Preferential occupancy of R2 retroelements on the B chromosomes of the grasshopper Eyprepocnemis plorans
R2 non-LTR retrotransposons exclusively insert into the 28S rRNA genes of their host, and are expressed by co-transcription with the rDNA unit. The grasshopper Eyprepocnemis plorans contains transcribed rDNA clusters on most of its A chromosomes, as well as non-transcribed rDNA clusters on the paras...
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Published in | PloS one Vol. 9; no. 3; p. e91820 |
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Main Authors | , , , , , , |
Format | Journal Article |
Language | English |
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14.03.2014
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Abstract | R2 non-LTR retrotransposons exclusively insert into the 28S rRNA genes of their host, and are expressed by co-transcription with the rDNA unit. The grasshopper Eyprepocnemis plorans contains transcribed rDNA clusters on most of its A chromosomes, as well as non-transcribed rDNA clusters on the parasitic B chromosomes found in many populations. Here the structure of the E. plorans R2 element, its abundance relative to the number of rDNA units and its retrotransposition activity were determined. Animals screened from five populations contained on average over 12,000 rDNA units on their A chromosomes, but surprisingly only about 100 R2 elements. Monitoring the patterns of R2 insertions in individuals from these populations revealed only low levels of retrotransposition. The low rates of R2 insertion observed in E. plorans differ from the high levels of R2 insertion previously observed in insect species that have many fewer rDNA units. It is proposed that high levels of R2 are strongly selected against in E. plorans, because the rDNA transcription machinery in this species is unable to differentiate between R2-inserted and uninserted units. The B chromosomes of E. plorans contain an additional 7,000 to 15,000 rDNA units, but in contrast to the A chromosomes, from 150 to over 1,500 R2 elements. The higher concentration of R2 in the inactive B chromosomes rDNA clusters suggests these chromosomes can act as a sink for R2 insertions thus further reducing the level of insertions on the A chromosomes. These studies suggest an interesting evolutionary relationship between the parasitic B chromosomes and R2 elements. |
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AbstractList | R2 non-LTR retrotransposons exclusively insert into the 28S rRNA genes of their host, and are expressed by co-transcription with the rDNA unit. The grasshopper Eyprepocnemis plorans contains transcribed rDNA clusters on most of its A chromosomes, as well as non-transcribed rDNA clusters on the parasitic B chromosomes found in many populations. Here the structure of the E. plorans R2 element, its abundance relative to the number of rDNA units and its retrotransposition activity were determined. Animals screened from five populations contained on average over 12,000 rDNA units on their A chromosomes, but surprisingly only about 100 R2 elements. Monitoring the patterns of R2 insertions in individuals from these populations revealed only low levels of retrotransposition. The low rates of R2 insertion observed in E. plorans differ from the high levels of R2 insertion previously observed in insect species that have many fewer rDNA units. It is proposed that high levels of R2 are strongly selected against in E. plorans, because the rDNA transcription machinery in this species is unable to differentiate between R2-inserted and uninserted units. The B chromosomes of E. plorans contain an additional 7,000 to 15,000 rDNA units, but in contrast to the A chromosomes, from 150 to over 1,500 R2 elements. The higher concentration of R2 in the inactive B chromosomes rDNA clusters suggests these chromosomes can act as a sink for R2 insertions thus further reducing the level of insertions on the A chromosomes. These studies suggest an interesting evolutionary relationship between the parasitic B chromosomes and R2 elements. R2 non-LTR retrotransposons exclusively insert into the 28S rRNA genes of their host, and are expressed by co-transcription with the rDNA unit. The grasshopper Eyprepocnemis plorans contains transcribed rDNA clusters on most of its A chromosomes, as well as non-transcribed rDNA clusters on the parasitic B chromosomes found in many populations. Here the structure of the E. plorans R2 element, its abundance relative to the number of rDNA units and its retrotransposition activity were determined. Animals screened from five populations contained on average over 12,000 rDNA units on their A chromosomes, but surprisingly only about 100 R2 elements. Monitoring the patterns of R2 insertions in individuals