SeqCode Logo SeqCode Registry
cognitis nomina
  • About
  • Search
  • •
  • Login
  • Register
Authors Gullan

JSON
See as cards

Gullan, Penny J.


Publications
3

CitationNamesAbstract
Evolutionary Relationships among Primary Endosymbionts of the Mealybug Subfamily Phenacoccinae (Hemiptera: Coccoidea: Pseudococcidae) Gruwell et al. (2010). Applied and Environmental Microbiology 76 (22) “Brownia rhizoecola” Buchnera aphidicola T Ca. Tremblaya phenacola Ca. Tremblaya princeps
Text
Phylogenetic Evidence for Two New Insect-Associated Chlamydia of the Family Simkaniaceae Thao et al. (2003). Current Microbiology 47 (1) “Fritschea bemisiae” “Fritschea eriococci”
Secondary (γ- Proteobacteria ) Endosymbionts Infect the Primary (β- Proteobacteria ) Endosymbionts of Mealybugs Multiple Times and Coevolve with Their Hosts Thao et al. (2002). Applied and Environmental Microbiology 68 (7) Ca. Tremblaya princeps “Tremblaya”
Text

Evolutionary Relationships among Primary Endosymbionts of the Mealybug Subfamily Phenacoccinae (Hemiptera: Coccoidea: Pseudococcidae)
ABSTRACT Mealybugs (Coccoidea: Pseudococcidae) are sap-sucking plant parasites that harbor bacterial endosymbionts within specialized organs. Previous studies have identified two subfamilies, Pseudococcinae and Phenacoccinae, within mealybugs and determined the primary endosymbionts (P-endosymbionts) of the Pseudococcinae to be Betaproteobacteria (“ Candidatus Tremblaya princeps”) containing Gammaproteobacteria secondary symbionts. Here, the P-endosymbionts of phenacoccine mealybugs are characterized based on 16S rRNA from the bacteria of 20 species of phenacoccine mealybugs and four outgroup Puto species (Coccoidea: Putoidae) and aligned to more than 100 published 16S rRNA sequences from symbiotic and free-living bacteria. Phylogenetic analyses recovered three separate lineages of bacteria from the Phenacoccinae, and these are considered to be the P-endosymbionts of their respective mealybug hosts, with those from (i) the mealybug genus Rastrococcus belonging to the Bacteroidetes , (ii) the subterranean mealybugs, tribe Rhizoecini, also within Bacteroidetes , in a clade sister to cockroach endosymbionts ( Blattabacterium ), and (iii) the remaining Phenacoccinae within the Betaproteobacteria , forming a well-supported sister group to “ Candidatus Tremblaya princeps.” Names are proposed for two strongly supported lineages: “ Candidatus Brownia rhizoecola” for P-endosymbionts of Rhizoecini and “ Candidatus Tremblaya phenacola” for P-endosymbionts of Phenacoccinae excluding Rastrococcus and Rhizoecini. Rates of nucleotide substitution among lineages of Tremblaya were inferred to be significantly faster than those of free-living Betaproteobacteria . Analyses also recovered a clade of Gammaproteobacteria , sister to the P-endosymbiont lineage of aphids (“ Candidatus Buchnera aphidicola”), containing the endosymbionts of Putoidae, the secondary endosymbionts of pseudococcine mealybugs, and the endosymbionts of several other insect groups.
Secondary (γ- Proteobacteria ) Endosymbionts Infect the Primary (β- Proteobacteria ) Endosymbionts of Mealybugs Multiple Times and Coevolve with Their Hosts
ABSTRACT Mealybugs (Hemiptera, Coccoidea, Pseudococcidae) are plant sap-sucking insects that have within their body cavities specialized cells containing prokaryotic primary endosymbionts (P-endosymbionts). The P-endosymbionts have the unusual property of containing within their cytoplasm prokaryotic secondary endosymbionts (S-endosymbionts) [C. D. von Dohlen, S. Kohler, S. T. Alsop, and W. R. McManus, Nature (London) 412:433-436, 2001]. Four-kilobase fragments containing 16S-23S ribosomal DNA (rDNA) were obtained from the P-endosymbionts of 22 mealybug species and the S-endosymbionts of 12 representative species. Phylogenetic analyses of the P-endosymbionts indicated that they have a monophyletic origin and are members of the β-subdivision of the Proteobacteria ; these organisms were subdivided into five different clusters. The S-endosymbionts were members of the γ-subdivision of the Proteobacteria and were grouped into clusters similar to those observed with the P-endosymbionts. The S-endosymbiont clusters were distinct from each other and from other insect-associated bacteria. The similarity of the clusters formed by the P- and S-endosymbionts suggests that the P-endosymbionts of mealybugs were infected multiple times with different precursors of the S-endosymbionts and once the association was established, the P- and S-endosymbionts were transmitted together. The lineage consisting of the P-endosymbionts of mealybugs was given the designation “ Candidatus Tremblaya” gen. nov., with a single species, “ Candidatus Tremblaya princeps” sp. nov. The results of phylogenetic analyses of mitochondrial DNA fragments encoding cytochrome oxidase subunits I and II from four representative mealybug species were in agreement with the results of 16S-23S rDNA analyses, suggesting that relationships among strains of “ Candidatus T. princeps” are useful in inferring the phylogeny of their mealybug hosts.
Search