[1]贾永华,马军,褚燕南,等.有机肥与生物菌肥配施对旱区果园土壤酶活性和果树光合能力的影响[J].江苏农业学报,2026,42(07):1378-1386.[doi:doi:10.3969/j.issn.1000-4440.2026.07.009]
 JIA Yonghua,MA Jun,CHU Yannan,et al.Effects of combined application of organic fertilizer and bio-fertilizer on soil enzyme activities and photosynthetic capacity of fruit trees in dryland orchards[J].,2026,42(07):1378-1386.[doi:doi:10.3969/j.issn.1000-4440.2026.07.009]
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有机肥与生物菌肥配施对旱区果园土壤酶活性和果树光合能力的影响()

江苏农业学报[ISSN:1006-6977/CN:61-1281/TN]

卷:
42
期数:
2026年07期
页码:
1378-1386
栏目:
耕作栽培·资源环境
出版日期:
2026-07-31

文章信息/Info

Title:
Effects of combined application of organic fertilizer and bio-fertilizer on soil enzyme activities and photosynthetic capacity of fruit trees in dryland orchards
作者:
贾永华马军褚燕南岳海英许泽华李晓龙
(宁夏农林科学院园艺研究所,宁夏银川750002)
Author(s):
JIA YonghuaMA JunCHU YannanYUE HaiyingXU ZehuaLI Xiaolong
(Institute of Horticulture, Ningxia Academy of Agriculture and Forestry Sciences, Yinchuan 750002, China)
关键词:
旱区果园有机肥生物菌肥土壤性质土壤酶活性光合特性
Keywords:
dryland orchardsorganic fertilizerbio-fertilizersoil propertiessoil enzyme activitiesphotosynthetic characteristics
分类号:
S154.3
DOI:
doi:10.3969/j.issn.1000-4440.2026.07.009
文献标志码:
A
摘要:
为明确园艺地布覆膜情况下,有机肥和生物菌肥配施对旱区苹果园土壤性质与果树叶片光合能力的影响,本研究以苹果品种岩富8号为试验材料,设置不施肥对照(CK)、蚯蚓粪(T1)、生物菌肥(T2)及蚯蚓粪和生物菌肥3∶1(质量比)配施(T3)等处理,分析不同肥料处理对苹果园土壤理化性质、酶活性以及果树光合参数的影响。结果表明,与CK相比,T1、T2和T3处理果实收获期表层(0~20.0 cm)土壤含水量分别提升40.48%、18.33%和51.67%,pH值分别降低6.86%、5.20%、13.24%。除苹果花后60 d T3处理表层土壤碱性磷酸酶活性低于CK外,花后60~180 d T3处理表层土壤过氧化氢酶活性、过氧化物酶活性、蔗糖酶活性、碱性磷酸酶活性、脲酶活性均显著高于CK。T3处理对土壤酶活性的增加效果总体高于T1和T2处理。与CK相比,T1、T2、T3处理果实收获期果树叶片胞间CO2浓度分别降低 13.30%、7.62%、6.20%,净光合速率分别增加67.36%、47.97%、81.74%,气孔导度分别增加37.50%、53.12%、84.38%。综上所述,蚯蚓粪与生物菌肥3∶1(质量比)配施能通过土壤理化性质改良、土壤酶活性提高、植株光合能力增强等途径提升土壤生态功能,促进果树生长。
Abstract:
To clarify the effects of combined application of organic fertilizer and bio-fertilizer on soil properties and leaf photosynthetic capacity of fruit trees in apple orchards in arid areas under mulching with horticultural ground fabric, this study used apple variety Yanfu 8 as the test material, and set up no fertilization control (CK), vermicompost treatment (T1), bio-fertilizer treatment (T2) and vermicompost and bio-fertilizer (3∶1) combined application treatment (T3) to analyze the effects of different fertilizer treatments on soil physical and chemical properties and enzyme activities in apple orchards and photosynthetic parameters of fruit trees. The results showed that compared with CK, the water contents of surface soil (0-20.0 cm) in T1, T2 and T3 treatments at harvest stage increased by 40.48%, 18.33% and 51.67%, respectively, and the pH values decreased by 6.86%, 5.20% and 13.24%, respectively. At 60-180 days after anthesis, except that the alkaline phosphatase activity in surface soil under T3 treatment was lower than that under CK at 60 days after anthesis, the catalase activity, peroxidase activity, sucrase activity, alkaline phosphatase activity and urease activity in surface soil under T3 treatment were significantly higher than those under CK. The effect of T3 treatment on the increase of soil enzyme activity was higher than that of T1 and T2 treatments. Compared with CK, the intercellular CO2 concentration in fruit tree leaves at harvest stage under T1, T2 and T3 treatments decreased by 13.30%, 7.62% and 6.20% respectively, the net photosynthetic rate increased by 67.36%, 47.97% and 81.74% respectively, and the stomatal conductance increased by 37.50%, 53.12% and 84.38% respectively. In summary, the combined application of vermicompost and bio-fertilizer at 3∶1 mass ratio can improve soil ecological functions and promote fruit tree growth through the improvement of soil physical and chemical properties, enhancement of soil enzyme activities, and strengthening of plant photosynthetic capacity.

