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A Rice NAC Transcription Factor Promotes Leaf Senescence via ABA Biosynthesis

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TLDR
A rice NAC transcription factor, OsNAC2, that participates in ABA-induced leaf senescence and elucidates the transcriptional network of ABA production during leaf senesence in rice is demonstrated.
Abstract
It is well known that abscisic acid (ABA)-induced leaf senescence and premature leaf senescence negatively affect the yield of rice (Oryza sativa). However, the molecular mechanism underlying this relationship, especially the upstream transcriptional network that modulates ABA level during leaf senescence, remains largely unknown. Here, we demonstrate a rice NAC transcription factor, OsNAC2, that participates in ABA-induced leaf senescence. Overexpression of OsNAC2 dramatically accelerated leaf senescence, whereas its knockdown lines showed a delay in leaf senescence. Chromatin immunoprecipitation-quantitative PCR, dual-luciferase, and yeast one-hybrid assays demonstrated that OsNAC2 directly activates expression of chlorophyll degradation genes, OsSGR and OsNYC3. Moreover, ectopic expression of OsNAC2 leads to an increase in ABA levels via directly up-regulating expression of ABA biosynthetic genes (OsNCED3 and OsZEP1) as well as down-regulating the ABA catabolic gene (OsABA8ox1). Interestingly, OsNAC2 is upregulated by a lower level of ABA but downregulated by a higher level of ABA, indicating a feedback repression of OsNAC2 by ABA. Additionally, reduced OsNAC2 expression leads to about 10% increase in the grain yield of RNAi lines. The novel ABA-NAC-SAGs regulatory module might provide a new insight into the molecular action of ABA to enhance leaf senescence and elucidates the transcriptional network of ABA production during leaf senescence in rice.

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Journal ArticleDOI

Transcriptome Profiling of Abscisic Acid-Related Pathways in SNAC4/9 -Silenced Tomato Fruits

TL;DR: The results highlight the relationship between SNAC4/9 and ABA in the regulation of tomato ripening, which may help provide a theoretical basis for further research on the mechanisms of tomato fruit ripening and senescence.
Journal ArticleDOI

HEBE, a novel positive regulator of senescence in Solanum lycopersicum.

TL;DR: How HEB downregulation negatively affects the progression of senescence, resulting in changes in transcription of senescing-promoting genes, as well as the activity of enzymes involved in chlorophyll degradation, thereby explaining the stay-green phenotype is described.
Journal ArticleDOI

A rice XANTHINE DEHYDROGENASE gene regulates leaf senescence and response to abiotic stresses

- 01 Apr 2022 - 
TL;DR: In this article , a mutant with early leaf senescence and reduced tillering was identified, and the mutation of ESL1 led to decreases in allantoin, allantoate, and ABA contents.
Journal ArticleDOI

Heterologous expression of Solanum tuberosum NAC1 gene confers enhanced tolerance to salt stress in transgenic Nicotiana benthamiana

TL;DR: P phenotypic analysis results showed that StNAC1-overexpressing transgenic plants had not only higher seed germination and green leaf rates, but also accumulated less ROS and more proline than wide-type plants under salt stress, which resulted in improving transgenic Plants salt tolerance.
Journal ArticleDOI

Comprehensive Genomic Characterization of the NAC Transcription Factors and Their Response to Drought Stress in Dendrobium catenatum

TL;DR: In this article , the NAC gene family of Dendrobium catenatum was identified and analyzed by bioinformatics methods using RNA-seq data and the quantitative real-time reverse transcription-polymerase chain reaction (RT-qPCR) method.
References
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Journal ArticleDOI

Abscisic Acid: Emergence of a Core Signaling Network

TL;DR: A new model for ABA action has been proposed and validated, in which the soluble PYR/PYL/RCAR receptors function at the apex of a negative regulatory pathway to directly regulate PP2C phosphatases, which in turn directly regulate SnRK2 kinases.
Journal ArticleDOI

Abscisic acid biosynthesis and catabolism

TL;DR: Identification of ABA metabolic genes has revealed that multiple metabolic steps are differentially regulated to fine-tune the ABA level at both transcriptional and post-transcriptional levels.
Journal ArticleDOI

Transient expression vectors for functional genomics, quantification of promoter activity and RNA silencing in plants

TL;DR: In this article, a series of plasmid vectors for transient gene expression using Agrobacterium, infiltrated into Nicotiana benthamiana leaves, are described and compared to conventional binary vectors for stable transformation such as transformation selection genes.
Journal ArticleDOI

NAC transcription factors: structurally distinct, functionally diverse

TL;DR: The biological and molecular functions of the NAC family are summarized, paying particular attention to the intricate regulation of NAC protein level and localization, and to the first indications of Nac participation in transcription factor networks.
Journal ArticleDOI

Role of arabidopsis MYC and MYB homologs in drought- and abscisic acid-regulated gene expression.

TL;DR: Results indicate that both the rd22BP1 (MYC) and ATMYB2 (MYB) proteins function as transcriptional activators in the dehydration- and ABA-inducible expression of the r d22 gene.
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