[1]庞振培,李红梅,刘季平,等.黄鹌菜叶提取液制备纳米银及其对百合切花抗菌作用[J].北方园艺,2020,44(14):103-109.[doi:10.11937/bfyy.20193947]
 PANG Zhenpei,LI Hongmei,LIU Jiping,et al.Nano-silver Preparation Using Leaf Extracts of Youngia japonica and Its Inhibitory Effects on Growth of Bacteria From Cut Lily Stem-ends[J].Northern Horticulture,2020,44(14):103-109.[doi:10.11937/bfyy.20193947]
点击复制

黄鹌菜叶提取液制备纳米银及其对百合切花抗菌作用

参考文献/References:

[1]KUMAR A,DALAL J,DAHIYA S,et al.In situ decoration of silver nanoparticles on single-walled carbon nanotubes by microwave irradiation for enhanced and durable anti-bacterial finishing on cotton fabric[J].Ceramics International,2019,45(1):1011-1019.[2]FRANCIS S,JOSEPH S,KOSHY E P,et al.Microwave assisted green synthesis of silver nanoparticles using leaf extract of Elephantopus scaber and its environmental and biological applications[J].Artificial Cells,Nanomedicine,and Biotechnology,2018,46(4):795-804.[3]IDINSK J,REINPRECHT L,NOSL E.Antibacterial efficiency of silver and zinc-oxide nanoparticles in acrylate coating for surface treatment of wooden composites[J].Wood Research,2018,63(3):365-372.[4]刘季平,张昭其,李红梅,等.纳米银处理减轻香石竹切花细菌性茎堵塞的研究[J].园艺学报,2014,41(1):131-138.[5]刘季平,张昭其,李红梅,等.纳米银和硫代硫酸银预处理对减轻蜡花切花乙烯伤害的研究[J].北方园艺,2014(12):112-115.[6]TRAN Q H,LE A T.Silver nanoparticles:Synthesis,properties,toxicology,applications and perspectives[J].Advances in Natural Sciences:Nanoscience and Nanotechnology,2013,4(3):033001.[7]LIU J,HE S,ZHANG Z,et al.Nano-silver pulse treatments inhibit stem-end bacteria on cut Gerbera cv.Ruikou flowers[J].Postharvest Biology and Technology,2009,54(1):59-62.[8]李红梅,林燕飞,刘昌镇,等.纳米银预处理对麝香百合切花的保鲜效应研究[J].北方园艺,2012(8):166-169.[9]黄新敏,林启灵,冼锡金,等.纳米银对瓶插月季切花乙烯作用的拮抗效应[J].园艺学报,2012,39(4):735-742.[10]LIN X,LI H,LIN S,et al.Improving the postharvest performance of cut spray ‘Prince’ carnations by vase treatments with nano-silver and sucrose[J].The Journal of Horticultural Science and Biotechnology,2019,94(4):513-521.[11]LIU J,ZHANG Z,LI H,et al.Alleviation of effects of exogenous ethylene on cut ‘Master’ carnation flowers with nano-silver and silver thiosulfate[J].Postharvest Biology and Technology,2018,143:86-91.[12]LI H,LI H,LIU J,et al.Nano-silver treatments reduced bacterial colonization and biofilm formation at the stem-ends of cut gladiolus ‘Eerde’ spikes[J].Postharvest Biology and Technology,2017,123:102-111.[13]LIN S,LI H,XIAN X,et al.Nano-silver pretreatment delays wilting of cut gardenia foliage by inhibiting bacterial xylem blockage[J].Scientia Horticulturae,2019,246:791-796.[14]LI K,ZHANG F S.A novel approach for preparing silver nanoparticles under electron beam irradiation[J].Journal of Nanoparticle Research,2010,12(4):1423-1428.[15]TANG X,GUO D,JIANG S,et al.Facile preparation of nanosilver particles with excellent antimicrobial activity via release of ionic silver[J].Journal of Nanoscience and Nanotechnology,2017,17(2):1046-1052.[16]ARSHAD M,SHAHEEN M A,QAYYUM A,et al.Bioinspired synthesis of silver nanoparticles from Morus alba and their photocatalytic degradation and antibacterial activity assessment[J].Pure and Applied Biology,2018,7(4):1252-1260.[17]曾琦斐,李绍国,谭荣喜,等.纳米银的制备及其应用研究进展[J].应用化工,2014(5):919-922.[18]WEI L,LU J,XU H,et al.Silver nanoparticles:Synthesis,properties,and therapeutic applications[J].Drug Discovery Today,2015,20(5):595-601.[19]RAFIQUE M,SADAF I,RAFIQUE M S,et al.A review on green synthesis of silver nanoparticles and their applications[J].Artificial Cells,Nanomedicine,and Biotechnology,2017,45(7):1272-1291.[20]叶伟杰,陈楷航,蔡少龄,等.纳米银的合成及其抗菌应用研究进展[J].材料工程,2017,45(9):22-30.[21]PANDURANGAN P,SAHADEVEN M,SUNKAR S,et al.Comparative analysis of biochemical compounds of leaf,flower and fruit of Couroupita guianensis and synthesis of silver nanoparticles[J].Pharmacognosy Journal,2018,10(2):315-323.[22]SHARMA P,PANT S,RAI S,et al.Green synthesis of silver nanoparticle capped with Allium cepa and their catalytic reduction of textile dyes:An ecofriendly approach[J].Journal of Polymers and the Environment,2018,26(5):1795-1803.[23]ONITSUKA S,HAMADA T,OKAMURA H.Preparation of antimicrobial gold and silver nanoparticles from tea leaf extracts[J].Colloids and Surfaces B:Biointerfaces,2019,173:242-248.[24]AGNIHOTRI S,SILLU D,SHARMA G,et al.Photocatalytic and antibacterial potential of silver nanoparticles derived from pineapple waste:Process optimization and modeling kinetics for dye removal[J].Applied Nanoscience,2018,8(8):2077-2092.[25]中国科学院中国植物志编辑委员会.中国植物志(八十卷)[M].北京:科学出版社,1997.[26]OOI L S M,WANG H,HE Z,et al.Antiviral activities of purified compounds from Youngia japonica (L.) DC (Asteraceae,Compositae)[J].Journal of Ethnopharmacology,2006,106(2):187-191.[27]谢青兰.民族中草药黄鹌菜化学成分与抗氧化活性的研究[D].成都:西南交通大学,2006.[28]YAE E,YAHARA S,ELAASR M,et al.Studies on the constituents of whole plants of Youngia japonica[J].Chemical and Pharmaceutical Bulletin,2009,57(7):719-723.[29]NOOTSUWAN N,WATTANATHANA W,JONGRUNGRUANGCHOK S,et al.Development of novel hybrid materials from polylactic acid and nano-silver coated carbon black with distinct antimicrobial and electrical properties[J].Journal of Polymer Research,2018,25(4):90.[30]MANDAL D,DASH S K,DAS B,et al.Bio-fabricated silver nanoparticles preferentially targets Gram positive depending on cell surface charge[J].Biomedicine & Pharmacotherapy,2016,83:548-558.[31]NARAYANAN K B,PARK H H.Antifungal activity of silver nanoparticles synthesized using turnip leaf extract (Brassica rapa L.) against wood rotting pathogens[J].European Journal of Plant Pathology,2014,140(2):185-192.[32]DEHGHANIZADE S,ARASTEH J,MIRZAIE A.Green synthesis of silver nanoparticles using Anthemis atropatana extract:Characterization and in vitro biological activities[J].Artificial Cells,Nanomedicine,and Biotechnology,2018,46(1):160-168.[33]SINGH H,DU J,YI T H.Green and rapid synthesis of silver nanoparticles using Borago officinalis leaf extract:Anticancer and antibacterial activities[J].Artificial Cells,Nanomedicine,and Biotechnology,2017,45(7):1310-1316.[34]KOKILA T,RAMESH P S,GEETHA D.Biosynthesis of AgNPs using Carica papaya peel extract and evaluation of its antioxidant and antimicrobial activities[J].Ecotoxicology and Environmental Safety,2016,134:467-473.

