中国农业科学 ›› 2026, Vol. 59 ›› Issue (17): 3763-3777.doi: 10.3864/j.issn.0578-1752.2026.17.005

• 耕作栽培·生理生化·农业信息技术 • 上一篇    下一篇

滴施生物酶对棉花生长及其产量品质的影响

赵飞飞(), 谭晰文, 孟子艺, 程浩, 程楠, 张小新, 高昂, 宋兴虎, 赵强()   

  1. 新疆农业大学农学院/棉花教育部工程研究中心/丝绸之路经济带棉花优质高效协同创新中心, 乌鲁木齐 830052
  • 收稿日期:2026-02-02 接受日期:2026-04-30 出版日期:2026-09-03 发布日期:2026-09-03
  • 通信作者:
    赵强,E-mail:
  • 联系方式: 赵飞飞,E-mail:1124103073@qq.com。
  • 基金资助:
    新疆维吾尔自治区现代农业产业技术体系(XJARS-03); 新疆维吾尔自治区天池英才计划(6660184); 新疆“天山英才”培养计划“棉花轻简高效栽培技术创新团队”(2023TSYCTD004); 作物复合酶制剂及其应用技术的引进与示范推广(2024E02008)

Effects of Drip Application of Biological Enzymes on Growth, Yield and Quality of Cotton

ZHAO FeiFei(), TAN XiWen, MENG ZiYi, CHENG Hao, CHENG Nan, ZHANG XiaoXin, GAO Ang, SONG XingHu, ZHAO Qiang()   

  1. College of Agriculture, Xinjiang Agricultural University/Engineering Research Centre of Cotton, Ministry of Education/Silk Road Economic Belt Cotton High-Quality and Efficient Collaborative Innovation Centre, Urumqi 830052
  • Received:2026-02-02 Accepted:2026-04-30 Published:2026-09-03 Online:2026-09-03

摘要:

【目的】针对新疆棉田土壤内源酶活性不足限制棉花生长发育的问题,研究不同生育时期滴施外源生物酶对棉花生长及产量品质形成的影响,明确其调控效果与适宜施用时期。【方法】于2024和2025年在新疆沙湾市开展田间试验,以中棉7700为供试材料,设置蕾期(T1)、初花期(T2)和盛铃期(T3)3个滴施时期,随水滴施生物酶30 kg·hm-2,以清水为对照(CK),分析不同生育时期滴施生物酶对棉花农艺性状、冠层参数、光合参数、干物质积累、产量及其构成因素和纤维品质的影响。【结果】与CK相比,T1时期生物酶处理显著提高棉花株高、茎粗和果枝数,成铃率增加20.7%—28.4%,并优化了冠层参数,具体表现为叶面积指数增大12.2%—26.4%、平均叶倾角提高14.8%—16.0%、冠层开度降低29.4%—30.5%,从而改善了群体光分布。同时,T1时期生物酶处理显著增强了叶片光合能力,净光合速率提升30.0%—39.1%,胞间二氧化碳浓度显著下降13.3%—14.9%,更有利于同化产物向生殖器官转运。产量构成上,T1时期生物酶处理同时增加单位面积铃数(11.0%—15.0%)与单铃重(1.8%—3.6%),籽棉产量两年分别达7 196.2和7 754.7 kg·hm-2,较对照增产14.1%—16.9%;纤维上半部平均长度、断裂比强度和整齐度指数也得到改善。相关性分析进一步表明,蕾期(T1)施用生物酶,棉花株高、茎粗、成铃率、叶绿素相对含量(SPAD值)、生殖器官干物质及铃数与籽棉产量呈极显著正相关关系,冠层开度和胞间二氧化碳浓度呈极显著负相关关系;初花期(T2)调控效果较弱,盛铃期(T3)效果不显著,表明生物酶对棉花的调控效果具有明显时期依赖性。【结论】生物酶滴施时期对棉花生长及产量形成具有显著调控作用。蕾期滴施30 kg·hm-2生物酶可通过优化冠层参数、增强光合能力、促进生殖器官干物质积累,实现单位面积铃数与单铃重协同增加,最终提高籽棉产量,是新疆棉田生物酶施用的适宜时期。

关键词: 棉花, 生物酶, 生育时期, 产量, 纤维品质

Abstract:

【Objective】In response to the issue of insufficient endogenous enzyme activity in Xinjiang cotton field soils limiting cotton growth and development, the study investigated the effects of foliar application of exogenous bio-enzymes at different growth stages on cotton growth and the formation of yield and quality, clarifying their regulatory effects and suitable application periods.【Method】Field experiments were conducted in Shawan City, Xinjiang in 2024 and 2025, using Zhongmian 7700 as the experimental material. Set three drip application periods: bud stage (T1), initial flowering stage (T2), and full bell stage (T3), applying 30 kg·hm-2 of bio-enzyme with irrigation, with clear water as the control (CK). The effects of drip-applied bioenzyme at different growth stages on cotton agronomic traits, canopy parameters, photosynthetic parameters, dry matter accumulation, yield and its components, and fiber quality were analyzed.【Result】Compared with the CK, the application of bioenzymes at the T1 stage significantly increased the cotton plant height, stem thickness, and number of fruit branches, with a boll-setting rate increase of 20.7%-28.4%, and optimized canopy parameters, specifically showing a 12.2%-26.4% increase in leaf area index, a 14.8%-16.0% increase in average leaf inclination angle, and a 29.4%-30.5% decrease in canopy openness, thereby improving the population light distribution. At the same time, bioenzyme treatment at the T1 stage significantly enhanced leaf photosynthetic capacity, with net photosynthetic rate increasing by 30.0%-39.1%, and intercellular CO2 concentration significantly decreasing by 13.3%-14.9%, which was more conducive to the transport of assimilates to reproductive organs. In terms of yield composition, bioenzyme treatment at the T1 stage simultaneously increased the number of bolls per unit area (11.0%-15.0%) and the single boll weight (1.6%-2.9%), with seed cotton yields reaching 7 196.2 and 7 754.7 kg·hm-2 over two years, respectively, representing an increase of 14.1%-16.9% compared with CK; the average fiber length in the upper half, breaking strength, and uniformity index of fibers were also improved. Correlation analysis further indicated that applying bio-enzymes at the bud stage (T1) showed a highly significant positive correlation with cotton plant height, stem thickness, boll set rate, relative chlorophyll content (SPAD value), reproductive organ dry matter, boll number, and seed cotton yield, while canopy openness and intercellular CO2 concentration showed a highly significant negative correlation; the regulatory effect at the initial flowering stage (T2) was weaker, and the effect at the full boll stage (T3) was not significant, indicating that the regulatory effect of bio-enzymes on cotton has a clear period-dependent characteristic.【Conclusion】The period of foliar application of biological enzymes had a significant regulatory effect on cotton growth and yield formation. Applying 30 kg·hm-2 of biological enzymes during the bud stage could optimize canopy parameters, enhance photosynthetic capacity, and promote the accumulation of dry matter in reproductive organs, achieving a coordinated increase in bolls per unit area and individual boll weight, ultimately improving seed cotton yield, which was the suitable period for applying biological enzymes in cotton fields in Xinjiang.

Key words: cotton, bioenzymes, fertility period, yield, fiber quality