[1] 陈宝明,彭少麟,吴秀平,等. 近20年外来生物入侵危害与风险评估文献计量分析[J]. 生态学报,2016,36(20):6677-6685 [2] 宋晓丰,叶桂峰. 我国外来生物入侵的现状、危害及防治研究[J]. 生物学通报,2008(7):24-26 [3] ZHANG M,SCHWARZ C,LIN W P,et al. A new perspective on the impacts of Spartina alterniflora invasion on Chinese wetlands in the context of climate change:A case study of the Jiuduansha Shoals,Yangtze Estuary[J]. Science of The Total Environment,2023(868):161477 [4] MATSUDA R,YAMADA K,HAYASAKA D,et al. Effects of salinity,temperature,and immersion conditions on seed germination of invasive Spartina alterniflora Loisel (smooth cordgrass) in Japan[J]. Regional Studies in Marine Science,2023(57):102738 [5] 栾兆擎,闫丹丹,薛媛媛,等. 滨海湿地互花米草入侵的生态水文学机制研究进展[J]. 农业资源与环境学报,2020,37(4):469-476 [6] LIU J K,YAN G X,PAN Y Y,et al. Economical energy allocation for the landward invasion of Spartina alterniflora in estuaries in the Yellow River Delta,east China[J]. Ecological Indicators,2023(146):109770 [7] 郑浩,刘明月,杨晓芜,等. 中国大陆沿海地区互花米草生长特征及其对环境因子的响应[J]. 草地学报,2022,30(11):3026-3034 [8] MAO D H,LIU M Y,WANG Z M,et al. Rapid Invasion of Spartina Alterniflora in the Coastal Zone of Mainland China:Spatiotemporal Patterns and Human Prevention[J]. Sensors,2019,19(10):2308 [9] LIU M Y,MAO D H,WANG Z M,et al. Rapid invasion of Spartina alterniflora in the coastal zone of China's mainland:New observations from Landsat OLI images[J]. Remote Sensing,2018,10(12):1933 [10] ZHU W Q,REN G B,WANG J P,et al. Monitoring the invasive plant Spartina alterniflora in Jiangsu coastal wetland using MRCNN and long-time series Landsat Data[J]. Remote Sensing,2022,14(11):2630 [11] HUANG Y T,LIU Z,ZHENG G H,et al. Identification of Spartina alterniflora habitat expansion in a Suaeda salsa dominated coastal wetlands[J]. Ecological Indicators,2022(145):109704 [12] 汪钰明,高新贻,谢世君,等. 互花米草入侵对红树林底栖甲壳动物和鱼类功能群及生态位的影响[J]. 应用生态学报,2022,33(11):3016-3026 [13] HAN X R,WANG Y M,KE Y H,et al. Phenological heterogeneities of invasive Spartina alterniflora salt marshes revealed by high-spatial-resolution satellite imagery[J]. Ecological Indicators,2022(144):109492 [14] ZHAO X N,ZHENG Y T,WANG W,et al. Habitat suitability evaluation of different forest species in Lvliang mountain by combining prior knowledge and MaxEnt model[J]. Forests,2023,14(2):438 [15] CARPENTER G,GILLISON A N,WINTER J. DOMAIN:A flexible modelling procedure for mapping potential distributions of plants and animals[J]. Biodiversity and Conservation,1993,2(6):667-680 [16] CHUN J H,LEE C B,YOO S M. Shifts of geographic distribution of Pinus koraiensis based on climate change scenarios and GARP Model[J]. Korean Journal of Agricultural and Forest Meteorology,2015,17(4):348-357 [17] QIN Z,ZHANG J E,DITOMMASO A,et al. Predicting invasions of Wedelia trilobata (L.) Hitchc. with Maxent and GARP models[J]. Journal of Plant Research,2015,128(5):763-775 [18] HE K,FAN C J,ZHONG M C,ET AL. Evaluation of habitat suitability for asian elephants in Sipsongpanna under climate change by coupling multi-Source remote sensing products with MaxEnt model[J]. Remote Sensing,2023,15(4):1047 [19] WAN G Z,WANG L,JIN L,et al. Evaluation of environmental factors affecting the quality of Codonopsis pilosula based on chromatographic fingerprint and Maxent model[J]. Industrial Crops and Products,2021(170):113783 [20] HERNANDEZ P A,GRAHAM C H,MASTER L L,et al. The effect of sample size and species characteristics on performance of different species distribution modeling methods[J]. Ecography,2006,29(5):773-785 [21] 贺一鸣,王驰,王海涛,等. 