),collectively contributing to improved stress resilience under deep-sowing conditions.[Conclusion]This study preliminarily reveals dynamic physiological and cytological changes in the upland rice coleoptile in response to deep direct-sowing,and provides an in-depth analysis of physiological mechanisms underlying deep-sowing tolerance.It offers a theoretical basis for identifying and utilizing key traits in direct-seeded rice breeding.

张秀茹;张德宇;张杨;匡田辉;蓝诗霞;杜光辉;王效宁;徐鹏;万金鹏

中国科学院 西双版纳热带植物园,云南 勐腊 666303||云南大学 农学院,云南 昆明 650205中国科学院 西双版纳热带植物园,云南 勐腊 666303中国科学院 西双版纳热带植物园,云南 勐腊 666303||中国科学院大学,北京 101408中国科学院 西双版纳热带植物园,云南 勐腊 666303||中国科学院大学,北京 101408中国科学院 西双版纳热带植物园,云南 勐腊 666303||中国科学院大学,北京 101408云南大学 农学院,云南 昆明 650205海南省农业科学院 粮食作物研究所/海南省农作物遗传育种重点实验室,海南 海口 570216中国科学院 西双版纳热带植物园,云南 勐腊 666303||云南大学 农学院,云南 昆明 650205中国科学院 西双版纳热带植物园,云南 勐腊 666303||云南大学 农学院,云南 昆明 650205

农业科技

陆稻胚芽鞘旱直播稻深土直播出苗能力抗氧化酶活性氧

Upland riceColeoptileDry direct-seeded riceDeep-sowingSeedling emergence abilityAntioxidant enzymeReactive oxygen species

《华南农业大学学报》 2026 (4)

593-603,11

云南省基础研究专项(202301AT070329)云南省"兴滇英才支持"计划(XDYC-QNRC-2023-0572,XDYC-CYCX-2022-0026)云南省重大科技专项计划(202402AE090026)国家自然科学基金(32270133)海南省科技人才创新项目(KJRC2023B23)

10.7671/j.issn.1001-411X.202602012

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