Niche shifts undermine the prediction performance of species distribution models: estimating potentially suitable areas for Myriophyllum aquaticum at the global scale
文献类型: 外文期刊
作者: Xian, Xiaoqing 1 ; Zhao, Haoxiang 1 ; Humair, Laureline 2 ; Yang, Nianwan 1 ; Li, Jianyu 4 ; Weyl, Philip 2 ; Liu, Wan-xue 1 ;
作者机构: 1.Chinese Acad Agr Sci, State Key Lab Biol Plant Dis & Insect Pests, Inst Plant Protect, Beijing 100193, Peoples R China
2.CABI Switzerland, CH-2800 Delemont, Switzerland
3.Chinese Acad Agr Sci, Inst Western Agr, Changji 831100, Peoples R China
4.Fujian Acad Agr Sci, Inst Plant Protect, Fuzhou 350013, Peoples R China
关键词: Ensemble model; Invasive aquatic plant; Myriophyllum aquaticum; Niche; Potentially suitable area
期刊名称:GLOBAL ECOLOGY AND CONSERVATION ( 影响因子:4.0; 五年影响因子:4.3 )
ISSN:
年卷期: 2023 年 48 卷
页码:
收录情况: SCI
摘要: Invasive alien species (IAS) can undergo niche shifts upon establishment in novel environments that differ from their native ranges. The validity of species distribution models (SDMs) depends on the underlying assumption of niche conservatism that IAS can only successfully establish populations in environments that closely resemble their native regions. This has led us to examine how ecologists can use SDMs to predict potentially suitable areas for invasive alien species in the context of niche shifts. Here, we compared the niches of Myriophyllum aquaticum in its native and invasive ranges to quantify the shifts that occurred during its global invasion using the centroid shift, overlap, unfilling, and expansion (COUE) framework. We also aimed to investigate the effects of niche shift on the prediction performance of SDMs. The SDMs were calibrated using data from three different sources: the native range, the invasive range, and a combination of both. The study examined how these different data sources influenced the accuracy of the SDM predictions. The findings indicated the niche expansion between the invasive and native ranges. The invasive (based on the occurrence data of invasive ranges) and global (based on the occurrence data of global ranges) models underestimated the potentially suitable areas (PSAs) of M. aquaticum in the Southern Hemisphere. The native model (based on the occurrence data of native ranges) underestimated the PSAs of M. aquaticum in the Northern Hemisphere. We combined the results of the invasive and native range models to estimate the global PSAs of M. aquaticum, addressing the predictive limitations of a single model in a complementary form. The PSAs of M. aquaticum were predominantly distributed in eastern Asia, western Europe, southern North America, southern South America, and southern Oceania and expanded into higher latitudes under future climate scenarios. Our study has applied a simple yet effective method for predicting the global PSAs of M. aquaticum given niche shifts, which confirmed the observations of the previous studies and provided a theoretical basis for the early warning, prevention and control of M. aquaticum.
- 相关文献
作者其他论文 更多>>
-
Thermal acclimation uncovers a simple genetic basis of adaptation to high temperature in a cosmopolitan pest
作者:You, Shijun;Lei, Gaoke;Zhou, Huiling;Li, Jianyu;Chen, Shaoping;Huang, Jieling;Vasseur, Liette;Gurr, Geoff M.;You, Minsheng;Chen, Yanting;You, Shijun;Lei, Gaoke;Zhou, Huiling;Li, Jianyu;Chen, Shaoping;Huang, Jieling;Vasseur, Liette;Gurr, Geoff M.;You, Minsheng;Chen, Yanting;You, Shijun;Lei, Gaoke;Zhou, Huiling;Li, Jianyu;Chen, Shaoping;Huang, Jieling;You, Minsheng;Chen, Yanting;Vasseur, Liette;Gurr, Geoff M.
关键词:
-
Tuta absoluta management in China: progress and prospects
作者:Wang, Ming-hui;Ismoilov, Khasan;Zhang, Li-yun;Han, Peng;Wang, Ming-hui;Ismoilov, Khasan;Han, Peng;Liu, Wan-xue;Zhang, Yibo;Bai, Ming;Bai, Ming;Bai, Ming;Bai, Xiao-shuan;Chen, Bin;Gui, Fu-rong;Zhang, Xiao-ming;Chen, Haoliang;Chen, Hong-song;Dong, Yong-cheng;Fang, Kui;Huang, Guo-Hua;Jiang, Chun-mei;Jiang, Hong-bo;Jiang, Hong-bo;Li, Xiao-wei;Lu, Yao-bin;Luo, Chen;Luo, Chen;Lu, Zhao-zhi;Lu, Yao-bin;Ma, De-ying;Pu, De-qiang;Qu, Yanyan;Sang, Wen;Song, Li-mei;Sun, Xiao;Sun, Yuan-xing;Wan, Bin;Wang, Xin-pu;Yang, Wen-jia;Yang, Xue-qing;Yang, Xue-qing;Yao, Feng-Luan;Ye, Zheng-pei;Zhang, Ye;Zhu, Wen-ya;Zhao, Chen-chen;Zhou, Qiong;Zhou, Wen-wu;Rodriguez-Saona, Cesar;Biondi, Antonio;Jaworski, Coline C.;Desneux, Nicolas
关键词:biological invasion; insect pests; IPM; multi-pest approach; international projects; South American tomato pinworm
-
Estimation of climate-induced increased risk of Centaurea solstitialis L. invasion in China: An integrated study based on biomod2
作者:Jia, Tao;Huang, Hongkun;Qi, Yuhan;Zhao, Haoxiang;Xian, Xiaoqing;Liu, Wan-xue;Li, Jianyu;Yu, Wentao
关键词:Centaurea solstitialis; climate change; ensemble model; invasive alien plants; potential geographical distribution
-
Infection of Metarhizium anisopliae Ma6 and defense responses of host Phyllotreta striolata adults
作者:Li, Jianyu;Chen, Yanting;He, Yuechao;Zheng, Lizhen;Shi, Mengzhu;Fu, Jianwei;Shi, Mengzhu
关键词:defense response; infection; Metarhizium anisopliae; Phyllotreta striolata; scanning electron microscopy
-
De Novo Transcription Responses Describe Host-Related Differentiation of Paracoccus marginatus (Hemiptera: Pseudococcidae)
作者:Zheng, Lizhen;Li, Jianyu;Chen, Yanting;Shi, Mengzhu;He, Xiaoyun;Fu, Jianwei
关键词:invasive pests; host-related differentiation; transcription
-
Temporal sampling and network analysis reveal rapid population turnover and dynamic migration pattern in overwintering regions of a cosmopolitan pest
作者:Ke, Fushi;Li, Jianyu;Vasseur, Liette;You, Minsheng;You, Shijun;Ke, Fushi;Li, Jianyu;Vasseur, Liette;You, Minsheng;You, Shijun;Ke, Fushi;Li, Jianyu;You, Minsheng;You, Shijun;Ke, Fushi;Li, Jianyu;Vasseur, Liette;You, Shijun
关键词:temporal sampling; kinship analysis; population network; dynamic metapopulation; insect pest
-
Potential global geographical distribution of Lolium temulentum L. under climate change
作者:Yang, Ming;Chen, Li;Yang, Ming;Zhao, Haoxiang;Xian, Xiaoqing;Liu, Wanxue;Liu, Hui;Li, Jianyu
关键词:MaxEnt; potential geographical distribution; Lolium temulentum; invasive alien plant; climate change