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Comparative genomics of the miniature wasp and pest control agent Trichogramma pretiosum

Overview of attention for article published in BMC Biology, May 2018
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Title
Comparative genomics of the miniature wasp and pest control agent Trichogramma pretiosum
Published in
BMC Biology, May 2018
DOI 10.1186/s12915-018-0520-9
Pubmed ID
Authors

Amelia R. I. Lindsey, Yogeshwar D. Kelkar, Xin Wu, Dan Sun, Ellen O. Martinson, Zhichao Yan, Paul F. Rugman-Jones, Daniel S. T. Hughes, Shwetha C. Murali, Jiaxin Qu, Shannon Dugan, Sandra L. Lee, Hsu Chao, Huyen Dinh, Yi Han, Harsha Vardhan Doddapaneni, Kim C. Worley, Donna M. Muzny, Gongyin Ye, Richard A. Gibbs, Stephen Richards, Soojin V. Yi, Richard Stouthamer, John H. Werren

Abstract

Trichogrammatids are minute parasitoid wasps that develop within other insect eggs. They are less than half a millimeter long, smaller than some protozoans. The Trichogrammatidae are one of the earliest branching families of Chalcidoidea: a diverse superfamily of approximately half a million species of parasitoid wasps, proposed to have evolved from a miniaturized ancestor. Trichogramma are frequently used in agriculture, released as biological control agents against major moth and butterfly pests. Additionally, Trichogramma are well known for their symbiotic bacteria that induce asexual reproduction in infected females. Knowledge of the genome sequence of Trichogramma is a major step towards further understanding its biology and potential applications in pest control. We report the 195-Mb genome sequence of Trichogramma pretiosum and uncover signatures of miniaturization and adaptation in Trichogramma and related parasitoids. Comparative analyses reveal relatively rapid evolution of proteins involved in ribosome biogenesis and function, transcriptional regulation, and ploidy regulation. Chalcids also show loss or especially rapid evolution of 285 gene clusters conserved in other Hymenoptera, including many that are involved in signal transduction and embryonic development. Comparisons between sexual and asexual lineages of Trichogramma pretiosum reveal that there is no strong evidence for genome degradation (e.g., gene loss) in the asexual lineage, although it does contain a lower repeat content than the sexual lineage. Trichogramma shows particularly rapid genome evolution compared to other hymenopterans. We speculate these changes reflect adaptations to miniaturization, and to life as a specialized egg parasitoid. The genomes of Trichogramma and related parasitoids are a valuable resource for future studies of these diverse and economically important insects, including explorations of parasitoid biology, symbiosis, asexuality, biological control, and the evolution of miniaturization. Understanding the molecular determinants of parasitism can also inform mass rearing of Trichogramma and other parasitoids for biological control.

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Geographical breakdown

Country Count As %
Unknown 75 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 16 21%
Student > Master 12 16%
Researcher 12 16%
Student > Bachelor 10 13%
Professor 3 4%
Other 3 4%
Unknown 19 25%
Readers by discipline Count As %
Agricultural and Biological Sciences 28 37%
Biochemistry, Genetics and Molecular Biology 21 28%
Engineering 2 3%
Unspecified 1 1%
Arts and Humanities 1 1%
Other 2 3%
Unknown 20 27%