Antisense translation requirement for planning external environment sensing. (Q84239): Difference between revisions
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(Removed claim: summary (P836): Eucartic genomes include plantations are pervasively trans-crisbeam producing a Myriad of non-prosthesis encoding RNA Transcripts (ncRNA), including anti-sense Transcripts.Altshough the prevalent nature of antisense transcription is now well accepted.In this application, there shall be no alternative environment regulation in favour of a novel environment.In the template for regulation by external signals, of a master regulator of seed dormanc...) |
(Created claim: summary (P836): Eukaryotic genomes including plants are pervasively transcribed producing a myriad of non-protein-coding RNA transcripts (ncRNA), including antisense transcripts. Although the prevalent nature of antisense transcription is now well accepted, its functional consequence is much less appreciated. In this application we propose existence of a novel, generic mechanism of Arabidopsis gene regulation by long, non-protein-coding antisense transcription...) |
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Eukaryotic genomes including plants are pervasively transcribed producing a myriad of non-protein-coding RNA transcripts (ncRNA), including antisense transcripts. Although the prevalent nature of antisense transcription is now well accepted, its functional consequence is much less appreciated. In this application we propose existence of a novel, generic mechanism of Arabidopsis gene regulation by long, non-protein-coding antisense transcription in response to external environment. We will combine an in-depth analysis of antisense transcription absolute requirement for regulation by external signals, of a master regulator of seed dormancy – DOG1 with several, genome-wide approaches to test the proposed mechanism. Finally we will explore the mechanistic aspects of how DOG1 protein controls plant stress response. (English) | |||||||||||||||
Property / summary: Eukaryotic genomes including plants are pervasively transcribed producing a myriad of non-protein-coding RNA transcripts (ncRNA), including antisense transcripts. Although the prevalent nature of antisense transcription is now well accepted, its functional consequence is much less appreciated. In this application we propose existence of a novel, generic mechanism of Arabidopsis gene regulation by long, non-protein-coding antisense transcription in response to external environment. We will combine an in-depth analysis of antisense transcription absolute requirement for regulation by external signals, of a master regulator of seed dormancy – DOG1 with several, genome-wide approaches to test the proposed mechanism. Finally we will explore the mechanistic aspects of how DOG1 protein controls plant stress response. (English) / rank | |||||||||||||||
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Property / summary: Eukaryotic genomes including plants are pervasively transcribed producing a myriad of non-protein-coding RNA transcripts (ncRNA), including antisense transcripts. Although the prevalent nature of antisense transcription is now well accepted, its functional consequence is much less appreciated. In this application we propose existence of a novel, generic mechanism of Arabidopsis gene regulation by long, non-protein-coding antisense transcription in response to external environment. We will combine an in-depth analysis of antisense transcription absolute requirement for regulation by external signals, of a master regulator of seed dormancy – DOG1 with several, genome-wide approaches to test the proposed mechanism. Finally we will explore the mechanistic aspects of how DOG1 protein controls plant stress response. (English) / qualifier | |||||||||||||||
point in time: 14 October 2020
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Revision as of 12:31, 14 October 2020
Project in Poland financed by DG Regio
Language | Label | Description | Also known as |
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English | Antisense translation requirement for planning external environment sensing. |
Project in Poland financed by DG Regio |
Statements
3,500,000.0 zloty
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3,500,000.0 zloty
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100.0 percent
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1 December 2017
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30 November 2020
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INSTYTUT BIOCHEMII I BIOFIZYKI POLSKIEJ AKADEMII NAUK
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Eukaryotic genomes including plants are pervasively transcribed producing a myriad of non-protein-coding RNA transcripts (ncRNA), including antisense transcripts. Although the prevalent nature of antisense transcription is now well accepted, its functional consequence is much less appreciated. In this application we propose existence of a novel, generic mechanism of Arabidopsis gene regulation by long, non-protein-coding antisense transcription in response to external environment. We will combine an in-depth analysis of antisense transcription absolute requirement for regulation by external signals, of a master regulator of seed dormancy - DOG1 with several, genome-wide approaches to test the proposed mechanism. Finally we will explore the mechanistic aspects of how DOG1 protein controls plant stress response. (Polish)
0 references
Eukaryotic genomes including plants are pervasively transcribed producing a myriad of non-protein-coding RNA transcripts (ncRNA), including antisense transcripts. Although the prevalent nature of antisense transcription is now well accepted, its functional consequence is much less appreciated. In this application we propose existence of a novel, generic mechanism of Arabidopsis gene regulation by long, non-protein-coding antisense transcription in response to external environment. We will combine an in-depth analysis of antisense transcription absolute requirement for regulation by external signals, of a master regulator of seed dormancy – DOG1 with several, genome-wide approaches to test the proposed mechanism. Finally we will explore the mechanistic aspects of how DOG1 protein controls plant stress response. (English)
14 October 2020
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Identifiers
POIR.04.04.00-00-3C97/16
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