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Life Sciences Commons

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Biology

Missouri University of Science and Technology

Series

Reproduction

Publication Year

Articles 1 - 2 of 2

Full-Text Articles in Life Sciences

Reproductive Aging In Caenorhabditis Elegans: From Molecules To Ecology, Andrea Scharf, Franziska Pohl, Brian M. Egan, Zuzana Kocsisova, Kerry Kornfeld Sep 2021

Reproductive Aging In Caenorhabditis Elegans: From Molecules To Ecology, Andrea Scharf, Franziska Pohl, Brian M. Egan, Zuzana Kocsisova, Kerry Kornfeld

Biological Sciences Faculty Research & Creative Works

Aging animals display a broad range of progressive degenerative changes, and one of the most fascinating is the decline of female reproductive function. In the model organism Caenorhabditis elegans, hermaphrodites reach a peak of progeny production on day 2 of adulthood and then display a rapid decline; progeny production typically ends by day 8 of adulthood. Since animals typically survive until day 15 of adulthood, there is a substantial post reproductive lifespan. Here we review the molecular and cellular changes that occur during reproductive aging, including reductions in stem cell number and activity, slowing meiotic progression, diminished Notch signaling, and …


The Biophysical Limitations In Physiological Transport And Exchange In Plants Grown In Microgravity, D. M. Porterfield Jul 2002

The Biophysical Limitations In Physiological Transport And Exchange In Plants Grown In Microgravity, D. M. Porterfield

Biological Sciences Faculty Research & Creative Works

This paper describes how changes in the physical behavior of fluids and gases in microgravity can limit the physiological transport and exchange in higher plants. These types of effects are termed indirect effects of microgravity because they are not due to gravity interacting with the mass of the plant body itself. The impact of limiting gravity-dependent transport phenomena has been analyzed by the use of mathematical modeling to simulate and compare biophysical transport in the 1g and spaceflight environments. These data clearly show that the microgravity environment induces significant limitations on basic physiological and biochemical processes within the aerial and …