|Table of Contents|

Effects of Irrigation With Different Concentrations of Brackish Water on the Fruits Quality of Lycium barbarum

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2022年04
Page:
92-97
Research Field:
Publishing date:

Info

Title:
Effects of Irrigation With Different Concentrations of Brackish Water on the Fruits Quality of Lycium barbarum
Author(s):
GUO Huan123DUAN Guozhen23FAN Guanghui23SU Caifeng123WANG Zhanlin23
(1.College of Agriculture and Animal Husbandry,Qinghai University,Xining,Qinghai 810016;2.Academy of Agriculture and Forestry Sciences,Qinghai University,Xining,Qinghai 810016;3.Qinghai Plateau Tree Genetics and Breeding Laboratory,Xining,Qinghai 810016)
Keywords:
brackish waterLycium barbarumeffective ingredients
PACS:
-
DOI:
10.11937/bfyy.20213418
Abstract:
Taking ‘Ningqi No.7’ as the test material,under the same planting method and field management conditions of Lycium barbarum,7 different salt concentrations of brackish water were used to irrigate Lycium barbarum,and the local groundwater irrigation was used as the control.The changes of phenotypic characters,effective components,soil conductivity and pH of the Lycium barbarum fruit after different salt concentration brackish water irrigation were studied,in order to clarify the effect of different salt concentration brackish water irrigation on the quality of Lycium barbarum.The results showed that the effect of brackish water irrigation on the phenotypic characteristics of Lycium barbarum fruit was not significant.The brackish water drip irrigation had a positive effect on the quality of Lycium barbarum,and the appropriate concentration of brackish water irrigation could increase the total sugar,total flavonoids,and flavonoids of Lycium barbarum to a certain extent.The content of polysaccharides,vitamin E,betaine and β-carotene reduced the fat content of Lycium barbarum.Brackish water irrigation had a greater impact on soil electrical conductivity,and it had a more obvious impact on the electrical conductivity of the surface soil,and had an impact on soil pH smaller.In general,T5 (addition of original salt concentration of 2.425 g?L-1) was a critical point for the salt tolerance of Lycium barbarum,and this salt concentration could be appropriately selected for irrigation of Lycium barbarum with brackish water.

References:

[1]张伟.咸水灌溉研究进展[J].山西水利科技,2012(1):12-13,39.[2]王全九,徐益敏,王金栋.咸水与微咸水在农业灌溉中的应用[J].灌溉排水,2002,21(4):73-77.[3]张启海,周玉香.微咸水灌溉发展的基础与措施探讨[J].中国农村水利水电,1998(10):52-54.[4]万书勤,康跃虎,王丹,等.微咸水滴灌对黄瓜产量及灌溉水利用效率的影响[J].农业工程学报,2007(3):30-35.[5]FELEAFEL M N,MIRDAD Z M.Ameliorating tomatoproductivity and water-use efficiency under water salinity[J].The Journal of Animal and Plant Sciences,2014(24):302-309.[6]WANG J J,TANG Z H.The regulation of soluble sugars inthe growth and development of plants[J].Botanical Research,2014(3):71-76.[7]TAKAHATA K,MIURA H.Increasing the sugar concentration in tomato fruit juice by coiling wire around plant stems[J].Hort Technology,2014,24(1):76-80.[8]KE M,ZHANG X J,HAN Z H,et al.Extraction,purification of Lycium barbarum polysaccharides and bioactivity of purified fraction[J].Carbohydrate Polymers,2011,86(1):136-141.[9]MAO F,XIAO B X,JIANG Z,et al.Anticancer effect of Lycium barbarum polysaccharides on colon cancer cells involves G0/G1phase arrest[J].Medical Oncology,2011,28(1):121-126.[10]LIANG B,JIN M L,LIU H B.Water-soluble polysaccharide from dried Lycium barbarum fruits:Isolation,structural features and antioxidant activity[J].Carbohydrate Polymers,2011,83(4):1947-1951.[11]周艳清,高晓东,王嘉昕,等.柴达木盆地灌区枸杞根系水分吸收来源研究[J].中国生态农业学报,2021,29(2):400-409.[12]杨荣金,舒俭民,李秀红,等.柴达木盆地生态环境保护战略与对策[J].科技导报,2017,35(6):115-119.[13]王现洁,孔凡晶,孔维刚,等.发展柴达木盆地盐湖农业的资源基础[J].科技导报,2017,35(10):93-98.[14]ORON G,DEMALACH Y,GILLERMAN L,et al.SW-soil and water:Effect of water salinity and irrigation technology on yield and quality of pears[J].Biosystems Engineering,2002,81(2):237-247.[15]刘元林,龙鸣,田晓静,等.枸杞总黄酮提取工艺优化及不同年份枸杞总黄酮含量测定[J].西北民族大学学报(自然科学版),2019,40(3):70-75.[16]杨超,马孝龙,曹文斌,等.硫酸铵分级沉淀枸杞蛋白质及含量测定[J].青海农林科技,2018(4):19-22.[17]庄红艳,姜振邦,潘广文,等.离子色谱法测定枸杞子和大枣中甜菜碱含量[J].中华中医药杂志,2017(9):401-403.[18]孙健,彭宏祥,董新红,等.甘薯中β-胡萝卜素HPLC测定方法分析[J].食品科技,2009,34(1):236-239.[19]卢书平.微咸水灌溉对梨和苹果生长,产量与果实品质的影响[D].秦皇岛:河北科技师范学院,2013.[20]张世卿,王兴鹏,徐崇志.微咸水滴灌对红枣果实品质的影响[J].北方园艺,2016(7):23-27.[21]郑九华,冯永军,于开芹,等.秸秆覆盖条件下微咸水灌溉棉花试验研究[J].农业工程学报,2002(4):26-31.[22]汪洋.非耕地温室微咸水灌溉番茄、西瓜试验研究[D].银川:宁夏大学,2014.

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Last Update: 2022-05-19