from these populations revealed only low levels of retrotransposition. The low rates of R2 insertion observed in E. plorans differ from the high levels of R2 insertion previously observed in insect species that have many fewer rDNA units. It is proposed that high levels of R2 are strongly selected against in E. plorans , because the rDNA transcription machinery in this species is unable to differentiate between R2-inserted and uninserted units. The B chromosomes of E. plorans contain an additional 7,000 to 15,000 rDNA units, but in contrast to the A chromosomes, from 150 to over 1,500 R2 elements. The higher concentration of R2 in the inactive B chromosomes rDNA clusters suggests these chromosomes can act as a sink for R2 insertions thus further reducing the level of insertions on the A chromosomes. These studies suggest an interesting evolutionary relationship between the parasitic B chromosomes and R2 elements. |
Audience | Academic |
Author | Cabrero, Josefa Ruiz-Estévez, Mercedes Burke, William D Camacho, Juan Pedro M López-León, María Dolores Montiel, Eugenia E Eickbush, Thomas H |
AuthorAffiliation | Louisiana State University, United States of America 1 Departamento de Genética, Facultad de Ciencias, Universidad de Granada, Granada, Spain 2 Department of Biology, University of Rochester, Rochester, New York, United States of America |
AuthorAffiliation_xml | – name: 1 Departamento de Genética, Facultad de Ciencias, Universidad de Granada, Granada, Spain – name: 2 Department of Biology, University of Rochester, Rochester, New York, United States of America – name: Louisiana State University, United States of America |
Author_xml | – sequence: 1 givenname: Eugenia E surname: Montiel fullname: Montiel, Eugenia E organization: Departamento de Genética, Facultad de Ciencias, Universidad de Granada, Granada, Spain – sequence: 2 givenname: Josefa surname: Cabrero fullname: Cabrero, Josefa organization: Departamento de Genética, Facultad de Ciencias, Universidad de Granada, Granada, Spain – sequence: 3 givenname: Mercedes surname: Ruiz-Estévez fullname: Ruiz-Estévez, Mercedes organization: Departamento de Genética, Facultad de Ciencias, Universidad de Granada, Granada, Spain – sequence: 4 givenname: William D surname: Burke fullname: Burke, William D organization: Department of Biology, University of Rochester, Rochester, New York, United States of America – sequence: 5 givenname: Thomas H surname: Eickbush fullname: Eickbush, Thomas H organization: Department of Biology, University of Rochester, Rochester, New York, United States of America – sequence: 6 givenname: Juan Pedro M surname: Camacho fullname: Camacho, Juan Pedro M organization: Departamento de Genética, Facultad de Ciencias, Universidad de Granada, Granada, Spain – sequence: 7 givenname: María Dolores surname: López-León fullname: López-León, María Dolores organization: Departamento de Genética, Facultad de Ciencias, Universidad de Granada, Granada, Spain |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/24632855$$D View this record in MEDLINE/PubMed |
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Notes | ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 Competing Interests: The authors have declared that no competing interests exist. Conceived and designed the experiments: EEM JC THE JPMC MDLL. Performed the experiments: EEM JC MRE MDLL WDB. Analyzed the data: EEM JC MRE JPMC MDLL. Contributed reagents/materials/analysis tools: JC JPMC MDLL. Wrote the paper: EEM THE JPMC MDLL. |
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Snippet | R2 non-LTR retrotransposons exclusively insert into the 28S rRNA genes of their host, and are expressed by co-transcription with the rDNA unit. The grasshopper... |
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SubjectTerms | Amino Acid Sequence Animals Biology and Life Sciences Chromosomes Chromosomes, Insect Clusters Deoxyribonucleic acid DNA Drosophila melanogaster Gene Dosage Genes Genetic research Genomes Grasshoppers - genetics Insects Insertion Locusta migratoria Male Molecular Sequence Data Organisms Populations Position-Specific Scoring Matrices Proteins Retroelements Retrotransposition RNA rRNA 28S Sequence Alignment Transcription Transcription (Genetics) Transcription, Genetic Transposons |
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Title | Preferential occupancy of R2 retroelements on the B chromosomes of the grasshopper Eyprepocnemis plorans |
URI | https://www.ncbi.nlm.nih.gov/pubmed/24632855 https://www.proquest.com/docview/1507595377 https://search.proquest.com/docview/1508425132 https://pubmed.ncbi.nlm.nih.gov/PMC3954772 https://doaj.org/article/158c9badd13f438593408aa32b47ec0e http://dx.doi.org/10.1371/journal.pone.0091820 |
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