Climate Change Facilitates the Potentially Suitable Habitats of the Invasive Crop Insect Ectomyelois ceratoniae (Zeller)
文献类型: 外文期刊
作者: Liu C.;Yang M.;Li M.;Jin Z.;Yang N.;Yu H.;Liu W.
作者机构:
关键词: climate change;Ectomyelois ceratoniae;MaxEnt;potentially suitable habitats
期刊名称: Atmosphere
ISSN: 2073-4433
年卷期: 2024 年 15 卷 1 期
页码:
收录情况: SCIE(2024版) ; ; EI(2024版)
摘要: Invasive alien insects directly or indirectly driven by climate change threaten crop production and increase economic costs worldwide. Ectomyelois ceratoniae (Zeller) is a highly reproductive invasive crop insect that can severely damage fruit commodities and cause significant economic losses globally. Estimating the global potentially suitable habitats (PSH) of E. ceratoniae is an important aspect of its invasive risk assessment and early warning. Here, we constructed an optimized MaxEnt model based on the global distribution records of E. ceratoniae, and nine environmental variables (EVs), to predict its global PSH under current and future climates. Our results showed that the RM value was 2.0 and the mean area under receiver operating characteristic curve (AUC) value was 0.972, indicating the high accuracy of the optimal MaxEnt model. The mean temperature of driest quarter (bio9, 50.2%), mean temperature of wettest quarter (bio8, 16.9%), temperature seasonality (bio4, 9.7%), and precipitation of coldest quarter (bio19, 9.1%) were the significant EVs affecting its distribution patterns. The global PSH of E. ceratoniae are mainly located in western Asia under current climate scenarios (687.57 × 104 km2), which showed an increasing trend under future climate scenarios. The PSH of E. ceratoniae achieved the maximum under the shared socioeconomic pathway (SSP) 1–2.6 in the 2030s and under the SSP2-4.5 in the 2050s. The increased PSH of E. ceratoniae are mainly located in southwestern Asia, northwestern Europe, northwestern South America, northwestern North America, southern Oceania, and northwestern Africa. Our findings suggest that quarantine officials and governmental departments in the above high-risk invasion areas should strengthen monitoring and early warning to control E. ceratoniae; in particular, cultural measures should be taken in areas where its further expansion is expected in the future. © 2024 by the authors.
分类号:
- 相关文献
作者其他论文 更多>>
-
Molecular Detection and Genetic Characterization of Vertically Transmitted Viruses in Ducks
作者:Wang X.;Yu H.;Zhang W.;Fu L.;Wang Y.
关键词:avian reoviruses;duck circovirus;duck hepatitis A virus 3;duck hepatitis B virus;epidemiology
-
The maize transcription factor CCT regulates drought tolerance by interacting with Fra a 1, E3 ligase WIPF2, and auxin response factor Aux/IAA8
作者:Zhang Z.;Qu J.;Lu M.;Zhao X.;Xu Y.;Wang L.;Liu Z.;Shi Y.;Liu C.;Li Y.;Wang C.;Xu M.;Nan Z.;Cao Q.;Pan J.;Liu W.;Li X.;Sun Q.;Wang W.
关键词:Auxin;auxin response gene;drought tolerance;plant growth;ubiquitination;ZmCCT
-
Development and application of a triplex real-time PCR assay for the detection of H3, H4, and H5 subtypes of avian influenza virus
作者:Wen F.;Wang C.;Guo J.;Yu H.;Yuan S.;Li Y.;Li Z.;Huang S.;Liang Z.
关键词:avian influenza virus;H3;H4;H5;TaqMan probe
-
Engineering the production of scopolamine and cold tolerance through overexpressing ODC and H6H in Atropa belladonna
作者:Zhao T.;Yang M.;Htun Z.L.L.;Zhou J.;Zeng J.;Qiu F.;Zhang H.;Lan X.;Chen M.;Liao Z.
关键词:Atropa belladonna;Cold tolerance;Hyoscyamine 6β-hydroxylase;Ornithine decarboxylase;Polyamines;Scopolamine
-
Green synthesis of CaxLa1-xMnO3 with modulation of mesoporous and vacancies for efficient low concentration phosphate adsorption
作者:Feng M.;Li M.;Guo C.;Yuan M.;Zhang L.;Qiu S.;Fu W.;Zhang K.;Guo H.;Wang F.
关键词:A-site doping;Density functional theory;Low concentration phosphate removal;Perovskite;Wastewater
-
Electron transfer and microbial mechanism of synergistic degradation of lignocellulose by hydrochar and aerobic fermentation
作者:Yu C.;Li M.;Huang H.;Yan J.;Zhang X.;Luo T.;Ye M.;Meng F.;Sun T.;Hou J.;Xi B.
关键词:Hydrochar production;Lignocellulose pretreatment;Microbial community;Walnut husk degradation
-
Clostridium lamae sp. nov., a novel bacterium isolated from the fresh feces of alpaca
作者:Li X.;Li M.;Shi W.;Li X.;Xiang Z.;Su L.
关键词:16S rRNA phylogeny;Alpaca feces;Clostridium lamae sp. nov;Polyphasic taxonomy