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甘蔗叶源腐植酸对罗汉果苗期生长、生理和土壤土质调控的效应

袁媛 黄夕洋 王磊 郑玉梅 吴梦莹 唐辉 李文兰

中国土壤与肥料Issue(3):148-157,10.
中国土壤与肥料Issue(3):148-157,10.DOI:10.11838/sfsc.1673-6257.25383

甘蔗叶源腐植酸对罗汉果苗期生长、生理和土壤土质调控的效应

Effects of sugarcane leaf humic acid on growth,physiology and soil properties of Siraitia grosvenorii seedlings

袁媛 1黄夕洋 2王磊 3郑玉梅 2吴梦莹 2唐辉 2李文兰4

作者信息

  • 1. 广西大学生命科学与技术学院/亚热带农业生物资源保护与利用国家重点实验室,广西 南宁 530004||广西壮族自治区中国科学院广西植物研究所/广西植物功能物质与资源持续利用重点实验室,广西 桂林 541006
  • 2. 广西壮族自治区中国科学院广西植物研究所/广西植物功能物质与资源持续利用重点实验室,广西 桂林 541006
  • 3. 广西壮族自治区中国科学院广西植物研究所/广西植物功能物质与资源持续利用重点实验室,广西 桂林 541006||广西特色食药植物资源高值化利用科技成果转化中试研究基地,广西 桂林 541006
  • 4. 广西大学生命科学与技术学院/亚热带农业生物资源保护与利用国家重点实验室,广西 南宁 530004
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摘要

Abstract

Aiming at the problem of sugarcane leaf utilization and soil degradation caused by excessive chemical fertilizer in Siraitia grosvenorii planting,a green fertilization strategy of replacing compound fertilizer with sugarcane leaf humic acid was proposed for the first time,and its synergistic effect on regulating the growth of Siraitia grosvenorii seedlings and soil quality was systematically explored.A gradient experiment was conducted and five treatments with different substitution levels were set up,namely the substitution of 20%compound fertilizer with sugarcane leaf humic acid(T1),the substitution of 40%compound fertilizer with sugarcane leaf humic acid(T2),the substitution of 60%compound fertilizer with sugarcane leaf humic acid(T3),the substitution of 80%compound fertilizer with sugarcane leaf humic acid(T4),and the substitution of 100%compound fertilizer with sugarcane leaf humic acid(T5).The application of compound fertilizer alone was set as the control group(CK).The comprehensive effects of substitution ratio on plant morphology,leaf physiology,soil available nutrients,and enzyme activity were evaluated.The results showed that:(1)Plant growth characteristics:The T4 treatment significantly promoted the growth of the plant height,leaf area,leaf length,leaf width,fresh leaf weight,and dry leaf weight of Siraitia grosvenorii,which increased by 103.9%,44.4%,45.8%,76%,74.6%,and 70.5%,respectively,compared with CK,and the morphology of the plants was optimized.(2)Physiological response of leaves:T3 and T4 treatments significantly increased the content of photosynthetic pigments in leaves,with T4 chlorophyll a,chlorophyll b,and carotenoids increasing by 28.8%,15.9%,and 159.0%,respectively,compared to CK,and simultaneously enhancing photosynthetic efficiency and stress resistance.T2 treatment significantly increased the soluble sugar content of leaves,T2-T5 treatments significantly increased the soluble protein content,while T3 and T4 treatments significantly reduced the proline content;T2-T4 treatment significantly enhanced the activities of peroxidase and catalase,while T4 treatment significantly increased the activity of superoxide dismutase(+97%).However,T5 treatment had significantly lower leaf malondialdehyde content than other treatments,but plant morphological indicators were inferior to T4.(3)Soil quality control:T2-T5 treatments significantly increased soil organic matter,ammonium nitrogen,available phosphorus,and available potassium contents;T2-T4 treatments significantly activated the activities of soil sucrase(+21%),urease(+111%),and acid phosphatase(+21%),promoting nutrient cycling.The comprehensive results showed that the comprehensive effect of replacing 80%compound fertilizer with humic acid from sugarcane leaves(T4 treatment)was the best.It provided technical support for resource utilization of sugarcane leaves and green cultivation of Siraitia grosvenorii by promoting plant growth,enhancing photosynthesis and stress resistance,and improving soil fertility.

关键词

甘蔗叶源腐植酸/罗汉果生长生理/叶片光合特性/土壤有机质和速效养分/土壤酶活性

Key words

sugarcane leaves humic acid/the growth of Siraitia grosvenorii plants/physiological indexes of leaves/soil olganic matter and available nutrients/soil enzyme activities

引用本文复制引用

袁媛,黄夕洋,王磊,郑玉梅,吴梦莹,唐辉,李文兰..甘蔗叶源腐植酸对罗汉果苗期生长、生理和土壤土质调控的效应[J].中国土壤与肥料,2026,(3):148-157,10.

基金项目

国家重点研发计划项目(2022YFD1600302) (2022YFD1600302)

广西科技重大专项(桂科AA22096020) (桂科AA22096020)

国家自然科学基金区域创新发展联合基金重点项目(U20A2004). (U20A2004)

中国土壤与肥料

1673-6257

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