Literature DB >> 28626007

Establishment of Photosynthesis through Chloroplast Development Is Controlled by Two Distinct Regulatory Phases.

Carole Dubreuil1, Xu Jin1, Juan de Dios Barajas-López1, Timothy C Hewitt2, Sandra K Tanz2, Thomas Dobrenel1, Wolfgang P Schröder1,3, Johannes Hanson1, Edouard Pesquet1,4, Andreas Grönlund1, Ian Small2, Åsa Strand5.   

Abstract

Chloroplasts develop from undifferentiated proplastids present in meristematic tissue. Thus, chloroplast biogenesis is closely connected to leaf development, which restricts our ability to study the process of chloroplast biogenesis per se. As a consequence, we know relatively little about the regulatory mechanisms behind the establishment of the photosynthetic reactions and how the activities of the two genomes involved are coordinated during chloroplast development. We developed a single cell-based experimental system from Arabidopsis (Arabidopsis thaliana) with high temporal resolution allowing for investigations of the transition from proplastids to functional chloroplasts. Using this unique cell line, we could show that the establishment of photosynthesis is dependent on a regulatory mechanism involving two distinct phases. The first phase is triggered by rapid light-induced changes in gene expression and the metabolome. The second phase is dependent on the activation of the chloroplast and generates massive changes in the nuclear gene expression required for the transition to photosynthetically functional chloroplasts. The second phase also is associated with a spatial transition of the chloroplasts from clusters around the nucleus to the final position at the cell cortex. Thus, the establishment of photosynthesis is a two-phase process with a clear checkpoint associated with the second regulatory phase allowing coordination of the activities of the nuclear and plastid genomes.
© 2018 American Society of Plant Biologists. All Rights Reserved.

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Year:  2017        PMID: 28626007      PMCID: PMC5813571          DOI: 10.1104/pp.17.00435

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  45 in total

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