PIN-Dependent Auxin Transport: Action, Regulation, and Evolution

PIN-зависимый транспорт ауксина: функционирование, регуляция и эволюция
Maciek Adamowski, Jiřı́ Friml
2015-01-01

PIN localizationPIN proteinsauxin transportplant developmentpolar auxin transport
Auxin participates in a multitude of developmental processes, as well as responses to environmental cues. Compared with other plant hormones, auxin exhibits a unique property, as it undergoes directional, cell-to-cell transport facilitated by plasma membrane-localized transport proteins. Among them, a prominent role has been ascribed to the PIN family of auxin efflux facilitators. PIN proteins direct polar auxin transport on account of their asymmetric subcellular localizations. In this review, we provide an overview of the multiple developmental roles of PIN proteins, including the atypical endoplasmic reticulum-localized members of the family, and look at the family from an evolutionary perspective. Next, we cover the cell biological and molecular aspects of PIN function, in particular the establishment of their polar subcellular localization. Hormonal and environmental inputs into the regulation of PIN action are summarized as well.
1
Auxin has a distinctive directional, cell-to-cell transport system mediated by plasma membrane-localized transport proteins.
2
PIN activity is regulated through cell-biological and molecular mechanisms controlling polar subcellular localization, as well as hormonal and environmental inputs.
3
PIN proteins are central auxin efflux facilitators whose asymmetric subcellular localization establishes polar auxin transport.
4
PIN proteins contribute to multiple developmental processes, including functions performed by atypical endoplasmic reticulum-localized family members.
5
The PIN family is examined from an evolutionary perspective, linking its diversification to auxin transport functions.

PIN family auxin efflux facilitators and their PIN-dependent directional auxin transport in plants

Developmental roles, evolutionary relationships, polar subcellular localization, and hormonal and environmental regulation of PIN proteins and PIN-dependent auxin transport

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2015-01-01
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Maciek Adamowski
Jiřı́ Friml
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