数字农科院2.0

Global Potential Distribution of Carpomya vesuviana Costa Under Climate Change and Potential Economic Impacts on Chinese Jujube Industries

文献类型: 外文期刊

作者: Ning, Jingxuan;Li, Ming;Qi, Yuhan;Zhao, Haoxiang;Xian, Xiaoqing;Guo, Jianyang;Yang, Nianwan;Zhou, Hongxu;Liu, Wanxue

作者机构:

关键词: Carpomya vesuviana;climate change;MaxEnt model;risk assessment;economic losses

期刊名称: AGRICULTURE-BASEL

ISSN:

年卷期: 2025 年 15 卷 19 期

页码:

收录情况: SCIE(2025版)

摘要: Carpomya vesuviana (Diptera: Tephritidae), a significant invasive forestry pest of Zizyphus crops worldwide, has spread globally across jujube-growing regions, causing substantial yield losses and economic damage. In China, it is classified as both an imported and forestry quarantine pest. Existing risk assessments have primarily focused on the potential geographical distributions (PGDs) of C. vesuviana, but its economic impact on host plants is unknown. Therefore, we used an optimised MaxEnt model based on species distribution records and relevant environmental variables to predict the PGDs of C. vesuviana under current and future climate scenarios. Meanwhile, we used the @RISK stochastic model to assess the economic impact of this pest on the Chinese jujube industry under various scenarios. The results showed that the human influence index (HII), mean temperature of the wettest quarter (Bio8), temperature seasonality (Bio4), and precipitation during the driest month (Bio14) were the significant environmental variables affecting species distribution. Under the current climatic scenario, the total suitable area of C. vesuviana reached 2171.39 x 104 km2, which is mainly distributed in southern and western Asia, southern Europe, central North America, western Africa, and eastern South America. Potentially suitable habitats will increase and shift to the middle and high latitudes of the Northern Hemisphere under future climatic scenarios. Under the no-control scenario, C. vesuviana could cause losses of 15,687 million CNY to the jujube industry in China. However, control measures could have saved losses of 5047 million CNY. This study provides a theoretical basis for preventive monitoring and integrated management of C. vesuviana globally and helps reduce its economic impact on the jujube industry in China.

分类号:

  • 相关文献

[1]Risk Assessment of Spodoptera exempta against Food Security: Estimating the Potential Global Overlapping Areas of Wheat, Maize, and Rice under Climate Change. Ming Li,Zhenan Jin,Yuhan Qi,Haoxiang Zhao,Nianwan Yang,Jianyang Guo,Baoxiong Chen,Xiaoqing Xian,Wanxue Liu. 2024

[2]Climate Change Increases the Expansion Risk of Helicoverpa zea in China According to Potential Geographical Distribution Estimation. Haoxiang Zhao,Xiaoqing Xian,Zihua Zhao,Guifen Zhang,Wanxue Liu,Fanghao Wan. 2022

[3]Impact of Climate Change on Oriental Migratory Locust Suitability: A Multi-Source Data and MaxEnt-Based Analysis in Hainan Island. Sun, Zhongxiang,Ye, Huichun,Kong, Weiping,Nie, Chaojia,Bai, Huiqing. 2025

[4]Assessing nutritional and economic aspects of food loss and waste in China. Ruigang Wang,Shijun Lu,Lin Zhou,Zhenni Yang,Zhenchuang Tang,Mingjun Zhao,Guangyan Cheng. 2023

[5]Aesthetic grading causes food losses without financially benefiting farmers: Micro-level evidence from China's fresh apple supply chain. Jia, Xiangping,Schneider, Felicitas,Ning, Minghao,Ding, Jiping. 2024

[6]Aesthetic grading causes food losses without financially benefiting farmers: Micro-level evidence from China's fresh apple supply chain. Jia, Xiangping,Schneider, Felicitas,Ning, Minghao,Ding, Jiping. 2025

[7]Ecological Niche Shifts Affect the Potential Invasive Risk of Rapistrum rugosum (L.) All. in China. Xiaoqing Xian,Haoxiang Zhao,Rui Wang,Huijie Qiao,Jianyang Guo,Guifen Zhang,Wanxue Liu,Fanghao Wan. 2022