参考文献/References:

[1]杨佳妮,朱柏菁,任竹红,等. 减施化肥配施有机物料对旱地红壤团聚体尺度上线虫群落的影响[J/OL]. 土壤学报.
[2025-07-25]. https://link.cnki.net/urlid/32.1119.P.20250730.1018.002.
[2]夏乐斋. 我国农业可持续发展中土壤肥料问题研究[J]. 低碳世界,2020,10(7):226,228.
[3]鲁飞. 有机肥助力农业可持续发展[J]. 农经,2020(12):46-49.
[4]黄国东,宋清晖,王晓慧,等. 含枯草芽孢杆菌肥料对大豆叶片光合作用及土壤酶活性的影响[J]. 土壤与作物,2021,10(1):99-107.
[5]Edwards C A, Arancon N Q. Biology and ecology of earthworms[M]. 4th edition. New York:Springer US,2022:233-274.
[6]Raja Sekar K, Karmegam N. Earthworm casts as an alternate carrier material for biofertilizers:assessment of endurance and viability of Azotobacter chroococcum,Bacillus megaterium and Rhizobium leguminosarum[J]. Scientia Horticulturae,2010,124(2):286-289.
[7]许泽华,马军,李百云,等. 不同用量有机肥和生物菌肥配施对设施番茄土壤性能和品质的影响[J]. 中国瓜菜,2025,38(3):131-137.
[8]李想,刘艳霞,陈风雷,等. 长期不同施肥处理对贵州植烟土壤酶活及微生物群落的影响[J]. 中国烟草学报,2019,25(6):50-59.
[9]Amadou A, Song A L, Tang Z X, et al. The effects of organic and mineral fertilization on soil enzyme activities and bacterial community in the below- and above-ground parts of wheat[J]. Agronomy,2020,10(10):1452.
[10]褚燕南,贾永华,岳海英,等. 宁夏引黄灌区果园间作长柔毛野豌豆的土壤碳氮转化特征[J]. 北方园艺,2025(12):111-120.
[11]王晓芳. 果园黑色园艺地布的使用方法[J]. 落叶果树,2017,49(3):5.
[12]刘宝龙,付旭坤,孟祥宇,等. 地膜覆盖与有机肥施用对稻田土壤养分与酶活性的影响[J]. 东北师大学报(自然科学版),2024,56(3):121-128.
[13]张卓,聂江力,邱晓坤,等. 蚯蚓粪肥部分替代化肥对兰州百合光合特性、品质和产量的影响[J/OL]. 作物杂志.
[2025-07-29]. https://link.cnki.net/urlid/11.1808.S.20250729.1521.004.
[14]刘蓓青,巴婷婷,张建国,等. 长期不同施肥模式对陕南核桃园土壤理化性质及经济效益的影响[J]. 西北林学院学报,2025,40(4):76-84.
[15]生态环境部(原环境保护部). 土壤总磷的测定碱熔-钼锑抗分光光度法: HJ 632-2011[S].
[2025-07-05].
[16]Ma J, Li G Z, Tian J W, et al. Assessing and quantifying the carbon,nitrogen,and enzyme dynamics effects of inter-row cover cropping on soils and apple tree development in orchards[J]. HortScience,2024,59(8):1088-1096.
[17]中华人民共和国国家卫生健康委员会,国家市场监督管理总局. 食品安全国家标准 食品中脲酶的测定:GB 5009.183-2025[S].
[2025-07-25].
[18]Zhang Y J, Ye C, Su Y W, et al. Soil acidification caused by excessive application of nitrogen fertilizer aggravates soil-borne diseases:evidence from literature review and field trials[J]. Agriculture,Ecosystems & Environment,2022,340:108176.
