Pseudogenization of the chloroplast threonine (trnT-GGU) gene in the sunflower family (Asteraceae)
The chloroplast genome evolves through the course of evolution. Various types of mutational events are found within the chloroplast genome, including insertions-deletions (InDels), substitutions, inversions, gene rearrangement, and pseudogenization of genes. The pseudogenization of the chloroplast t...
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Veröffentlicht in: | Scientific reports 2021-10, Vol.11 (1), p.21122-21122, Article 21122 |
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Sprache: | eng |
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Zusammenfassung: | The chloroplast genome evolves through the course of evolution. Various types of mutational events are found within the chloroplast genome, including insertions-deletions (InDels), substitutions, inversions, gene rearrangement, and pseudogenization of genes. The pseudogenization of the chloroplast threonine (
trn
T
-
GGU) gene was previously reported in
Cryptomeria japonica
(Cupressaceae),
Pelargonium
×
hortorum
(Geraniaceae), and
Anaphalis sinica
and
Leontopodium leiolepis
of the tribe Gnaphalieae (Asteroideae, Asteraceae). Here, we performed a broad analysis of the
trn
T-GGU gene among the species of 13 subfamilies of Asteraceae and found this gene as a pseudogene in core Asteraceae (Gymnarrhenoideae, Cichorioideae, Corymbioideae, and Asteroideae), which was linked to an insertion event within the 5′ acceptor stem and is not associated with ecological factors such as habit, habitat, and geographical distribution of the species. The pseudogenization of
trn
T-GGU was not predicted in codon usage, indicating that the superwobbling phenomenon occurs in core Asteraceae in which a single transfer RNA (
trn
T-UGU) decodes all four codons of threonine. To the best of our knowledge, this is the first evidence of a complete clade of a plant species using the superwobbling phenomenon for translation. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-021-00510-4 |