相似文献/References:

[1]刘季平,张昭其,李红梅,等.纳米银和硫代硫酸银预处理对减轻蜡花切花乙烯伤害的研究[J].北方园艺,2014,38(12):112.
 LIU Ji-ping,ZHANG Zhao-qi,LI Hong-mei,et al.Pretreatments With Nano-silver and STS Alleviated the Harmful Effect of Exogenous Ethylene on Cut Waxflowers[J].Northern Horticulture,2014,38(14):112.
[2]程桂平,黎婉萍,李芳,等.纳米银杀菌剂对香石竹切花衰老的生理效应[J].北方园艺,2012,36(23):159.
 CHENG Gui-ping,LI Wan-ping,LI Fang,et al.Physiological Effects of Nano-silver Treatment on Senescence of Cut Carnation Flowers[J].Northern Horticulture,2012,36(14):159.
[3]李红梅,林燕飞,刘昌镇,等.纳米银预处理对麝香百合切花的保鲜效应研究[J].北方园艺,2012,36(08):166.
 LI Hong-mei,LIN Yan-fei,LIU Chang-zhen,et al.Freshness-preserving Effects of Nano-silver Pre-treatments on Cut Lily Flowers[J].Northern Horticulture,2012,36(14):166.

备注/Memo

第一作者简介:庞振培(1995-),男,广东湛江人,研士研究生,研究方向为观赏植物生物学。E-mail:pangzhku@126.com.责任作者:何生根(1965-),男,湖南永兴人,博士,教授,现主要从事观赏植物采后生物学等研究工作。E-mail:howtoroot@163.com.基金项目:国家自然科学基金资助项目(31672180,31972439);广东省现代农业产业技术体系创新团队建设专项资金资助项目(2019KJ140)。收稿日期:2020-01-11

更新日期/Last Update: 2020-09-15