[19]刘闯,姜悦,罗然,等. 有机无机肥配施对紫苏生长及土壤微生物群落的影响[J]. 北方园艺,2025(17):102-109.
[20]Rattan B, Dhobale K V, Saha A, et al. Influence of inorganic and organic fertilizers on the performance of water-absorbing polymer amended soils from the perspective of sustainable water use efficiency[J]. Soil and Tillage Research,2022,223:105449.
[21]邓炯. 肥料在土壤可持续利用中的作用研究[J]. 农村科学实验,2024(1):48-50.
[22]Sainju U M, Liptzin D, Dangi S M. Enzyme activities as soil health indicators in relation to soil characteristics and crop production[J]. Agrosystems, Geosciences & Environment,2022,5(3):e20297.
[23]张翔,耿孝宇,汪璐璐,等. 生物炭改良盐碱地土壤的效应与机制研究进展[J]. 扬州大学学报(农业与生命科学版),2025,46(3):1-10.
[24]童文彬,郑则华,杨海峻,等. 畜禽有机肥与化肥配施条件下橘园土壤细菌群落分布与氮代谢的剖面分析[J]. 浙江农业科学,2025,66(3):760-768.
[25]于功霞,李迎,刘宏元,等. 我国盐碱地改良与利用技术研究进展[J]. 黑龙江农业科学,2025(7):96-103.
[26]Frankenberger W T, Johanson J B. Effect of pH on enzyme stability in soils[J]. Soil Biology and Biochemistry,1982,14(5):433-437.
[27]Bo H J, Li Z J, Wang W, et al. Combining organic and inorganic fertilization enhances soil enzyme activity,the bacterial community,and molecular ecological network complexity in coal mine reclamation areas[J]. Agronomy,2024,14(7):1427.
[28]殷浩凯,李倩,赵宇航,等. 不同培肥措施对褐土土壤微生物群落和酶活性的影响[J]. 环境科学,2026,47(2):1366-1378.
[29]孙建波,畅文军,李文彬,等. 香蕉不同生育期根际微生物生物量及土壤酶活的变化研究[J]. 生态环境学报,2022,31(6):1169-1174.
[30]金珊,刘雪,陈卓帛,等. 有机肥配施生物菌肥对设施黄瓜土壤改良效果[J]. 农业环境科学学报,2023,42(9):1995-2003.
[31]Farmer J, Zhang B, Jin X X, et al. Long-term effect of plastic film mulching and fertilization on bacterial communities in a brown soil revealed by high through-put sequencing[J]. Archives of Agronomy and Soil Science,2017,63(2):230-241.
[32]王继涛,刘世伟,刘晓娇,等. 不同堆肥方式有机肥对设施土壤性质、西瓜生长发育及品质的影响[J]. 现代园艺,2025,48(15):18-21.
[33]王照,宋喜梅,杨倩,等. 调控热带果树成花的因素和机理研究进展[J]. 热带亚热带植物学报,2025,33(5):596-606.
[34]Kureljuic J M, Veskovic Moracanin S M, Dukic D A, et al. Comparative study of vermicomposting:apple pomace alone and in combination with wheat straw and manure[J]. Agronomy,2024,14(6):1189.
