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Mozhaitseva, K.

Publications and source records attributed to Mozhaitseva, K..

2 recordsLinked to original sources

Transcriptome analysis of Diplolepis rosae: revealing overexpression of genes potentially associated with insect immune response and gall formation at early larval stages

Insect parasites can provoke drastic changes in host plant physiology by affecting cell differentiation pathways and various metabolic processes. An intriguing example of such interaction is a gall, a novel outgrowing plant organ, induced by another organism for its own benefit. Cynipidae is a family of gall-inducing hymenopterans that induce galls with a complex anatomical structure. Gall formation involves three stages: initiation, growth, and maturation. Until today, the mechanism of gall initiation remains unknown. In this study, we aimed to reveal candidate genes involved in gall induction in Diplolepis rosae, a gall wasp inducing bedeguars in wild roses. We performed differential expression analysis of the gall wasp larva transcriptome. We observed the overexpression of genes encoding plant cell wall degrading enzymes. These enzymes may contribute to the formation of a chamber for a developing larva by lysing plant tissues. We also demonstrated the overexpression of genes encoding podocan, vasorin-like protein, toll-like receptor 7, tetraspanin, lipase, peroxidase, phospholipase A2, and venom acid phosphatase. These genes may be involved in insect development and the immune response against parasitoids, host plant microbiome, and host plant defense systems. Additionally, we performed a test for selection to detect D. rosae genes under positive selection. However, we detected only one gene encoding a transposable element. This can be explained by the mostly asexual reproductive mode of this species. Thus, our study contributes to understanding the processes occurring in cynipid wasps during gall formation and creates opportunities for further investigations of other candidate genes.

ecology↗

Population genomics of the mostly thelytokous Diplolepis rosae (Linnaeus, 1758) (Hymenoptera: Cynipidae) reveals population-specific selection for sex

In Hymenoptera, arrhenotokous parthenogenesis (arrhenotoky) is a common reproductive mode. Thelytokous parthenogenesis (thelytoky), when virgin females produce only females, is less common and is found in several taxa. In our study, we assessed the efficacy of recombination and the effect of thelytoky on the genome structure of Diplolepis rosae, a gall wasp producing bedeguars in dog roses. We assembled a high-quality reference genome using Oxford Nanopore long-read technology and sequenced 17 samples collected in France with high-coverage Illumina reads. We found two D. rosae peripatric lineages that differed in the level of recombination and homozygosity. The first D. rosae lineage showed a recombination rate that was 13.2 times higher and a per-individual heterozygosity that was 1.6 times higher. We inferred that genes under negative selection were enriched in functions related to male traits ( sperm competition, insemination, and copulation gene ontology terms) in the more recombining lineage, while in the less recombining form, the same lineage genes showed traces pointing towards balancing or relaxed selection. Thus, although D. rosae reproduces mainly by thelytoky, selection may act to maintain sexual reproduction. SignificanceMany organisms can alternate between sexual and asexual reproduction in different ways. Sexual reproduction is essential to creating genetic diversity for adaptation to changing environments, whereas asexual reproduction is important in the short term and in stable environments. Using genomic data, we demonstrated the existence of two lineages in the rose bedeguar wasp Diplolepis rosae previously shown to reproduce mainly by thelytokous parthenogenesis, giving almost only females. One of the lineages showed higher recombination, higher heterozygosity, and genes involved in male traits under negative selection. This could be linked to the expected advantages of maintaining sexual reproduction in natural populations.

evolutionary biology↗