Acta Prataculturae Sinica ›› 2011, Vol. 20 ›› Issue (3): 268-278.
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ZHANG Tian-rui1,2, HUANGFU Chao-he1, YANG Dian-lin1, BAI Xiao-ming2
Received:
2010-10-22
Online:
2011-03-25
Published:
2011-06-20
CLC Number:
ZHANG Tian-rui, HUANGFU Chao-he, YANG Dian-lin, BAI Xiao-ming. Invasion mechanism and ecological management of exotic plant, Flaveria bidentis[J]. Acta Prataculturae Sinica, 2011, 20(3): 268-278.
[1] Sala O E, Chapin F S III, Armesto J J, et al. Global biodiversity scenarios for the year 2100[J]. Science, 2000, 287: 1770-1774. [2] Pimentel D, Lach L, Zuniga R, et al. Environmental and economic costs of nonindigenous species in the United States[J]. Bioscience, 2000, 50: 53-65. [3] 万方浩, 郭建英, 王德辉. 中国外来入侵生物的危害与管理对策[J]. 生物多样性, 2002, 10(1): 119-125. [4] Rout M E, Callaway R M. An invasive plant paradox[J]. Science, 2009, 324:734-735. [5] 高贤明, 唐廷贵, 梁宇郑, 等. 外来植物黄顶菊的入侵警报及防控对策[J]. 生物多样性, 2004, 12(2): 274-279. [6] 刘全儒. 中国菊科植物一新归化属——黄菊属[J]. 植物分类学报, 2005, 43(2): 178-180. [7] 李红岩, 高宝嘉, 南宫自艳, 等. 河北省黄顶菊4个地理种群遗传结构分析[J]. 应用与环境生物学报, 2010, 16(1): 67-71. [8] 皇甫超河, 王志勇, 杨殿林. 外来入侵种黄顶菊及其伴生植物光合特性初步研究[J]. 西北植物学报, 2009, 29(4): 781-788. [9] 皇甫超河, 王楠楠, 陈冬青, 等. 增施氮肥对黄顶菊与高丹草苗期竞争的影响[J]. 生态环境学报, 2010, 19(3): 672-678. [10] McKown A D, Moncalvo J M, Dengler N G. Phylogeny of Flaveria (Asteraceae) and inference of C4 photosynthesis evolution[J]. American Journal of Botany, 2005, 92: 1911-1928. [11] Kopriva S, Chu C C, Bauwe H. Molecular phylogeny of Flaveria as deduced from the analysis of nucleotide sequences encoding the H-protein of the glycine cleavage system[J]. Plant Cell & Environment, 1996, 19: 1028-1036. [12] Inderjit, Duke S O. Ecophysiological aspects of allelopathy[J]. Planta, 2003, 217: 529-539. [13] Huangfu C H, Zhang T R, Chen D Q, et al. Residual effects of invasive weed Yellowtop (Flaveria bidentis) on forage plants for ecological restoration[J]. Allelopathy Journal, 2011, 27(1): 55-64. [14] 欧巧明, 陈玉梁, 马丽荣, 等. 基于生态位理论的作物-杂草化感作用及其关系探讨[J]. 草业学报, 2010, 19(2): 235-240. [15] Callaway R M, Aschehoud E T. Invasive plants versus their new and old neighbors: A mechanism for exotic invasion[J]. Science, 2000, 290: 521-523. [16] Vivanco J M, Bais H P, Stermitz F R, et al. Biogeographical variation in community response to root allelochemistry: Novel weapons and exotic invasion[J]. Ecology Letters, 2004, 7(4): 285-292. [17] 鲁萍, 桑卫国, 马克平. 外来入侵种紫茎泽兰研究进展与展望[J]. 植物生态学报, 2005, 9(6): 1029-1037. [18] 周文杰, 李建明, 卢站根. 外来植物黄顶菊水浸提液对绿豆种子萌发及生长的影响[J]. 江苏农业科学, 2007, 4: 72-74. [19] Maighany F, Khalghani J, Baghestani M A, et al. Allelopathic potential of Trifolium resupinatum L. (Persian clover) and Trifolium alexandrium L. (Berseem clover)[J]. Weed Biology and Management, 2007, 7(3): 178-183. [20] 冯建永, 陶晡, 庞民好, 等. 黄顶菊化感物质释放途径的初步研究[J]. 河北农业大学学报, 2009, 32(1): 72-77. [21] 李香菊, 张米茹, 李咏军, 等. 黄顶菊水提取液对植物种子发芽及胚根伸长的化感作用研究[J]. 杂草科学, 2007, (4): 15-19. [22] 任艳萍, 江莎, 古松, 等. 外来植物黄顶菊根、茎、叶的化感作用初探[J]. 植物保护, 2009, 35(4): 36-40. [23] 芦站根. 衡水湖不同生境黄顶菊对绿豆种子化感作用研究[J]. 