Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Phylogenetic Identification of the Symbiotic Hypermastigote Trichonympha agilis in the Hindgut of the Termite Reticulitermes speratus Based on Small‐Subunit rRNA Sequence

View through CrossRef
The phylogeny of a symbiotic hypermastigote Trichonympha agilis (class Parabasalia; order Hypermastigida) in the hindgut of the lower termite Reticulitermes speratus was examined by a strategy that does not rely on cultivation. From mixed‐population DNA obtained from the termite gut, small subunit (16S‐like) ribosomal RNA sequences were directly amplified by the polymerase chain reaction method using primers specific for eukaryotes. Comparative sequence analysis of the clones revealed two kinds of sequences, one from the termite itself and the other from a symbiotic protist. A fluorescent‐labeled oligonucleotide probe for the latter sequence was designed and used in whole‐cell hybridization experiments to provide direct visual evidence that the sequence originated from a large hypermastigote in the termite hindgut, Trichonympha agilis. According to the phylogenetic trees constructed, the hypermastigote represented one of the deepest branches of eukaryotes. The hypermastigote along with members of the order Trichomonadida formed a monophyletic lineage, indicating that this hypermastigote and trichomonads shared a recent common ancestry.
Title: Phylogenetic Identification of the Symbiotic Hypermastigote Trichonympha agilis in the Hindgut of the Termite Reticulitermes speratus Based on Small‐Subunit rRNA Sequence
Description:
The phylogeny of a symbiotic hypermastigote Trichonympha agilis (class Parabasalia; order Hypermastigida) in the hindgut of the lower termite Reticulitermes speratus was examined by a strategy that does not rely on cultivation.
From mixed‐population DNA obtained from the termite gut, small subunit (16S‐like) ribosomal RNA sequences were directly amplified by the polymerase chain reaction method using primers specific for eukaryotes.
Comparative sequence analysis of the clones revealed two kinds of sequences, one from the termite itself and the other from a symbiotic protist.
A fluorescent‐labeled oligonucleotide probe for the latter sequence was designed and used in whole‐cell hybridization experiments to provide direct visual evidence that the sequence originated from a large hypermastigote in the termite hindgut, Trichonympha agilis.
According to the phylogenetic trees constructed, the hypermastigote represented one of the deepest branches of eukaryotes.
The hypermastigote along with members of the order Trichomonadida formed a monophyletic lineage, indicating that this hypermastigote and trichomonads shared a recent common ancestry.

Related Results

Phylogenetic diversity of termite gut spirochaetes
Phylogenetic diversity of termite gut spirochaetes
A molecular phylogenetic analysis was done of not‐yet‐cultured spirochaetes inhabiting the gut of the termite, Reticulitermes flavipes (Koll...
Negative chemotaxis of Ligilactobacillus agilis BKN88 against gut-derived substances
Negative chemotaxis of Ligilactobacillus agilis BKN88 against gut-derived substances
AbstractLigilactobacillus agilis is a motile lactic acid bacterium found in the gastrointestinal tracts of animals. The findings of our previous study suggest that the motility of ...
Termite mound cover and abundance respond to herbivore-mediated biotic changes in an African savanna
Termite mound cover and abundance respond to herbivore-mediated biotic changes in an African savanna
Both termites and large mammalian herbivores (LMH) are savanna ecosystem engineers that have profound impacts on ecosystem structure and function. Both of these savanna engineers m...
Migration ofDrosophilaintestinal stem cells across organ boundaries
Migration ofDrosophilaintestinal stem cells across organ boundaries
All components of the Drosophila intestinal tract, including the endodermal midgut and ectodermal hindgut/Malpighian tubules, maintain populations of dividing stem cells. In the mi...

Back to Top