Highly reduced complementary genomes of dual bacterial symbionts in the mulberry psyllid Anomoneura mori
Yasuda, Y.; Inoue, H.; Hirose, Y.; Nakabachi, A.
Show abstract
The genomes of obligately host-restricted bacteria suffer from accumulating mildly deleterious mutations, resulting in a drastic size reduction. Psyllids (Hemiptera) are phloem sap-sucking insects with a specialized organ called the bacteriome, which typically harbors two vertically transmitted bacterial symbionts: the primary symbiont "Candidatus Carsonella ruddii" (Gammaproteobacteria) and a secondary symbiont phylogenetically diverse among psyllid lineages. Genomes of several Carsonella lineages were revealed to be drastically reduced (158-174 kb), AT-rich (14.0-17.9% GC), and structurally conserved with similar gene inventories devoted for synthesizing essential amino acids scarce in the phloem sap. However, genomic information for secondary symbionts was limited. Hence, this study analyzed genomes of the bacteriome-associated dual symbionts, Secondary_AM (Gammaproteobacteria) and Carsonella_AM, in the mulberry psyllid Anomoneura mori (Psyllidae). This revealed that the Secondary_AM genome is as small and AT-rich (229,822 bp, 17.3% GC) as those of Carsonella, including Carsonella_AM (169,120 bp, 16.2% GC), implying that Secondary_AM is an evolutionarily ancient obligate mutualist like Carsonella. Phylogenomic analyses demonstrated that Secondary_AM is sister to "Candidatus Psyllophila symbiotica" of Cacopsylla spp. (Psyllidae), whose genomes (221-237 kb, 17.3-18.6% GC) were recently reported. The Secondary_AM and Psyllophila genomes showed highly conserved synteny, sharing all genes for complementing the incomplete tryptophan biosynthetic pathway of Carsonella and genes for synthesizing B vitamins. However, sulfur assimilation and carotenoid synthesizing genes were retained only in Secondary_AM and Psyllophila, respectively, indicating ongoing gene silencing. Average nucleotide identity, gene ortholog similarity, genome-wide synteny, and substitution rates suggested that the Secondary_AM/Psyllophila genomes are more labile than the Carsonella genomes.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Positive selection of a starch synthesis gene and phenotypic differentiation of starch accumulation in symbiotic and free-living coral symbiont dinoflagellate species 96%
- The protector within: Comparative genomics of APSE phages across aphids reveals rampant recombination and diverse toxin arsenals 96%
- The evolution of interdependence in a four-way mealybug symbiosis 96%
Similar papers in this journal
- A new guest to the blood feast: a novel symbiotic lineage associated with a haematophagous leech from the genus Haementeria 97%
- A novel widespread MITE element in the repeat-rich genome of the Cardinium endosymbiont of the spider Oedothorax gibbosus 93%
- Coupling between ribotypic and phenotypic traits of protists across life-cycle stages and temperatures 93%
Similar papers in this journal
- Cloacimonadota metabolisms include adaptations for engineered environments that are reflected in the evolutionary history of the phylum 92%
- A Taphrina strain infecting the model plant Arabidopsis thaliana. 91%
- Year-round quantification, structure and dynamics of epibacterial communities from diverse macroalgae reveal a persistent core microbiota and strong host specificities 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.