|Table of Contents|

Effects of Trichoderma Biofertilizer on the Growth and Soil Properties of Lycium barbarum L.in Qaidam Area

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2022年24
Page:
89-97
Research Field:
Publishing date:

Info

Title:
Effects of Trichoderma Biofertilizer on the Growth and Soil Properties of Lycium barbarum L.in Qaidam Area
Author(s):
LYU Liangyu12FAN Guanghui23FU Quan12ZHANG Zhongcun12LI Fayi12
(1.College of Agriculture and Animal Husbandry,Qinghai University,Xining,Qinghai 810016;2.School of Agriculture and Forestry Sciences,Qinghai University,Xining,Qinghai 810016;3.Qinghai Plateau Forest Genetics and Breeding Laboratory,Xining,Qinghai 810016)
Keywords:
Lycium barbarumtrichoderma biofertilizerproductionqualitysoil
PACS:
-
DOI:
10.11937/bfyy.20221467
Abstract:
Taking ‘Ningqi No.7’ as the experimental material,the effects of Trichoderma biofertilizer (A1,A2,A3,A4,A5,CK) with different dosage on the morphological characteristics of Lycium barbarum,physiological indexes of Lycium barbarum,fruit quality and yield,and physical and chemical properties of Lycium barbarum rhizosphere soil were studied,in order to provide reference for improving the yield and quality of Lycium barbarum in organic Lycium barbarum orchard.The results showed that,1) compared with CK,the photosynthetic characteristics of leaves of Lycium barbarum were improved after application of Trichoderma biofertilizer,and the plant height,crown width,ground diameter and fruity branch length of Lycium barbarum were significantly increased,and A3 and A4 treatments had the best improvement effect.2) After the application of Trichoderma biofertilizer,the yield of each fertilizer treatment was significantly increased by 11.9%-35.7% compared with CK,and the fruit quality of Lycium barbarum was improved.The contents of total sugar,Lycium barbarum polysaccharide,betaine,total flavonoids,carotenoid,ascorbic acid and polyphenol in Lycium barbarum fruits were significantly increased compared with CK,respectively,and A3 treatment had the best effect.3) The application of Trichoderma biofertilizer reduced the soil conductivity and increased the contents of soil organic matter,total nitrogen,total phosphorus,total potassium,alkali-hydrolyzed nitrogen,available phosphorus and available potassium,and the A3 treatment had the most obvious soil improvement effect.After comprehensive evaluation,it was concluded that the growth conditions of Lycium barbarum and soil physicochemical properties were improved under different dosages of Trichoderma biofertilizer.Among them,the A3 (44 550 mL·hm-2) biofertilizer could significantly affect the growth and soil properties of Lycium barbarum and would not be wasted.

References:

