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A metabolic daylength measurement system mediates winter photoperiodism in plants.


ABSTRACT: Plants have served as a preeminent study system for photoperiodism due to their propensity to flower in concordance with the seasons. A nearly singular focus on understanding photoperiodic flowering has prevented the discovery of other photoperiod measuring systems necessary for vegetative health. Here, we use bioinformatics to identify photoperiod-induced genes in Arabidopsis. We show that one, PP2-A13, is expressed exclusively in, and required for, plant fitness in short, winter-like photoperiods. We create a real-time photoperiod reporter, using the PP2-A13 promoter driving luciferase, and show that photoperiodic regulation is independent of the canonical CO/FT mechanism for photoperiodic flowering. We then reveal that photosynthesis combines with circadian-clock-controlled starch production to regulate cellular sucrose levels to control photoperiodic expression of PP2-A13. This work demonstrates the existence of a photoperiod measuring system housed in the metabolic network of plants that functions to control seasonal cellular health.

SUBMITTER: Liu W 

PROVIDER: S-EPMC8440495 | biostudies-literature | 2021 Sep

REPOSITORIES: biostudies-literature

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A metabolic daylength measurement system mediates winter photoperiodism in plants.

Liu Wei W   Feke Ann A   Leung Chun Chung CC   Tarté Daniel A DA   Yuan Wenxin W   Vanderwall Morgan M   Sager Garrett G   Wu Xing X   Schear Ariela A   Clark Damon A DA   Thines Bryan C BC   Gendron Joshua M JM  

Developmental cell 20210817 17


Plants have served as a preeminent study system for photoperiodism due to their propensity to flower in concordance with the seasons. A nearly singular focus on understanding photoperiodic flowering has prevented the discovery of other photoperiod measuring systems necessary for vegetative health. Here, we use bioinformatics to identify photoperiod-induced genes in Arabidopsis. We show that one, PP2-A13, is expressed exclusively in, and required for, plant fitness in short, winter-like photoperi  ...[more]

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