衡水学院学报, 2010, 12(1): 60-62. [24] 许文超, 徐娇, 陶哺, 等. 外来入侵植物黄顶菊的化感作用初步研究[J]. 河北农业大学学报, 2007, 30(6): 63-67. [25] 皇甫超河, 陈冬青, 王楠楠, 等. 外来入侵植物黄顶菊与四种牧草间化感互作[J]. 草业学报, 2010, 19(4): 22-32. [26] 皇甫超河, 张天瑞, 刘红梅, 等. 三种牧草植物对黄顶菊田间替代控制[J]. 生态学杂志, 2010, 29(8): 1511-1518. [27] 张风娟, 徐兴友, 陈凤敏, 等. 黄顶菊茎叶浸提液对白菜和水稻幼苗化感作用的初步研究[J]. 西北植物学报, 2008, 28(8): 1669-1674. [28] Xie Q Q, Wei Y, Zhang G L. Separation of flavonol glycosides from Flaveria bidentis (L.) Kuntze by high-speed counter-current chromatography[J]. Separation and Purification Technology, 2010, 72: 229-233. [29] Prentis P J, Wilson J R U, Dormontt E E, et al. Adaptive evolution in invasive species[J]. Trends in Plant Science, 2008, 13: 288-294. [30] 张天瑞, 皇甫超河, 白小明, 等. 不同生境黄顶菊种子萌发对干旱胁迫的响应[J]. 草原与草坪, 2010, 30(6): 79-83. [31] 芦站根, 周文杰. 温度、土壤水分和NaCl 对黄顶菊种子萌发的影响[J]. 植物生理学通讯, 2008, 44(5): 939-942. [32] 周君. 黄顶菊对其入侵生境的主要生态适应性分析[D]. 成都: 西南大学, 2010. [33] 张米茹, 李香菊. 光对入侵性植物黄顶菊种子萌发及植株生长的影响[J]. 植物保护, 2010, 36(1): 99-102. [34] 张风娟, 李继泉, 徐兴友, 等. 环境因子对黄顶菊种子萌发的影响[J]. 生态学报, 2009, 29(4): 1947-1953. [35] Dukes J S, Mooney H A. Does global change increase the success of biological invaders?[J]. Trends in Ecology and Evolution, 1999, 14: 135-139. [36] Silliman B R, Bertness M D. Shoreline development drives invasion of Phragmites australis and the loss of plant diversity on New England salt marshes[J]. Conservation Biology, 2004, 18: 1424-1434. [37] 王满莲, 冯玉龙. 紫茎泽兰和飞机草的形态、生物量分配和光合特性对氮营养的响应[J]. 植物生态学报, 2005, 29(5): 697-705. [38] 任艳萍, 古松, 江莎, 等. 外来植物黄顶菊营养器官解剖特征及其生态适应性[J]. 生态学杂志, 2009, 28(7): 1239-1244. [39] Reinhart K O, Callaway R M. Soil biota and invasive plants[J]. New Phytologist, 2006, 170: 445-457. [40] Eppstein M J, Molofsky J. Invasiveness in plant communities with feedbacks[J]. Ecology Letters, 2007, 10: 253-263. [41] Cuddington K, Hastings A. Invasive engineers[J]. Ecological Modelling, 2004, 178: 335-347. [42] Hawkes C V, Wren I F, Herman D J, et al. Plant invasion alters nitrogen cycling by modifying the soil nitrifying community[J]. Ecology Letters, 2005, 8: 976-985. [43] Kourtev P, Ehrenfeld J, Hoggblom M. Experimental analysis of the effect of exotic and native plant species on the structure and function of soil microbial communities[J]. Soil Biology & Biochemistry, 2003, 35: 895-905. [44] Saggar S, McIntosh P, Hedley C, et al. Changes in soil microbial biomass, metabolic quotient and organic matter turnover under Hieracium (H. pilosella L.)[J]. Biology and Fertility of Soils, 1999, 30: 232-238. [45] 陆建忠, 裘伟, 陈家宽, 等. 入侵种加拿大一枝黄花对土壤特性的影响[J]. 生物多样性, 2005, 13(4): 347-356. [46] 蒋智林, 刘万学, 万方浩, 等. 紫茎泽兰与本地植物群落根际土壤酶活性和土壤肥力的差异[J]. 农业环境科学学报, 2008, 27(2): 660-664. [47] 李钧敏, 钟章成, 董鸣. 田野菟丝子寄生对薇甘菊入侵群落土壤微生物生物量和酶活性的影响[J]. 生态学报, 2008, 28(2): 868-876. [48] 李会娜, 刘万学, 戴莲, 等. 紫茎泽兰入侵对土壤微生物、酶活性及肥力的影响[J]. 中国农业科学, 2009, 42(11): 3964-3971. [49] 张天瑞, 皇甫超河, 白小明, 等. 黄顶菊入侵对土壤养分和酶活性的影响[J]. 生态学杂志, 2010, 29(7): 1353-1358. [50] 李会娜. 三种入侵菊科植物(紫茎泽兰、豚草、黄顶菊)与土壤微生物的互作关系[D]. 