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Characterisation of evolutionarily conserved key players affecting eukaryotic flagellar motility and fertility using a moss model.


ABSTRACT: Defects in flagella/cilia are often associated with infertility and disease. Motile male gametes (sperm cells) are an ancestral eukaryotic trait that has been lost in several lineages like flowering plants. Here, we made use of a phenotypic male fertility difference between two moss (Physcomitrella patens) ecotypes to explore spermatozoid function. We compare genetic and epigenetic variation as well as expression profiles between the Gransden and Reute ecotype to identify a set of candidate genes associated with moss male infertility. We generated a loss-of-function mutant of a coiled-coil domain containing 39 (ccdc39) gene that is part of the flagellar hydin network. Defects in mammal and algal homologues of this gene coincide with a loss of fertility, demonstrating the evolutionary conse

SUBMITTER: Meyberg R 

PROVIDER: S-EPMC8224819 | biostudies-literature | 2020 Jul

REPOSITORIES: biostudies-literature

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