气候变化对蒙古莸潜在适生区的影响[J]. 草地学报,2023,31(2):540-550 [22] 张静涵,张轩波,沈美亚,等. 互花米草在中国的潜在生存区域预测[J]. 湿地科学与管理,2020,16(3):42-46 [23] YUAN Y D,TANG X G,LIU M Y,et al. Species distribution models of the Spartina alterniflora loisel in its origin and invasive country reveal an ecological niche shift[J]. Frontiers in Plant Science,2021(12):738769 [24] 李丽鹤,刘会玉,林振山,等. 基于MAXENT和ZONATION的加拿大一枝黄花入侵重点监控区确定[J]. 生态学报,2017,37(9):3124-3132 [25] 闫振宁,梅宝玲,张桂萍,等. 高程对盐沼湿地互花米草生长与扩散的影响[J]. 生态环境学报,2021,30(6):1183-1191 [26] 姚蒙蒙,郭琛文,赫凤彩,等. 晋北盐碱草地土壤化学计量特征及其与植物多样性的关系[J]. 草地学报,2021,29(12):2800-2807 [27] 张晋磊,袁琳,曹浩冰,等. 潮间带盐沼植物种子及实生苗漂浮起动临界剪切应力研究[J]. 生态学报,2022,42(5):1821-1829 [28] 吴俊彦,肖京国,成俊,等. 中国沿海潮汐类型分布特点[C]//中国测绘学会九届四次理事会暨2008年学术年会论文集. 广西:海军出版社,2008:194-199 [29] 周云轩,田波,黄颖,等. 我国海岸带湿地生态系统退化成因及其对策[J]. 中国科学院院刊,2016,31(10):1157-1166 [30] 张丹华,胡远满,刘淼. 基于Maxent生态位模型的互花米草在我国沿海的潜在分布[J]. 应用生态学报,2019,30(7):2329-2337 [31] 刘金雪. 气候变化对外来入侵植物互花米草潜在分布区的影响[D]. 南京:南京师范大学,2016:15-16 [32] AOUINTI H,MOUTAHIR H,TOUHAMI I,et al. Observed and predicted geographic distribution of acer monspessulanum L. using the MaxEnt model in the context of climate change[J]. Forests,2022,13(12):2049 [33] 杜倩,魏晨辉,梁陈涛,等. 中国东北地区12个建群树种对气候变化响应的Maxent模型分析[J]. 生态学报,2022(23):1-14 [34] 王艳君,高泰,石娟. 基于MaxEnt模型对舞毒蛾全球适生区的预测及分析[J]. 北京林业大学学报,2021,43(9):59-69 [35] HANLEY J A,MCNEIL B J. The meaning and use of the area under a receiver operating characteristic (ROC) curve[J]. Radiology,1982,143(1):29-36 [36] 陈思明. 互花米草(Spartina alterniflora)在中国沿海的潜在分布及其对气候变化的响应[J]. 生态与农村环境学报,2021,37(12):1575-1585 [37] 刘明月. 中国滨海湿地互花米草入侵遥感监测及变化分析[D]. 吉林:中国科学院大学(中国科学院东北地理与农业生态研究所),2018:76-87 [38] 苗青,翟强,徐树军,等. 关于互花米草在辽宁分布的商榷[J]. 植物检疫,2022,36(4):13-17 [39] 赵志远,袁琳,李伟,等. 生境异质性及源株密度对互花米草入侵力的影响[J]. 生态学报,2018,38(18):6632-6641 [40] 赵相健,赵彩云,柳晓燕,等. 不同纬度地区互花米草生长性状及适应性研究[J]. 生态科学,2015,34(1):119-128 [41] 刘远瞻,徐晓,刘浩,等. 中国滨海盐沼互花米草和芦苇叶片功能性状的纬度梯度变异[J]. 复旦学报(自然科学版),2020,59(4):381-389 [42] 汪秀岩,周宇鹏,薛雨霏,等. 高低纬度种源互花米草种子萌发特性及其对温度的响应[J]. 生态学杂志,2021,40(9):2763-2772 [43] 祝振昌,张利权,肖德荣. 上海崇明东滩互花米草种子产量及其萌发对温度的响应[J]. 生态学报,2011,31(6):1574-1581 [44] STRIBLING J M. The relative importance of sulfate availability in the growth of Spartina alterniflora and Spartina cynosuroides[J]. Aquatic Botany,1997,56(2):131-143 [45] 宋新丹,陈斌斌,马增岭,等. 盐度对羊栖菜(Sargassum fusiforme)幼体光合特性的影响[J]. 浙江农业学报,2020,32(9):1634-1644 [46] LI X P,MAO Y M,LIU X C. Flue gas desulfurization gypsum application for enhancing the desalination of reclaimed tidal lands[J]. Ecological Engineering,2015(82):566-570 [47] TRIPATHI D K,SINGH V P,CHAUHAN D,et al. Plant life under changing environment:responses and management[M]. USA:Academic Press,2020:47-76 [48] 吕芝香,刘珍奇,仲崇信. 互花米草幼苗在不同浓度NaCl溶液中的生长和溶质的积累[J]. 武汉植物学研究,1992(2):117-122 [49] 龚海波. 滨海湿地外来入侵植物不同空间尺度潜在分布的影响因素分析及其预测[D]. 南京:南京师范大学,2019:26-28 [50] 石福臣,鲍芳. 盐和温度胁迫对外来种互花米草(Spartina alterniflora)生理生态特性的影响[J]. 生态学报,2007(7):2733-2741 |