沈阳: 沈阳农业大学, 2009. [51] Tarafdar J C, Marschner H. Phosphatase activity in the rhizosphere and hyphosphere of VA mycorrhizal wheat supplied with inorganic and organic phosphorous[J]. Soil Biology and Biochemistry, 1994, 26: 387-395. [52] Inderjit K R, Kaur S, Callaway R M. Impact of (±)-catechin on soil microbial communities[J]. Communicative & Integrative Biology, 2009, 2: 1-3. [53] Kourtev P S, Ehrenfeld J G, Hoggeblom M. Exotic plant species alter the microbial community structure and function in the soil[J]. Ecology, 2002, 83(11): 3152-3166. [54] 闫素丽, 皇甫超河, 李刚, 等. 四种替代植物对黄顶菊土壤细菌群落的影响[J]. 植物生态学报, 2011, 35(1): 45-55. [55] 何博, 贺学礼. 黄顶菊根围AM 真菌与土壤因子相关性研究[J]. 河北农业大学学报, 2010, 33(1): 34-38. [56] 李志华, 沈益新, 刘信宝, 等. 不同品种紫花苜蓿酚酸类化感物质含量的研究[J]. 草业学报, 2010, 19(2): 183-189. [57] DiTomaso J M. Invasive weeds in rangelands: Species, impacts, and management[J]. Weed Science, 2000, 48: 255-265. [58] Flory S L, Clay K. Invasive plant removal method determines native plant community responses[J]. Journal of Applied Ecology, 2009, 46: 434-442. [59] Guynn D C, Guynn S T, Wigle T B, et al. Herbicides and forest biodiversity-what do we know and where do we go from here[J]. Wildlife Society Bulletin, 2004, 32: 1085-1092. [60] Bakker J D, Wilson S D. Using ecological restoration to constrain biological invasion[J]. Journal of Applied Ecology, 2004, 41: 1058-1064. [61] Richardson D M, Pysek P. Plant invasions: Merging the concepts of species invasiveness and community invisibility[J]. Progress in Physical Geography, 2006, 30: 409-431. [62] Lugo A E. The apparent paradox of reestablishing species richness on degraded lands with tree monocultures[J]. Forest Ecology and Management, 1997, 99: 9-19. [63] Keddy P, Nielsen K, Weiher E, et al. Relative competitive performance of 63 species of terrestrial herbaceous plants[J]. Journal of Vegetable Science, 2002, 13: 5-16. [64] Loreau M, Hector A. Partitioning selection and complementarity in biodiversity experiments[J]. Nature, 2001, 412: 72-76. [65] Naeem S, Knops J M H, Tilman D, et al. Plant diversity increases resistance to invasion in the absence of covarying extrinsic factors[J]. Oikos, 2000, 91: 97-108. [66] Sher A A, Marshall D L, Taylor J P. Establishment patterns of native Populus and Salix in the presence of invasive nonnative Tamarix[J]. Ecological Applications, 2002, 12: 760-772. [67] Smith M D, Wilcox J C, Kelly T, et al. Dominance not richness determines invasibility of tallgrass prairie[J]. Oikos, 2004, 106: 253-262. [68] Pokorny M L, Sheley R L, Zabinski C A, et al. Plant functional group diversity as a mechanism for invasion resistance[J]. Restoration Ecology, 2005, 13: 448-459. [69] Dukes J. Biodiversity and invisibility in grassland microcosms[J]. Oecologia, 2001, 126: 563-568. [70] Sheley R L, Carpinelli M F. Creating weed-resistant plant communities using niche-differentiated nonnative species[J]. Rangeland Ecology & Management, 2005, 58: 480-488. [71] 马杰, 易津, 皇甫超河, 等. 入侵植物黄顶菊与3种牧草竞争效应研究[J]. 