AbstractWe have recently shown that, in Euglena gracilis, leader sequences are transferred by trans-splicing to the vast majority of cytoplasmic mRNAs. Trans-splicing is involved in the maturation of the rbcS transcript, which encodes eight small subunits of the ribulose 1,5 bisphosphate carboxylase/oxygenase. In this report, we show that the Euglena rbcS gene introns are different from introns found in plant rbcS genes. In addition these introns do not have the conserved 5′ and 3′ border sequences found in introns of eucaryotic nuclear-encoded pre-mRNAs, and they do not present any homology with self-splicing introns of groups I and II. Secondary structure analyses show that the 5′ and 3′ ends of Euglena introns can base-pair, suggesting t...
Euglena gracilis has been used as a model for studying the chloroplast genome and gene expression du...
The precursor to the Euglena light harvesting chlorophyll a/b binding protein of photosystem 11 (LHC...
A 9.8 kbp region of the Euglena gracilis chloroplast genome has been cloned, sequenced and analyzed....
AbstractWe have recently shown that, in Euglena gracilis, leader sequences are transferred by trans-...
In the flagellated protozoon Euglena gracilis, characterized nuclear genes harbor atypical introns t...
The chloroplast genes of Euglena gracilis contain more than 100 introns. A comparison of intron cont...
Background Nuclear genes of euglenids contain two major types of introns: conventio...
Nuclear genes of euglenids and marine diplonemids harbor atypical, nonconventional introns which are...
Nuclear genes of euglenids and marine diplonemids harbor atypical, nonconventional introns which are...
The chloroplasts of Euglena gracilis bounded by three membranes arose via secondary endosymbiosis of...
The Euglena gracilis chloroplast genome contains over 150 introns, including the only known examples...
The chloroplast mRNAs from Euglena gracilis fall into two classes. One group of mRNAs from this orga...
The chloroplast genome of Euglena gracilis contains at least 155 introns, accounting for 39.2% of th...
The nuclear genomes of euglenids contain three types of introns: conventional spliceosomal introns, ...
The nucleotide sequence of the gene coding for small ribosomal subunit RNA in the basidiomycete Usti...
Euglena gracilis has been used as a model for studying the chloroplast genome and gene expression du...
The precursor to the Euglena light harvesting chlorophyll a/b binding protein of photosystem 11 (LHC...
A 9.8 kbp region of the Euglena gracilis chloroplast genome has been cloned, sequenced and analyzed....
AbstractWe have recently shown that, in Euglena gracilis, leader sequences are transferred by trans-...
In the flagellated protozoon Euglena gracilis, characterized nuclear genes harbor atypical introns t...
The chloroplast genes of Euglena gracilis contain more than 100 introns. A comparison of intron cont...
Background Nuclear genes of euglenids contain two major types of introns: conventio...
Nuclear genes of euglenids and marine diplonemids harbor atypical, nonconventional introns which are...
Nuclear genes of euglenids and marine diplonemids harbor atypical, nonconventional introns which are...
The chloroplasts of Euglena gracilis bounded by three membranes arose via secondary endosymbiosis of...
The Euglena gracilis chloroplast genome contains over 150 introns, including the only known examples...
The chloroplast mRNAs from Euglena gracilis fall into two classes. One group of mRNAs from this orga...
The chloroplast genome of Euglena gracilis contains at least 155 introns, accounting for 39.2% of th...
The nuclear genomes of euglenids contain three types of introns: conventional spliceosomal introns, ...
The nucleotide sequence of the gene coding for small ribosomal subunit RNA in the basidiomycete Usti...
Euglena gracilis has been used as a model for studying the chloroplast genome and gene expression du...
The precursor to the Euglena light harvesting chlorophyll a/b binding protein of photosystem 11 (LHC...
A 9.8 kbp region of the Euglena gracilis chloroplast genome has been cloned, sequenced and analyzed....