[8]Modelling potential distribution of snow leopards in pamir, northern pakistan: Implications for human–snow leopard conflicts. Wajid Rashid,Jianbin Shi,Inam Ur Rahim,Muhammad Qasim,Muhammad Naveed Baloch,Eve Bohnett,Fangyuan Yang,Imran Khan,Bilal Ahmad. 2021

[9]Predicting global geographical distribution and latitudinal suitability gradient for light Brown apple moth. Yu Zhang,Ming Yang,Yuhan Qi,Yantao Xue,Nianwan Yang,Gang Ma,Fanghao Wan,Xiaoqing Xian,Wanxue Liu. 2024

[10]Assessing the Impacts of Climate Change on Geographical Distribution of Tea (Camellia sinensis L.) in Kenya with Maximum Entropy Model. Goitom Tesfay,Yuncheng Zhao,Mingyue Zhao,Kuo Li,Tsedale Demelash,Yinlong Xu. 2024

[11]A new approach for spatial optimization of crop planting structure to balance economic and environmental benefits. Hu, Mengmeng,Tang, Huajun,Yu, Qiangyi,Wu, Wenbin. 2025

[12]Comparative analysis between ecological niche and biological models to project climate-driven habitat shifts of the oriental migratory locust in China. Shiqian Feng,Siyan Dong,Xiao Chang,Shaodan Wang,Sultanova Nadira,Niyazbekov Zhan,Fozilbek Nurjonov,Farman Ullah,Shuai Shi,Zehua Zhang,Xiongbing Tu. 2025

[13]Comparison of phytotoxicity of copper and nickel in soils with different Chinese plant species. Li Bo,Li Bo,Liu Ji-fang,Ma Yi-bing,Chen Shi-bao,Yang Jun-xing. 2015

[14]Bt Toxin Cry1Ie Causes No Negative Effects on Survival, Pollen Consumption, or Olfactory Learning in Worker Honey Bees (Hymenoptera: Apidae). Diao, Qing-Yun,Jia, Hui-Ru,Geng, Li-Li.

[15]Health risks of consuming apples with carbendazim, imidacloprid, and thiophanate-methyl in the Chinese population: Risk assessment based on a nonparametric probabilistic evaluation model. Ye, Mengliang,Nie, Jiyun,Li, Zhixia,Cheng, Yang,Zheng, Lijing,Xu, Guofeng,Yan, Zhen,Ye, Mengliang,Nie, Jiyun,Li, Zhixia,Cheng, Yang,Zheng, Lijing,Xu, Guofeng,Yan, Zhen,Ye, Mengliang,Nie, Jiyun,Li, Zhixia,Cheng, Yang,Zheng, Lijing,Xu, Guofeng,Yan, Zhen.

[16]Assessment of Flood Catastrophe Risk for Grain Production at the Provincial Scale in China Based on the BMM Method. Xu Lei,Zhang Qiao,Zhou Ai-lian,Huo Ran,Xu Lei,Zhang Qiao,Zhou Ai-lian,Huo Ran. 2013

[17]Dissipation behavior and risk assessment of butralin in soybean and soil under field conditions. Li, Congdi,Li, Li,Li, Wei,Yuan, Longfei,Li, Congdi,He, Yujian,Liu, Rong.

[18]Risk Evaluation of Main Pests and Integrated Management in Chinese Wolfberry, Lycium barbarum L.. Yu, Mingfu,Zhu, Fengyun,Ali, Abid,Kidane, Dawit,Kidane, Dawit. 2015

[19]Effects of the transgenic CrylAc and CpTI insect-resistant cotton SGK321 on rhizosphere soil microorganism populations in northern China. Xie, M.,Peng, D. L.. 2014

[20]The importance of soil solution chemistry to nickel toxicity on barley root elongation. Zhang, Xiaoqing,Huang, Zhanbin,Wei, Dongpu,Li, Bo,Ma, Yibing. 2013

作者其他论文 更多>>