Thermal reaction of single life stages of Ceratitis rosa and Ceratitis quilicii

DOI

Integrative taxonomy has resolved the species status of the potentially invasive Ceratitis rosa Karsch into two separate species with distinct ecological requirements: C. rosa "lowland type" and the newly described species Ceratitis quilicii De Meyer, Mwatawala & Virgilio sp. nov. "highland type". Both species are notorious tephritid pests threatening the production of horticultural crops in Africa and beyond. Studies were carried out by constructing thermal reaction norms for cohorts of single life stages of both species at constant and fluctuating temperatures. Non-linear functions were fitted to continuously model species development, mortality, longevity and oviposition to establish phenology models that were stochastically simulated to estimate the life table parameters of each species. For spatial analysis of the pest risk, three generic risk indices were visualized using the advanced Insect Life Cycle Modeling software. The study revealed that the highest fecundity, intrinsic rate of natural increase and net reproductive rate for C. rosa and C. quilicii was at 25 and 30°C, respectively. The resulting model successfully fits the known distribution of C. rosa and C. quilicii in Africa and the two Indian Ocean islands of La Réunion and Mauritius. Globally, the model highlights the substantial invasion risk posed by C. rosa and C. quilicii to cropping regions in the Americas, Australia, India, China, Southeast Asia, Europe, West and Central Africa. However, the proportion of the regions predicted to be climatically suitable for both pests is narrower for C. rosa compared to C. quilicii, suggesting that C. quilicii will be more tolerant to a wider range of climatic conditions than C. rosa. This implies that these pests are of significant concern to biosecurity agencies in the uninvaded regions. Therefore, these findings provide important information to enhance monitoring/surveillance and designing pest management strategies to limit the spread and reduce their impact in the invaded range.

Supplement to: Tanga, Chrysantus M; Khamis, Fathiya Mbarak; Tonnang, Henri E Z; Rwomushana, Ivan; Mosomtai, Gladys; Mohamed, Samira Abuelgasim; Ekesi, Sunday (2018): Risk assessment and spread of the potentially invasive Ceratitis rosa Karsch and Ceratitis quilicii De Meyer, Mwatawala & Virgilio sp. nov using life-cycle simulation models: Implications for phytosanitary measures and management. PLoS ONE, 13(1), e0189138

Identifier
DOI https://doi.org/10.1594/PANGAEA.880370
Related Identifier IsSupplementTo https://doi.org/10.1371/journal.pone.0189138
Metadata Access https://ws.pangaea.de/oai/provider?verb=GetRecord&metadataPrefix=datacite4&identifier=oai:pangaea.de:doi:10.1594/PANGAEA.880370
Provenance
Creator Tanga, Chrysantus M ORCID logo; Khamis, Fathiya Mbarak; Tonnang, Henri E Z ORCID logo; Rwomushana, Ivan; Mosomtai, Gladys; Mohamed, Samira Abuelgasim; Ekesi, Sunday ORCID logo
Publisher PANGAEA
Publication Year 2017
Rights Creative Commons Attribution 3.0 Unported; https://creativecommons.org/licenses/by/3.0/
OpenAccess true
Representation
Resource Type Supplementary Publication Series of Datasets; Collection
Format application/zip
Size 9 datasets
Discipline Earth System Research
Spatial Coverage (18.500W, -34.418S, 57.583E, -0.427N)
Temporal Coverage Begin 2014-01-01T00:00:00Z
Temporal Coverage End 2014-12-31T00:00:00Z