Tempo and mode of spliceosomal intron evolution in actin of foraminifera.
about
Phylogenetic distribution of intron positions in alpha-amylase genes of bilateria suggests numerous gains and lossesOrigin and evolution of spliceosomal intronsEvolution of a Planktonic Foraminifer during Environmental Changes in the Tropical OceansGene make-up: rapid and massive intron gains after horizontal transfer of a bacterial α-amylase gene to BasidiomycetesEvolution of the actin gene family in testate lobose amoebae (Arcellinida) is characterized by two distinct clades of paralogs and recent independent expansionsCryptic splice sites and split genes.Novel Introner-Like Elements in fungi Are Involved in Parallel Gains of Spliceosomal IntronsEvaluation of the mechanisms of intron loss and gain in the social amoebae DictyosteliumMultigene phylogeny and cell evolution of chromist infrakingdom Rhizaria: contrasting cell organisation of sister phyla Cercozoa and Retaria.
P2860
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P2860
Tempo and mode of spliceosomal intron evolution in actin of foraminifera.
description
2006 nî lūn-bûn
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name
Tempo and mode of spliceosomal intron evolution in actin of foraminifera.
@en
Tempo and mode of spliceosomal intron evolution in actin of foraminifera.
@nl
type
label
Tempo and mode of spliceosomal intron evolution in actin of foraminifera.
@en
Tempo and mode of spliceosomal intron evolution in actin of foraminifera.
@nl
prefLabel
Tempo and mode of spliceosomal intron evolution in actin of foraminifera.
@en
Tempo and mode of spliceosomal intron evolution in actin of foraminifera.
@nl
P2093
P2860
P1476
Tempo and mode of spliceosomal intron evolution in actin of foraminifera.
@en
P2093
Ignacio Bolivar
José Fahrni
Jérôme Flakowski
P2860
P2888
P356
10.1007/S00239-005-0061-Z
P577
2006-06-03T00:00:00Z