Transcriptional and Post-transcriptional Regulation of Plastid Gene Expression During Barley Chloroplast Development

Transcriptional and Post-transcriptional Regulation of Plastid Gene Expression During Barley Chloroplast Development
Title Transcriptional and Post-transcriptional Regulation of Plastid Gene Expression During Barley Chloroplast Development PDF eBook
Author Minkyun Kim
Publisher
Pages 322
Release 1995
Genre
ISBN

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Regulation of Plastid Gene Expression During Chloroplast Biogenesis in Barley

Regulation of Plastid Gene Expression During Chloroplast Biogenesis in Barley
Title Regulation of Plastid Gene Expression During Chloroplast Biogenesis in Barley PDF eBook
Author Brian Jeffrey Baumgartner
Publisher
Pages 280
Release 1991
Genre Barley
ISBN

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The Proteins of Plastid Nucleoids – Structure, Function and Regulation

The Proteins of Plastid Nucleoids – Structure, Function and Regulation
Title The Proteins of Plastid Nucleoids – Structure, Function and Regulation PDF eBook
Author Thomas Pfannschmidt
Publisher Frontiers Media SA
Pages 113
Release 2016-09-13
Genre Botany
ISBN 2889199274

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Plastids are plant cell-specific organelles of endosymbiotic origin that contain their own genome, the so-called plastome. Its proper expression is essential for faithful chloroplast biogenesis during seedling development and for the establishment of photosynthetic and other biosynthetic functions in the organelle. The structural organisation, replication and expression of this plastid genome, thus, has been studied for many years, but many essential steps are still not understood. Especially, the structural and functional involvement of various regulatory proteins in these processes is still a matter of research. Studies from the last two decades demonstrated that a plethora of proteins act as specific regulators during replication, transcription, post-transcription, translation and post-translation accommodating a proper inheritance and expression of the plastome. Their number exceeds by far the number of the genes encoded by the plastome suggesting that a strong evolutionary pressure is maintaining the plastome in its present stage. The plastome gene organisation in vascular plants was found to be highly conserved, while algae exhibit a certain flexibility in gene number and organisation. These regulatory proteins are, therefore, an important determinant for the high degree of conservation in plant plastomes. A deeper understanding of individual roles and functions of such proteins would improve largely our understanding of plastid biogenesis and function, a knowledge that will be essential in the development of more efficient and productive plants for agriculture. The latter represents a major socio-economic need of fast growing mankind that asks for increased supply of food, fibres and biofuels in the coming decades despite the threats exerted by global change and fast spreading urbanisation.

Light-induced Gene Expression During Barley Chloroplast Development

Light-induced Gene Expression During Barley Chloroplast Development
Title Light-induced Gene Expression During Barley Chloroplast Development PDF eBook
Author Aukje Hubertiena Berends Sexton
Publisher
Pages 278
Release 1989
Genre Chloroplasts
ISBN

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Regulation of Chloroplast Gene Expression During Light-induced Development in Barley

Regulation of Chloroplast Gene Expression During Light-induced Development in Barley
Title Regulation of Chloroplast Gene Expression During Light-induced Development in Barley PDF eBook
Author Patricia Elaine Gamble
Publisher
Pages 360
Release 1989
Genre Barley
ISBN

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Plastid Proteostasis: Relevance of Transcription, Translation and Post-Translational Modifications

Plastid Proteostasis: Relevance of Transcription, Translation and Post-Translational Modifications
Title Plastid Proteostasis: Relevance of Transcription, Translation and Post-Translational Modifications PDF eBook
Author Fiammetta Alagna
Publisher Frontiers Media SA
Pages 112
Release 2017-12-28
Genre
ISBN 288945343X

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Due to their bacterial endosymbiotic origin plastids are organelles with both nuclear-encoded and plastid-encoded proteins. Therefore, a highly integrated modulation of gene expression between the nucleus and the plastome is needed in plant cell development. Plastids have retained for the most part a prokaryotic gene expression machinery but, differently from prokaryotes and eukaryotes, they have largely abandoned transcriptional control and switched to predominantly translational control of their gene expression. Some transcriptional regulation is known to occur, but the coordinate expression between the nucleus and the plastome takes place mainly through translational regulation. However, the regulatory mechanisms of plastid gene expression (PGE) are mediated by intricate plastid-nuclear interactions and are still far from being fully understood. Although, for example, translational autoregulation mechanisms in algae have been described for subunits of heteromeric protein complexes and termed control by epistasy of synthesis (CES), only few autoregulatory proteins have been identified in plant plastids. It should be noted of course that PGE in C. reinhardtii is different from that in plants in many aspects. Another example of investigation in this research area is to understand the interactions that occur during RNA binding between nucleus-encoded RNA-binding proteins and the respective RNA sequences, and how this influences the translation initiation process. In addition to this, the plastid retains a whole series of mechanisms for the preservation of its protein balance (proteostasis), including specific proteases, as well as molecular chaperones and enzymes useful in protein folding. After synthesis, plastid proteins must rapidly fold into stable three dimensional structures and often undergo co- and posttranslational modifications to perform their biological mission, avoiding aberrant folding, aggregation and targeting with the help of molecular chaperones and proteases. We believe that this topic is highly interesting for many research areas because the regulation of PGE is not only of wide interest for plant biologists but has also biotechnological implications. Indeed, plastid transformation turns out to be a very promising tool for the production of recombinant proteins in plants, yet some limitations must still be overcome and we believe that this is mainly due to our limited knowledge of the mechanisms in plastids influencing the maintenance of proteostasis.

Cell and Molecular Biology of Plastids

Cell and Molecular Biology of Plastids
Title Cell and Molecular Biology of Plastids PDF eBook
Author Ralph Bock
Publisher Springer Science & Business Media
Pages 535
Release 2007-09-19
Genre Science
ISBN 3540753761

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The present book provides a comprehensive overview of our current knowledge on plastid biogenesis, plastid-nuclear communication, and the regulation of plastid gene expression at all levels. It also assesses the state-of-the-art in key technologies, such as proteomics and chloroplast transformation. Written by recognized experts in the field, the book further covers crucial post-translational processes in plastid biogenesis and function, including protein processing.