Literature DB >> 20647459

Chromosome size differences may affect meiosis and genome size.

John Wang1, Pei-Jiun Chen, George J Wang, Laurent Keller.   

Abstract

Genetic crosses in many organisms have shown that alleles of unlinked genes generally assort independently of one another during gamete formation. However, variation in chromosome size may affect the process of meiosis and lead to nonindependent assortment of chromosomes. We therefore examined chromosomes with insertions and found that they preferentially segregated away from the X chromosome during meiosis in Caenorhabditis elegans males. Conversely, chromosomes with deletions preferentially segregated with the X chromosome. The degree of segregation bias was significantly associated with the length of the insertion or deletion. Simulations revealed that this segregation bias leads to genome size reduction in hermaphroditic species, a pattern consistent with differences in genome sizes in the genus Caenorhabditis. These results suggest that insertions and deletions may affect chromosome segregation patterns.

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Year:  2010        PMID: 20647459     DOI: 10.1126/science.1190130

Source DB:  PubMed          Journal:  Science        ISSN: 0036-8075            Impact factor:   47.728


  19 in total

1.  Inter-chromosomal level of genome organization and longevity-related phenotypes in humans.

Authors:  Alexander M Kulminski; Irina Culminskaya; Anatoli I Yashin
Journal:  Age (Dordr)       Date:  2012-01-27

2.  Rapid genome shrinkage in a self-fertile nematode reveals sperm competition proteins.

Authors:  Da Yin; Erich M Schwarz; Cristel G Thomas; Rebecca L Felde; Ian F Korf; Asher D Cutter; Caitlin M Schartner; Edward J Ralston; Barbara J Meyer; Eric S Haag
Journal:  Science       Date:  2018-01-05       Impact factor: 47.728

Review 3.  Males, Outcrossing, and Sexual Selection in Caenorhabditis Nematodes.

Authors:  Asher D Cutter; Levi T Morran; Patrick C Phillips
Journal:  Genetics       Date:  2019-09       Impact factor: 4.562

4.  Independent recruitments of a translational regulator in the evolution of self-fertile nematodes.

Authors:  Alana V Beadell; Qinwen Liu; Dorothy M Johnson; Eric S Haag
Journal:  Proc Natl Acad Sci U S A       Date:  2011-11-21       Impact factor: 11.205

5.  Sex-biased gene expression and evolution of the x chromosome in nematodes.

Authors:  Sarah Elizabeth Albritton; Anna-Lena Kranz; Prashant Rao; Maxwell Kramer; Christoph Dieterich; Sevinç Ercan
Journal:  Genetics       Date:  2014-05-02       Impact factor: 4.562

Review 6.  Causes and consequences of the evolution of reproductive mode in Caenorhabditis nematodes.

Authors:  Cristel G Thomas; Gavin C Woodruff; Eric S Haag
Journal:  Trends Genet       Date:  2012-04-03       Impact factor: 11.639

7.  phiC31 integrase for recombination-mediated single-copy insertion and genome manipulation in Caenorhabditis elegans.

Authors:  Fang-Jung Yang; Chiao-Nung Chen; Tiffany Chang; Ting-Wei Cheng; Ni-Chen Chang; Chia-Yi Kao; Chih-Chi Lee; Yu-Ching Huang; Jung-Chen Hsu; Jengyi Li; Meiyeh J Lu; Shih-Peng Chan; John Wang
Journal:  Genetics       Date:  2022-02-04       Impact factor: 4.402

8.  Simplification and desexualization of gene expression in self-fertile nematodes.

Authors:  Cristel G Thomas; Renhua Li; Harold E Smith; Gavin C Woodruff; Brian Oliver; Eric S Haag
Journal:  Curr Biol       Date:  2012-10-25       Impact factor: 10.834

9.  Genome size correlates with reproductive fitness in seed beetles.

Authors:  Göran Arnqvist; Ahmed Sayadi; Elina Immonen; Cosima Hotzy; Daniel Rankin; Midori Tuda; Carl E Hjelmen; J Spencer Johnston
Journal:  Proc Biol Sci       Date:  2015-09-22       Impact factor: 5.349

10.  Caenorhabditis briggsae recombinant inbred line genotypes reveal inter-strain incompatibility and the evolution of recombination.

Authors:  Joseph A Ross; Daniel C Koboldt; Julia E Staisch; Helen M Chamberlin; Bhagwati P Gupta; Raymond D Miller; Scott E Baird; Eric S Haag
Journal:  PLoS Genet       Date:  2011-07-14       Impact factor: 5.917

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