[1]贺俊英,徐萌萌,张子义,等.入侵植物牛膝菊(Galinsogaparviflora Cav.)对植物多样性的影响[J].干旱区资源与环境,2019,33(07):147-151.
[2]李振宇,解焱。中国外来入侵种[M].北京:中国林业出版社,2002.
[3]齐淑艳,段继鹏,郭婷婷,等.入侵植物牛膝菊种子萌发对PEG模拟干旱胁迫的响应[J].生态学杂志,2014,33(05):1190-1194.
[4]冯建孟,董晓东,徐成东,等.中国外来入侵植物的风险评价及空间分布格局[J].西南大学学报(自然科学版),2011,33(02):57-63.
[5]王德艳,张大才,胡世俊,等.云南菊科入侵植物入侵机制及其利用研究进展[J].生物安全学报,2017,26(04):259-265.
[6]毕晓琼,赵斯,王林,等.气候变化对牛膝菊在中国潜在适生区的影响[J].陕西师范大学学报(自然科学版),2019,47(02):70-75.
[7]中周科学院中国植物志编辑委员会.中国植物志[M].北京:科学出版社,1979.
[8]徐萌萌,贺俊英.牛膝菊在呼和浩特市的分布和生物学特性[J].内蒙古林业科技,2018,44(04):39-42.
[9]Magdalena Kucewicz,Ewa Gojlo.Influence of achene heteromor-phism on life-cycle traits in the annual weed gallant soldier (Galin-soga parviflora Cav.)[J].Flora,2014,209 (11):649-654.
[10]彭文君,朱茜,李岳,等.温湿度对牛膝菊和红花月见草种子萌发的影响[J].中国农学通报,2012,28(01):158-161.
[11]齐淑艳,董晶晶,郭婷婷,等.温度对入侵植物牛膝菊种子萌发的影响[J].沈阳大学学报(自然科学版),2014,26(02):87-90.
[12]陶波,董玉梅,汤东生.入侵杂草牛膝菊和粗毛牛膝菊种子成熟与萌发研究[J].湖北农业科学,2013,52(02):331-333.
[13]徐萌萌.牛膝菊的入侵生物学特性及其化学防除[D].呼和浩特:内蒙古师范大学,2019.
[14]董晶晶,齐淑艳,姚静,等.不同土壤水分对牛膝菊生长及光合特性的影响[J].湖北农业科学,2015,54(12):2910-2926.
[15]齐淑艳,昌恩梓,董晶晶,等.入侵植物牛膝菊与白车轴草的竞争效应[J].广东农业科学,2014,41(01):141-145.
[16]谢媛怡,陈丽娜,花敏瑞,等.3种恶性杂草对荞麦化感潜力的比较研究[J].四川师范大学学报(自然科学版),2021,44(06):822-828.
[17]Mo id zen K,Barabasz-Krasny B,Zandi P,et al.Influence ofallelopathic activity of Galinsoga parviflora Cav.and Oxalis fontanaBunge on the early growth stages of cultivars Raphanus sativus L.var.radicula Pers [J].Biologia,2018,73 (12):1187-1195.
[18]黄素,李小琼,周健,等.辣子草水浸提液对蚕豆幼苗生长和光合特性的化感效应[J].西南农业学报,2017,30(03):542-546.
[19]汪小飞,钱倩媛,汪传友,等.牛膝菊对黄山乡土植物柔毛水杨梅的化感作用[J].南京林业大学学报(自然科学版),2012,36(04):145-148.
[20]姚静,齐淑艳,李晓春,等.入侵植物牛膝菊与白车轴草之间化感互作的研究[J].广东农业科学,2015,42(10):70-75.
[21]周颖,刘杰,闫晓慧,等.模拟昆虫取食对牛膝菊防御特征的影响[J].应用生态学报,2022,33(03):808-812.
[22]刘杰,闫晓慧,胡世俊.模拟昆虫取食对两种入侵植物生长繁殖的影响[J].重庆师范大学学报(自然科学版),2019,36(06):119-124.
[23]高凯悦,林耀光,杨吉刚,等.入侵植物辣子草的生态适应性研究[J].广东农业科学,2015,42(17):76-81.
[24]贺俊英,徐萌萌,张子义,等.入侵植物牛膝菊(Galinsogaparviflora Cav.)对植物多样性的影响[J].干旱区资源与环境,2019,33(07):147-151.
[25]Shen S,Xu G,Li D,et al.Potential use of sweet potato (Ipo-moea batatas (L.Lam.to suppress three invasive plant speciesin agroecosystems (Ageratum conyzoides L,Bidens pilosa L,andGalinsoga parviflora Cav)[J].Agronomy,2019,9 (6):318.
[26]Haliniarz M,Chojnacka S,Rozan ska-Boczula M,et al.Gali-nsoga parviflora Response to Different Application Rates of the Her-bicide Chwastox Turbo 340 SL in Spring Barley J].Acta Agrobo-tanica,2020,73(3).
[27]兰献敏,叶照春,冉海燕,等.胜红蓟与辣子草对25%砜密磺隆水分散粒剂的耐药性[J].农技服务,2019,36(05):39-43.
[28]Li H,Wang J,Lin L,et al.Effects of mutual grafting on cadmi-um accumulation characteristics of first post-generations of Bidenspilosa L.and Galinsoga parviflora Cav J].Environmental Sci-ence and Pollution Research,2019,26 (32):33228-33235.
[29]黄科文,姚欢,马倩倩,等.相互嫁接对两种生态型牛膝菊后代生长及镉积累的影响[J].中国土壤与肥料,2020(05):207-212.
[30]黄科文,林立金,石军,等.混种牛膝菊嫁接后代对生菜镉积累的影响[J].土壤,2020,52(01):127-133.
[31]胡容平,石军,黄廷友,等.土施镉超富集植物秸秆对镉胁迫牛膝菊光合特性的影响[J].湖北农业科学,2016,55(02):393-397.
[32]Govindarajan M,Vaseeharan B,Alharbi N S,et al.High effica-cy of (Z)-y-bisabolene from the essential oil of Galinsoga parvi-flora Asteraceae)as larvicide and oviposition deterrent against six mosquito vectors [J].Environmental Science and PollutionResearch,2018,25(11):10555-10566.
[33]Studzinska-Sroka E,Dudek-Makuch M,Chanaj-Kaczmarek J,et al.Anti-inflammatory Activity and Phytochemical Profile of Ga-linsoga Parviflora Cav [J].Molecules,2018,23 (9):2133.
[34]Katiyar S,Saxena A,Darunde M S D.In-vitro anti-arthritic andanti-platelet activity of Galinsoga parviflora Linn [J].Journal ofPharmacognosy and Phytochemistry,2020,9 (1):2197-2199.
[35]Parzonko A,Kiss A K.Caffeic acid derivatives isolated from Gali-nsoga parviflora herb protected human dermal fibroblasts from UVA-radiation [J].Phytomedicine,2019,57:215-222.
[36]Wanakai S I,Kareru P G,Makhanu D S,et al.Catalytic degra-dation of methylene blue by iron nanoparticles synthesized using Ga-linsoga parviflora,Conyza bonariensis and Bidens pilosa leaf ex-tracts [J].SN Applied Sciences,2019,1 (10):1-10. |