[1]付任胜,尹立荣,陈磊,等.盐碱胁迫对枸杞生长及根际适应能力的影响[J].华北农学报,2012(3):177-180.[2]刘建文,郑国琦,刘根红,等.磷对枸杞果实商品品质和药用品质的影响[J].北方园艺,2016(14):167-171.[3]李赫,陈敏,马文平,等.不同成熟期枸杞中类胡萝卜素含量的变化规律[J].中国农业科学,2006,39(3):599-605.[4]CUI B K,CHEN Y F,SU L,et al.Antitumour activity of Lycium chinensis polysaccharides in liver cancer rats[J].International Journal of Biological Macromolecules,2012,51(3):314-318.[5]述小英,尹跃,安巍,等.不同品种枸杞果实功能营养成分比较分析[J].西北林学院学报,2017,32(1):157-164.[6]刘建飞,巩媛,杨军丽,等.枸杞属植物中生物碱类成分研究进展[J].科学通报,2022,67(4):332-350.[7]张力,祁伟,苏国辉.清肝明目,理气通心:枸杞提取物功效开发的现状和展望[J].科学通报,2022,67(4):329-331.[8]何嘉,马婷慧,白小军,等.不同微生物菌剂对枸杞生长发育及产量品质的影响[J].西南农业学报,2021,34(6):1296-1301.[9]孙旭,刘臣炜,张龙江,等.农业废弃物制备生物有机肥及其在小白菜栽培上的应用[J].江苏农业学报,2017,33(6):1333-1341.[10]李波,魏成熙,文庭池,等.农业有机废弃物发酵后的有机肥对植烟土壤微生物数量及酶活性的影响[J].土壤通报,2012,43(4):821-825.[11]GERZABEK M H,ANTIL R S,KNICKER H,et al.How are soil use and management reflected by soil organic matter characteristics:A spectroscopic approach[J].European Journal of Soil Science,2006,57(4):485-494.[12]包慧芳,王宁,侯敏,等.生物有机肥对枸杞产量、品质及土壤性状的影响[J].新疆农业科学,2020,57(3):545-552.[13]高亮,丁春明,史卓强,等.晨雨生物有机肥对枸杞的增产效应[J].山西农业科学,2010,38(8):45-49.[14]赵栋,王有科,李杰,等.4种微生物肥对枸杞生长及抗病性的影响[J].甘肃农业大学学报,2012,47(6):87-92.[15]张常书,张丽娟,唐卫东,等.木霉腐植酸土壤修复剂的开发应用[J].腐植酸,2014(4):35-39.[16]FRANCESCO V,KRISHNAPILLAI S,EMILIO L,et al.Trichoderma-plant-pathogen interactions[J].Soil Biology & Biochemistry,2008,40(1):1-10.[17]马茜,武守朝,赖德强,等.微生物菌剂与有机肥配施对设施土壤盐渍化以及甜瓜产量和品质的影响[J].河北农业科学,2020,24(4):62-66.[18]卢九斤,聂易丰,魏娇娇,等.不同施氮措施对枸杞园土壤NH3挥发和N2O排放的影响[J].农业环境科学学报,2022,41(1):210-220.[19]杨瑞芳.古浪县沿沙区宁杞7号枸杞栽培技术试验研究[J].农业开发与装备,2020(1):125,129.[20]鱼欢,祖超,杨建峰,等.应用SPAD叶绿素仪测定不同位置胡椒叶片的SPAD值[J].热带作物学报,2012,33(10):1890-1895.[21]吕丽华,赵明,赵久然,等.不同施氮量下夏玉米冠层结构及光合特性的变化[J].中国农业科学,2008,41(9):2624-2632.[22]张志勇,卜晶晶,王素芳,等.冠菌素对不同钾水平下TTC法测定的棉花根系活力的影响[J].植物生理学报,2015,51(5):695-701.[23]王嘉昕,高晓东,赵西宁,等.不同耕作措施对枸杞土壤水热动态,生长及果实产量与品质的影响[J].干旱地区农业研究,2021,39(3):91-99.[24]张青.苯酚-硫酸比色法测定多糖含量[J].食品信息与技术,2004(11):17.[25]董卫华,昝玉玺,李贞霞.亚硒酸钠对枸杞总黄酮与枸杞多糖含量的影响[J].时珍国医国药,2013(9):2259-2260.[26]蔡靳,惠伯棣,蒋继志,等.一种测定枸杞鲜果中总类胡萝卜素含量的方法[J].中国食品添加剂,2013(2):250-256.[27]柴发永,李守拙.对《中国药典》枸杞子中甜菜碱含量测定方法的改进[J].中国药品标准,2009,10(2):87-90.[28]朱娟娟,何华屿,刘旺锁,等.密枝枸杞叶营养成分和活性物质研究[J].北方园艺,2016(23):149-152.[29]黄丽,於洪建,吴巍,等.枸杞多酚提取物中总多酚的测定[J].药物评价研究,2012,35(4):273-275.[30]HAYWARD H E,BERNSTEIN L.Plant-growth relationships on salt-affected soils[J].Botanical Review,1958,24(8):584-635.[31]郑慧杰,徐豪东,王学良,等.不同生物质材料对蕉园土壤有机质组成的影响[J].中国土壤与肥料,2019(3):36-41.[32]王宏凯,周广业,丁宁平,等.不同肥力土壤的供磷能力和磷肥肥效研究[J].土壤通报,1999(1):31-34.[33]王瑞永,刘莎莎,王成章,等.不同海拔高度高寒草地土壤理化指标分析[J].草地学报,2009(5):621-628.[34]吴婕,朱钟麟,郑家国,等.秸秆覆盖还田对土壤理化性质及作物产量的影响[J].西南农业学报,2006,19(2):192-195.[35]MESHRAM N,MORE S S,WAHANE M R.Biofertilizer and their role in sustainable agriculture:A review[J].Outlook on Agriculture,2020,9(7):127-130.[36]刘方春,邢尚军,马海林,等.生物肥对冬枣生物学特性及产量和品质的影响[J].水土保持学报,2010,24(6):222-226.[37]孙运杰,马海林,刘方春,等.生物肥对蓝莓根际土壤微生物学特性及土壤肥力的影响[J].水土保持学报,2015,29(3):167-171.[38]彭辉辉,刘强,荣湘民,等.生物炭、有机肥与化肥配施对春玉米光合特性的影响[J].江苏农业科学,2016(7):132-135.[39]高亮,李苻仙,丛勃,等.自然源生物肥对枸杞的增产效果研究初报[J].宁夏农林科技,2007(5):64-66.[40]张敏硕,赵英男,杨威,等.微生物菌剂对张北冷凉坝上地区马铃薯产量,品质及活化土壤磷钾的效果[J].水土保持学报,2019,33(3):235-239.[41]HUANG Y,LUO W C,DAN-NI W U,et al.The study and analysis of microbial fertilizer application in ecological restoration of soil management[J].Environmental Science and Technology,2016(4):74-78.[42]CONG P,OUYANG Z,HOU R,et al.Effects of application of microbial fertilizer on aggregation and aggregate-associated carbon in saline soils[J].Soil & Tillage Research,2017,168:33-41.[43]褚义红,崔世茂,付崇毅,等.不同微生物菌肥对生菜生长及品质的影响[J].蔬菜,2014(3):5.[44]于秀丽,赵明家.增施生物有机肥对盐碱土壤养分的影响[J].吉林农业大学学报,2013,35(1):50-54,57.[45]谷思玉,耿泽铭,汪睿,等.不同配比生物有机肥对盐渍土改良效果的分析[J].东北农业大学学报,2014,45(7):26-30.[46]柳玲玲,王文华,杨再刚,等.不同生物有机肥对钩藤产量、品质及土壤生物性状的影响[J].中国土壤与肥料,2018(3):116-121.[47]田小明,李俊华,危常州,等.不同生物有机肥用量对土壤活性有机质和酶活性的影响[J].中国土壤与肥料,2012(1):26-32.

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Last Update: 2023-01-23