[35]Rutkowski K, ysiak G P, Zydlik Z. Effect of nitrogen fertilization in the sour cherry orchard on soil enzymatic activities,microbial population,and fruit quality[J]. Agriculture,2022,12(12):2069.
[36]Lü F L, Zheng W, Zhai B N, et al. Cover cropping and chemical fertilizer seasonally mediate microbial carbon and phosphorus metabolisms in an apple orchard:evidence from the enzymatic stoichiometry method[J]. Applied Soil Ecology,2022,178:104579.
[37]Kai T, Adhikari D. Effect of organic and chemical fertilizer application on apple nutrient content and orchard soil condition[J]. Agriculture,2021,11(4):340.
[38]张迪,邓旭,张青,等. 不同栽植年限、土层深度苹果梨园土壤中磷酸酶与磷素变化研究[J]. 延边大学农学学报,2020,42(1):8-14.
[39]叶宁,韩德峰,戚凯铭,等. 桃枝有机肥对桃园土壤养分及酶活性的影响[J]. 北京农学院学报,2025,40(4):1-7.
[40]陈玲,宋思言,董天宇,等. 不同光质和砧木对‘巨峰’葡萄叶片光合特性和糖、酸代谢的影响[J]. 南京农业大学学报,2025,48(4):802-811.
[41]艾伟伟,林珊,张月,等. 高含量CO2对不同品种小麦光合性能的影响[J]. 江苏农业学报,2025,41(2):231-241.
[42]韩冰,高文瑞,孙艳军,等. 不同LED光照对番茄幼苗生理特性及定植后开花结果的影响[J]. 江苏农业学报,2024,40(12):2219-2225.
[43]李喜梅,赵君静,回祎,等. 郑州市4种园林树木光合特性及其影响因素研究[J]. 南京林业大学学报(自然科学版),2024,48(5):105-112.
[44]樊小雪,李德翠,李远,等. 基于RGB模型的草莓叶片光合作用指标估测[J]. 江苏农业学报,2024,40(4):675-681.
[45]汤伟华,刘叶琼,张子楠,等. 高产优质同源四倍体不结球白菜新材料的创制与评价[J]. 南京农业大学学报,2025,48(2):312-320.
[46]罗春燕,耿红凯,王秀军,等. NaCl胁迫下外源水杨酸对银杏生长和光合作用的影响[J]. 南京林业大学学报(自然科学版),2024,48(6):91-101.
[47]姜雅轩,孔德馨,雷培,等. 生物菌肥对四倍体刺槐植株生长的影响[J]. 中南林业科技大学学报,2023,43(8):27-35.
[48]丁守鹏,张国新,姚玉涛,等. 蚯蚓粪生物炭配施对盐碱地设施番茄生长及光合作用的影响[J]. 北方园艺,2021(18):60-67.
[49]Ye S L, Liu T C, Niu Y. Effects of organic fertilizer on water use,photosynthetic characteristics,and fruit quality of pear jujube in northern Shaanxi[J]. Open Chemistry,2020,18(1):537-545.

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备注/Memo

备注/Memo:
收稿日期:2025-07-30基金项目:中央财政林业科技推广示范项目(2023ZY06);国家苹果产业技术体系项目(CARS-27)作者简介:贾永华(1979-),男,山西柳林人,硕士,副研究员,主要从事果树栽培生理与贮藏等研究工作。(E-mail)529843423@qq.com通讯作者:李晓龙,(E-mail)262450313@qq.com
更新日期/Last Update: 2026-08-21