Decoding and engineering temperature-sensitive lethality in <i>Ceratitis capitata</i> for pest control

R Roswitha A. Aumann (Department of Insect Biotechnology in Plant Protection, Institute for Insect Biotechnology, Justus-Liebig-University Gießen) G Georgia Gouvi (Insect Pest Control Section, Joint Food and Agriculture Organization of the United Nations/International Atomic Energy Agency Centre of Nuclear Techniques in Food and Agriculture, Department of Nuclear Sciences and Applications, International Atomic Energy Agency) M Maria-Eleni Gregoriou (Insect Pest Control Section, Joint Food and Agriculture Organization of the United Nations/International Atomic Energy Agency Centre of Nuclear Techniques in Food and Agriculture, Department of Nuclear Sciences and Applications, International Atomic Energy Agency) T Tanja Rehling (Department of Insect Biotechnology in Plant Protection, Institute for Insect Biotechnology, Justus-Liebig-University Gießen) G Germano Sollazzo (Department of Insect Biotechnology in Plant Protection, Institute for Insect Biotechnology, Justus-Liebig-University Gießen) K Kostas Bourtzis (Insect Pest Control Section, Joint Food and Agriculture Organization of the United Nations/International Atomic Energy Agency Centre of Nuclear Techniques in Food and Agriculture, Department of Nuclear Sciences and Applications, International Atomic Energy Agency) M Marc F. Schetelig (Department of Insect Biotechnology in Plant Protection, Institute for Insect Biotechnology, Justus-Liebig-University Gießen)

Abstract

The Sterile Insect Technique (SIT) is a species-specific and environmentally friendly method for effectively controlling pest insect populations based on releasing reared, sterile insects into infested areas. Sex sorting in rearing facilities, enabling male-only releases, is necessary to ensure SIT programs are efficient, cost-effective and, in case of mosquito control, also safe. This can be greatly facilitated by genetic sexing strains (GSS), exhibiting sex-specific phenotypic markers. However, the development of GSS remains challenging. The construction of a temperature-sensitive lethal ( tsl )-based GSS in the Mediterranean fruit fly ( Ceratitis capitata ) over three decades ago was considered a major breakthrough for SIT programs but was never successfully replicated in other pests. After over 30 y of research, we have pinpointed a specific mutation in the C. capitata lysine--tRNA ligase ( Lysyl-tRNA synthetase , LysRS ) gene responsible for the tsl phenotype. Introducing this specific mutation into a wild-type strain produced full embryonic lethality under heat stress, replicating the original mutant phenotype. The random integration of a LysRS minigene reversed this effect. The high conservation of LysRS among insects suggests that tsl-based GSS could be expanded to multiple pest species and extend applications of SIT programs for disease prevention and the protection of agriculture.

Article Details

Volume / Issue Vol. 122, Issue 28
Published July 15, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (7)

R

Roswitha A. Aumann

Department of Insect Biotechnology in Plant Protection, Institute for Insect Biotechnology, Justus-Liebig-University Gießen

G

Georgia Gouvi

Insect Pest Control Section, Joint Food and Agriculture Organization of the United Nations/International Atomic Energy Agency Centre of Nuclear Techniques in Food and Agriculture, Department of Nuclear Sciences and Applications, International Atomic Energy Agency

M

Maria-Eleni Gregoriou

Insect Pest Control Section, Joint Food and Agriculture Organization of the United Nations/International Atomic Energy Agency Centre of Nuclear Techniques in Food and Agriculture, Department of Nuclear Sciences and Applications, International Atomic Energy Agency

T

Tanja Rehling

Department of Insect Biotechnology in Plant Protection, Institute for Insect Biotechnology, Justus-Liebig-University Gießen

G

Germano Sollazzo

Department of Insect Biotechnology in Plant Protection, Institute for Insect Biotechnology, Justus-Liebig-University Gießen

K

Kostas Bourtzis

Insect Pest Control Section, Joint Food and Agriculture Organization of the United Nations/International Atomic Energy Agency Centre of Nuclear Techniques in Food and Agriculture, Department of Nuclear Sciences and Applications, International Atomic Energy Agency

M

Marc F. Schetelig

Department of Insect Biotechnology in Plant Protection, Institute for Insect Biotechnology, Justus-Liebig-University Gießen