GENETICS Journal Highlights for March 2013
Posted: March 6, 2013 at 10:43 am
Newswise Bethesda, MDMarch 5, 2013 Listed below are the selected highlights for the March 2013 issue of the Genetics Society of Americas journal, GENETICS. The March issue is available online at http://www.genetics.org/content/current. Please credit GENETICS, Vol. 193, MARCH 2013, Copyright 2013.
Please feel free to forward to colleagues who may be interested in these articles on cellular genetics; population and evolutionary genetics; genome integrity and transmission; and genome and systems biology.
ISSUE HIGHLIGHTS Cellular Genetics Systems genetics implicates cytoskeletal genes in oocyte control of cloned embryo quality, pp. 877896 Yong Cheng, John Gaughan, Uros Midic, Zhiming Han, Cheng-Guang Liang, Bela G. Patel, and Keith E. Latham Cloning by somatic cell nuclear transfer is a powerful technology that offers a unique means of dissecting developmental processes. This article reveals oocyte-expressed genes that support early cloned embryo development. The major category of genes encodes proteins associated with the subcortical cytoskeleton and cytoskeletal elements such as the spindle. Discovery that cytoskeleton-associated proteins are key determinants of early clone development provides new insight into the pathways that support cloning.
Population and Evolutionary Genetics Molecular characterization and evolution of self- incompatibility genes in Arabidopsis thaliana: The case of the Sc haplotype, pp. 985994 Kathleen G. Dwyer, Martin T. Berger, Rimsha Ahmed, Molly K. Hritzo, Amanda A. McCulloch, Michael J. Price, Nicholas J. Serniak,Leonard T. Walsh, June B. Nasrallah, and Mikhail E. Nasrallah The switch from cross-pollination to self-pollination in Arabidospis thaliana was accompanied by inactivation of the two S-locus self recognition genes that determine self-incompatibility. This article reports a structural and functional analysis of an S haplotype belonging to the one group of A. thaliana S haplotypes that had remained largely uncharacterized. The results reveal the various ways the S locus was inactivated during or after the multiple independent switches to self-fertility that occurred in A. thaliana.
Population and Evolutionary Genetics Detecting signatures of selection through haplotype differentiation among hierarchically structured populations, pp. 929941 Mara Ins Fariello, Simon Boitard, Hugo Naya, Magali SanCristobal, and Bertrand Servin One strategy to identify genes underlying traits influenced by adaptation is to look for genomic regions with outstanding differences between populations, typically using the FST statistic. But FST accounts neither for relatedness between populations nor for correlation between neighboring loci. These authors present a new approach that incorporates both features and show it provides increased power to detect selection events. Their approach promises a better understanding of the genetic mechanisms underlying adaptation.
Genome Integrity and Transmission Mutations to the piRNA pathway component aubergine enhance meiotic drive of segregation distorter in Drosophila melanogaster, pp. 771784 Selena L. Gell and Robert A. Reenan How Segregation Distorter (SD) in Drosophila melanogaster violates Mendels laws by enhancing its own transmission in meiosis remains a mystery, despite 60 years of study. Gell and Reenan discovered a novel role for the Piwi-interacting RNA (piRNA) pathway in this phenomenon. The fact that defects in the piRNA pathway, which is thought to defend against transposon invasion of the germline, enhances segregation distortion of SD suggests that the piRNA pathway also suppresses this unusual selfish genetic element.
Review Long noncoding RNAs: Past, present, and future, pp. 651669 Johnny T. Y. Kung, David Colognori, and Jeannie T. Lee Long noncoding RNAs are emerging as potential key players in all aspects of biology. However, the claim that much of the genome is transcribed into a complex regulatory machinery is controversial. The authors frame the debate in its historical context and offer general lessons distilled from current knowledge of the functions of these RNAs, providing an incisive snapshot of this rapidly moving field.
Population and Evolutionary Genetics Synchronous waves of failed soft sweeps in the laboratory: Remarkably rampant clonal interference of alleles at a single locus, pp. 943952 Ming-Chun Lee and Christopher J. Marx From populations of microbes evolving in the laboratory to human genomic diversity, it is increasingly clear that adaptation often involves multiple beneficial alleles at the same locus that rise in frequency together as a soft sweep. This article reports a dramatic example of this during experimental evolution of Methylobacterium, where up to 17 similar alleles were simultaneously present in a single population. Their frequencies rose and fell at different times across populations but synchronously within each population as a single wave of genotypes of nearly equivalently fit genotypes.
Genome and Systems Biology Modeling causality for pairs of phenotypes in system genetics, pp. 10031013 Elias Chaibub Neto, Aimee T. Broman, Mark P. Keller, Alan D. Attie, Bin Zhang, Jun Zhu, and Brian S. Yandell To disentangle causal relationships among phenotypes in segregating populations, these investigators modeled causality for pairs of phenotypes. Their resulting tests enable biologists to choose for investigation a few gene pairs from a short rank-ordered list of candidates. The authors provide software tools and show their utility with yeast datasets.
Cellular Genetics A novel interaction between aging and ER overload in a protein conformational dementia, pp. 865876 Angela Schipanski, Sascha Lange, Alexandra Segref, Aljona Gutschmidt, David A. Lomas, Elena Miranda, Michaela Schweizer, Thorsten Hoppe, and Markus Glatzel This article describes a novel interaction between aging and ER overload. The authors studied a dementia disease in Caenorhabdidis elegans and mice to learn how disturbed protein homeostasis contributes to disease development. They show that induction of the unfolded protein response is critical for age-related disease progression. Their results suggest that the unfolded protein response may offer a therapeutic target for dementias.
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