Functional Analysis of Water Stress-Responsive Soybean GmNAC003 and GmNAC004 Transcription Factors in Lateral Root Development in Arabidopsis
Explore this paper's citation graph
- Type
- article
- Published
- 2014-01-23
- Cited by
- 46
- References
- 80
- Access
- Open access
- OpenAlex
- https://openalex.org/W2027804510
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4106640
Keywords
Arabidopsis, Abscisic acid, Lateral root, Auxin, Transgene
References
- Plasticity of soybean (Glycine max (L.) Merrill) root system development under mild water deficit
- Plant gene networks in osmotic stress response: from genes to regulatory networks.
- Primer3 on the WWW for general users and for biologist programmers.
- Soybean NAC transcription factors promote abiotic stress tolerance and lateral root formation in transgenic plants.
- Accurate normalization of real-time quantitative RT-PCR data by geometric averaging of multiple internal control genes
- Arabidopsis NAC1 transduces auxin signal downstream of TIR1 to promote lateral root development.
- Elucidating the Germination Transcriptional Program Using Small Molecules1[W][OA]
- NAC proteins: regulation and role in stress tolerance.
- Genome-Wide Survey and Expression Analysis of the Plant-Specific NAC Transcription Factor Family in Soybean During Development and Dehydration Stress
- SINAT5 promotes ubiquitin-related degradation of NAC1 to attenuate auxin signals
- Progress studies of drought-responsive genes in rice
- Ethylene-promoted adventitious rooting and development of cortical air spaces (aerenchyma) in roots may be adaptive responses to flooding in Zea mays L
- Analysis of phosphate acquisition efficiency in different Arabidopsis accessions.
- Overproduction of Abscisic Acid in Tomato Increases Transpiration Efficiency and Root Hydraulic Conductivity and Influences Leaf Expansion1[OA]
- Cytokinins: metabolism and function in plant adaptation to environmental stresses.
- A rapid method for analysis of abscisic acid (ABA) in crude extracts of water stressed Arabidopsis thaliana plants by liquid chromatography--mass spectrometry in tandem mode.
- Complete inventory of soybean NAC transcription factors: sequence conservation and expression analysis uncover their distinct roles in stress response.
- NAC transcription factors: structurally distinct, functionally diverse.
- Functional genomics of soybean for improvement of productivity in adverse conditions
- Potential utilization of NAC transcription factors to enhance abiotic stress tolerance in plants by biotechnological approach
Cited by
- Soybean transcription factor ORFeome associated with drought resistance: a valuable resource to accelerate research on abiotic stress resistance
- Two NAC transcription factors from Caragana intermedia altered salt tolerance of the transgenic Arabidopsis
- Genome-Wide Identification and Expression Analysis of the CaNAC Family Members in Chickpea during Development, Dehydration and ABA Treatments
- ATDOF5.8 protein is the upstream regulator of ANAC069 and is responsive to abiotic stress.
- Quantitative Trait Loci Associated to Drought Adaptation in Pea (Pisum sativum L.)
- Proteomic Analysis of the Relationship between Metabolism and Nonhost Resistance in Soybean Exposed to Bipolaris maydis
- Gene expression regulation in roots under drought.
- The Novel Wheat Transcription Factor TaNAC47 Enhances Multiple Abiotic Stress Tolerances in Transgenic Plants
- Synthetic strategies for plant signalling studies: molecular toolbox and orthogonal platforms.
- Drought-Up-Regulated TaNAC69-1 is a Transcriptional Repressor of TaSHY2 and TaIAA7, and Enhances Root Length and Biomass in Wheat.
- Research progress on identification of QTLs and functional genes involved in salt tolerance in soybean.
- miRNA mediated regulation of NAC transcription factors in plant development and environment stress response
- Overexpression of a predominantly root-expressed NAC transcription factor in wheat roots enhances root length, biomass and drought tolerance
- Auxin is Involved in Lateral Root Formation Induced by Drought Stress in Tobacco Seedlings
- The soybean transcription factor GmNAC085 enhances drought tolerance in Arabidopsis
- Lateral Root Development in Potato Is Mediated by Stu-mi164 Regulation of NAC Transcription Factor
- Revisiting the Soybean GmNAC Superfamily
- Identification of drought stress-responsive proteins in common bean
- NAC Transcription Factors from Soybean (Glycine max L.) Differentially Regulated by Abiotic Stress
- A GmSIN1/GmNCED3s/GmRbohBs Feed-Forward Loop Acts as a Signal Amplifier That Regulates Root Growth in Soybean Exposed to Salt Stress[OPEN]
Related papers
- Transgenic expression of MYB15 confers enhanced sensitivity to abscisic acid and improved drought tolerance in Arabidopsis thaliana
- Auxin-induced inhibition of lateral root initiation contributes to root system shaping in Arabidopsis thaliana.
- OsIAA13-mediated auxin signaling is involved in lateral root initiation in rice.
- MM31/EIR1 promotes lateral root formation in Arabidopsis
- Mutation of MEDIATOR16 promotes plant biomass accumulation and root growth by modulating auxin signaling.
- A Kinetic Analysis of the Auxin Transcriptome Reveals Cell Wall Remodeling Proteins That Modulate Lateral Root Development in Arabidopsis[W][OPEN]
- MDR‐like ABC transporter AtPGP4 is involved in auxin‐mediated lateral root and root hair development