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Πέμπτη 27 Ιουλίου 2017

The Caenorhabditis elegans Female State: Decoupling theTranscriptomic Effects of Aging and Sperm-Status

Understanding genome and gene function in a whole organism requires us to fully comprehend the life cycle and the physiology of the organism in question. Caenorhabditis elegans XX animals are hermaphrodites that exhaust their sperm after 3 days of egg-laying. Even though C. elegans can live for many days after cessation of egg-laying, the molecular physiology of this state has not been as intensely studied as other parts of the life cycle, despite documented changes in behavior and metabolism. To study the effects of sperm depletion and aging of C. elegans during the first 6 days of adulthood, we measured the transcriptomes of 1st day adult hermaphrodites; 6th day sperm-depleted adults; and at the same time points, mutant fog-2(lf) worms that have a feminized germline phenotype. We found that we could separate the effects of biological aging from sperm depletion. For a large subset of genes, young adult fog-2(lf) animals had the same gene expression changes as sperm-depleted 6th day wild-type hermaphrodites, and these genes did not change expression when fog-2(lf) females reached the 6th day of adulthood. Taken together, this indicates that changing sperm status causes a change in the internal state of the worm, which we call the female-like state. Our data provide a high-quality picture of the changes that happen in global gene expression throughout the period of early aging in the worm.



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