| 注册
首页|期刊导航|中国农业科学|基于茎秆结构优化的小麦抗倒伏调控及烯效唑与调环酸钙的协同作用

基于茎秆结构优化的小麦抗倒伏调控及烯效唑与调环酸钙的协同作用

王琦 仲迎鑫 姜东 郭双奇 梅蓝欣 吴承东 郑长宏 周琴 蔡剑 王笑 黄梅

中国农业科学2026,Vol.59Issue(15):3283-3301,19.
中国农业科学2026,Vol.59Issue(15):3283-3301,19.DOI:10.3864/j.issn.0578-1752.2026.15.004

基于茎秆结构优化的小麦抗倒伏调控及烯效唑与调环酸钙的协同作用

Regulation of Wheat Lodging Resistance Through Culm Structure Optimization and Synergistic by Uniconazole and Prohexadione Calcium

王琦 1仲迎鑫 1姜东 1郭双奇 1梅蓝欣 1吴承东 2郑长宏 3周琴 1蔡剑 1王笑 1黄梅1

作者信息

  • 1. 南京农业大学农学院/农业农村部作物生理生态与生产管理重点实验室/现代作物生产省部共建协同创新中心,南京 211800
  • 2. 南京市浦口区现代作物发展中心,南京 211800
  • 3. 天长市宏丰芡实专业合作社,安徽天长 239300
  • 折叠

摘要

Abstract

[Objective]The mechanical physicochemical properties of wheat culms are key intrinsic determinants of lodging resistance.This study aimed to determine the relationships between plant growth regulator-induced changes in culm physicochemical traits and improvements in mechanical properties.[Method]Two wheat varieties with different lodging resistance,Yangmai 22 and Ningmai 13,were selected.The experiment included four foliar spray treatments:water(control),uniconazole(20 mg·L-1),prohexadione-calcium(4.5 g·L-1)and a combination of uniconazole and prohexadione-calcium,applied at key growth stages.Culm morphological characteristics,mechanical traits,structural carbohydrate content,and yield components were systematically measured to analyze the regulatory effects of different treatments on culm lodging resistance and grain yield.[Result]Plant growth regulator treatments significantly reduced plant height and center of gravity height,shortened basal the first and second internodes,while increasing basal internode culm diameter,culm wall thickness,dry matter accumulation,and culm filling degree,with increased cell wall structural carbohydrate content.In 2022-2023,lignin content in the second basal internode at maturity stage of Yangmai 22 and Ningmai 13 increased by 21.17%-25.52%and 5.87%-8.61%,respectively.This optimization of morphology and matter accumulation further improved culm mechanical properties,as evidenced by significantly increased breaking force,section modulus,and breaking moment of the second basal internode,along with significantly reduced lodging index and markedly improved field lodging conditions.In 2023-2024,field lodging rate at maturity stage decreased by 7.81%,8.94%,and 11.95%,respectively.Correlation analysis showed that breaking strength and breaking moment were significantly positively correlated with section modulus and culm wall thickness,while significantly negatively correlated with bending stress,center of gravity height,and basal internode length.The lodging index was significantly negatively correlated with breaking strength,breaking moment,section modulus,culm diameter,and wall thickness of the basal internodes,but significantly positively correlated with bending stress,plant height,center of gravity height,and internode length.In terms of yield,foliar application of uniconazole,prohexadione-calcium,and their combination increased grain yield.In 2022-2023,grain yield increased by 4.03%-28.40%in Yangmai 22 and by 9.35%-22.48%in Ningmai 13 compared with the control,respectively.In 2023-2024,spray treatments of Yangmai 22 increased by 15.71%,14.97%,and 12.33%compared with the control,respectively.[Conclusion]Foliar application of uniconazole,prohexadione-calcium,and their combination significantly enhanced wheat culm lodging resistance by optimizing the morphological structure of basal internodes,including reducing plant height,shortening internodes,and increasing culm diameter;promoting dry matter accumulation,culm filling,and lignin deposition;and improving culm mechanical properties.These treatments also maintained or increased grain yield.

关键词

小麦/烯效唑/调环酸钙/抗倒伏/茎秆力学/茎秆形态/产量

Key words

wheat/uniconazole/prohexadione-calcium/lodging resistance/culm mechanics/culm morphology/yield

引用本文复制引用

王琦,仲迎鑫,姜东,郭双奇,梅蓝欣,吴承东,郑长宏,周琴,蔡剑,王笑,黄梅..基于茎秆结构优化的小麦抗倒伏调控及烯效唑与调环酸钙的协同作用[J].中国农业科学,2026,59(15):3283-3301,19.

基金项目

国家自然科学基金(32372224,32021004)、国家重点研发计划(2022YFD2301404)、国家现代小麦产业技术体系(CARS-03)、现代作物生产省部共建协同创新中心(CIC-MCP) (32372224,32021004)

中国农业科学

0578-1752

访问量0
|
下载量0
段落导航相关论文