西北植物学报, 2010, 30(5): 1020-1028. [72] Seabloom E W, Harpole W S, Reichman O J, et al. Invasion, competitive dominance, and resource use by exotic and native California grassland species[J]. Proceedings of the National Academy of Sciences of the United States of America, 2003, 100: 13384-13389. [73] Moyes A B, Witter M S, Gamon J A. Restoration of native perennials in a California annual grassland after prescribed spring burning and solarization[J]. Restoration Ecology, 2005, 13: 659-666. [74] Huddleston R T, Young T P. Spacing and competition between planted grass plugs and preexisting perennial grasses in a restoration site in Oregon[J]. Restoration Ecology, 2004, 12: 546-551. [75] D’Antonio C M, Hughes R F, Vitousek P M. Factors influencing dynamics of invasive C4 grasses in a Hawaiian woodland: Role of resource competition and priority effects[J]. Ecology, 2001, 82: 89-104. [76] Corbin J D, D’Antonio C M. Competition between native perennial and exotic annual grasses: Implications for an historical invasion[J]. Ecology, 2004, 85: 1273-1283. [77] 钟宇, 张健, 刘泉波, 等. 巨桉人工林草本层主要种群的生态位分析[J]. 草业学报, 2010, 19(4): 16-21. [78] Davies K W, Sheley R L. A conceptual framework for preventing the spatial dispersal of invasive plants[J]. Weed Science, 2007, 55: 178-184. [79] Dunlop A, Wilson J C, Mackey A P. The potential geographic distribution of the invasive weed Senna obtusifolia in Australia[J]. Weed Research, 2006, 46: 404-413. [80] Ehrenfeld J G, Kourtev P, Huang W Z. Changes in soil functions following invasions of exotic understory plants in deciduous forests[J]. Ecology Applications, 2001, 11: 1287-1300. [81] Wolfe B E, Klironomos J N. Breaking new ground: Soil communities and exotic plant invasion[J]. Bioscience, 2005, 55: 477-487. [82] Hierro J L, Maron J L, Callaway R M, et al. A biogeographical approach to plant invasions: The importance of studying exotics in their introduced and native range[J]. Journal of Ecology, 2005, 93: 5-15. [83] Rejmánek M, Richardson D M, Higgins S I, et al. Ecology of invasive plants: State of the art[A]. In: Moody H A, McNeely J A, Neville L, et al. Invasive Alien Species: A New Synthesis[M]. Washington, D C: Island Press, 2005: 104-162. [84] Milne R I, Abbott R J. Origin and evolution of invasive naturalized material of Rhododendron ponticum L. in the British Isles[J]. Molecular Ecology, 2000, 9: 541-556. [85] Sol D, Vila M, Kuhn I. The comparative analysis of historical alien introductions[J]. Biological Invasions, 2008, 10: 1119-1129. [86] Stewart C N, Tranel P J, Horvath D P, et al. Evolution of weediness and invasiveness: Charting the course for weed genomics[J]. Weed Science, 2009, 57: 451-462. [87] Broussalis A M, Ferraro G E, Martino V S. Argentine plants as potential source of insecticidal compounds[J]. Journal of Ethnopharmacology, 1999, 67: 219-233. [88] Guglielmone H A, Agnese A M, Núnez Montoya S C, et al. Anticoagulant effect and action mechanism of sulphated flavonoids from Flaveria bidentis[J]. Thrombosis Research, 2002, 105(2): 183-188. |
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