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RAB GTPases in the Basal Land Plant Marchantia polymorpha. | LitMetric

RAB GTPases in the Basal Land Plant Marchantia polymorpha.

Plant Cell Physiol

Division of Cellular Dynamics, National Institute for Basic Biology, Nishigonaka 38, Myodaiji, Okazaki, Aichi, 444-8585 Japan.

Published: April 2018

AI Article Synopsis

  • The RAB GTPase is crucial for membrane trafficking, which is essential for cell survival and biological functions.
  • The study focuses on the liverwort Marchantia polymorpha, analyzing its unique RAB GTPase genes to understand how membrane trafficking has evolved in green plants.
  • Findings reveal that while many RAB GTPases are widely expressed, some show specialized functions, indicating that Marchantia has distinct membrane trafficking pathways not found in other plants like Arabidopsis.

Article Abstract

The RAB GTPase is an evolutionarily conserved machinery component of membrane trafficking, which is the fundamental system for cell viability and higher order biological functions. The composition of RAB GTPases in each organism is closely related to the complexity and organization of the membrane trafficking pathway, which has been developed uniquely to realize the organism-specific membrane trafficking system. Comparative genomics has suggested that terrestrialization and/or multicellularization were associated with the expansion of membrane trafficking pathways in green plants, which has yet to be validated in basal land plant lineages. To obtain insight into the diversification of membrane trafficking systems in green plants, we analyzed RAB GTPases encoded in the genome of the liverwort Marchantia polymorpha in a comprehensive manner. We isolated all genes for RAB GTPases in Marchantia and analyzed their expression patterns and subcellular localizations in thallus cells. While a majority of MpRAB GTPases exhibited a ubiquitous expression pattern, specific exceptions were also observed; MpRAB2b, which contains a sequence similar to an intraflagellar transport protein at the C-terminal region; and MpRAB23, which has been secondarily lost in angiosperms, were specifically expressed in the male reproductive organ. MpRAB21, which is another RAB GTPase whose homolog is absent in Arabidopsis, exhibited endosomal localization with RAB5 members in Marchantia. These results suggest that Marchantia possesses unique membrane trafficking pathways involving a unique repertoire of RAB GTPases.

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Source
http://dx.doi.org/10.1093/pcp/pcy027DOI Listing

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