# Plant Molecular Biology Research

**Type:** Topics  
**Canonical URL:** https://scholariq.org/topics/plant-molecular-biology-research/

## Facts

| Field | Value |
| --- | --- |
| Description | This cluster of papers focuses on the molecular mechanisms underlying plant development, with a particular emphasis on the roles of microRNAs, auxin, gene expression regulation, epigenetic mechanisms, transcription factors, genome-wide analyses, cytokinin signaling, and the control of flowering time. |
| Domain | Life Sciences |
| Field | Agricultural and Biological Sciences |
| OpenAlex ID | t10184 |
| Works | 215 |

## Topic papers all

Showing 15 of 215.

- [The Genome of Black Cottonwood, <i>Populus trichocarpa</i> (Torr. &amp; Gray)](https://scholariq.org/papers/the-genome-of-black-cottonwood-i-populus-trichocarpa-i-torr-and-amp-gray/)
- [Two Transcription Factors, DREB1 and DREB2, with an EREBP/AP2 DNA Binding Domain Separate Two Cellular Signal Transduction Pathways in Drought- and Low-Temperature-Responsive Gene Expression, Respectively, in Arabidopsis](https://scholariq.org/papers/two-transcription-factors-dreb1-and-dreb2-with-an-erebp-ap2-dna-binding-domain/)
- [Abscisic Acid Inhibits Type 2C Protein Phosphatases via the PYR/PYL Family of START Proteins](https://scholariq.org/papers/abscisic-acid-inhibits-type-2c-protein-phosphatases-via-the-pyr-pyl-family-of/)
- [TRANSCRIPTIONAL REGULATORY NETWORKS IN CELLULAR RESPONSES AND TOLERANCE TO DEHYDRATION AND COLD STRESSES](https://scholariq.org/papers/transcriptional-regulatory-networks-in-cellular-responses-and-tolerance-to/)
- [Regulators of PP2C Phosphatase Activity Function as Abscisic Acid Sensors](https://scholariq.org/papers/regulators-of-pp2c-phosphatase-activity-function-as-abscisic-acid-sensors/)
- [Arabidopsis AtMYC2 (bHLH) and AtMYB2 (MYB) Function as Transcriptional Activators in Abscisic Acid Signaling](https://scholariq.org/papers/arabidopsis-atmyc2-bhlh-and-atmyb2-myb-function-as-transcriptional-activators-in/)
- [Improving plant drought, salt, and freezing tolerance by gene transfer of a single stress-inducible transcription factor](https://scholariq.org/papers/improving-plant-drought-salt-and-freezing-tolerance-by-gene-transfer-of-a-single/)
- [DNA-Binding Specificity of the ERF/AP2 Domain of Arabidopsis DREBs, Transcription Factors Involved in Dehydration- and Cold-Inducible Gene Expression](https://scholariq.org/papers/dna-binding-specificity-of-the-erf-ap2-domain-of-arabidopsis-drebs-transcription/)
- [A novel cis-acting element in an Arabidopsis gene is involved in responsiveness to drought, low-temperature, or high-salt stress.](https://scholariq.org/papers/a-novel-cis-acting-element-in-an-arabidopsis-gene-is-involved-in-responsiveness/)
- [Monitoring the expression profiles of 7000 <i>Arabidopsis</i> genes under drought, cold and high‐salinity stresses using a full‐length cDNA microarray](https://scholariq.org/papers/monitoring-the-expression-profiles-of-7000-i-arabidopsis-i-genes-under-drought/)
- [BAK1, an Arabidopsis LRR Receptor-like Protein Kinase, Interacts with BRI1 and Modulates Brassinosteroid Signaling](https://scholariq.org/papers/bak1-an-arabidopsis-lrr-receptor-like-protein-kinase-interacts-with-bri1-and/)
- [Root Signals and the Regulation of Growth and Development of Plants in Drying Soil](https://scholariq.org/papers/root-signals-and-the-regulation-of-growth-and-development-of-plants-in-drying/)
- [Regulation of drought tolerance by gene manipulation of 9‐<i>cis</i>‐epoxycarotenoid dioxygenase, a key enzyme in abscisic acid biosynthesis in <i>Arabidopsis</i>](https://scholariq.org/papers/regulation-of-drought-tolerance-by-gene-manipulation-of-9-i-cis-i/)
- [Research on plant abiotic stress responses in the post‐genome era: past, present and future](https://scholariq.org/papers/research-on-plant-abiotic-stress-responses-in-the-post-genome-era-past-present/)
- [WRKY transcription factors in plant responses to stresses](https://scholariq.org/papers/wrky-transcription-factors-in-plant-responses-to-stresses/)

## Topic primary papers

Showing 15 of 89.

- [The Genome of Black Cottonwood, <i>Populus trichocarpa</i> (Torr. &amp; Gray)](https://scholariq.org/papers/the-genome-of-black-cottonwood-i-populus-trichocarpa-i-torr-and-amp-gray/)
- [Two Transcription Factors, DREB1 and DREB2, with an EREBP/AP2 DNA Binding Domain Separate Two Cellular Signal Transduction Pathways in Drought- and Low-Temperature-Responsive Gene Expression, Respectively, in Arabidopsis](https://scholariq.org/papers/two-transcription-factors-dreb1-and-dreb2-with-an-erebp-ap2-dna-binding-domain/)
- [TRANSCRIPTIONAL REGULATORY NETWORKS IN CELLULAR RESPONSES AND TOLERANCE TO DEHYDRATION AND COLD STRESSES](https://scholariq.org/papers/transcriptional-regulatory-networks-in-cellular-responses-and-tolerance-to/)
- [Monitoring the expression profiles of 7000 <i>Arabidopsis</i> genes under drought, cold and high‐salinity stresses using a full‐length cDNA microarray](https://scholariq.org/papers/monitoring-the-expression-profiles-of-7000-i-arabidopsis-i-genes-under-drought/)
- [BAK1, an Arabidopsis LRR Receptor-like Protein Kinase, Interacts with BRI1 and Modulates Brassinosteroid Signaling](https://scholariq.org/papers/bak1-an-arabidopsis-lrr-receptor-like-protein-kinase-interacts-with-bri1-and/)
- [Root Signals and the Regulation of Growth and Development of Plants in Drying Soil](https://scholariq.org/papers/root-signals-and-the-regulation-of-growth-and-development-of-plants-in-drying/)
- [Knowing when to grow: signals regulating bud dormancy](https://scholariq.org/papers/knowing-when-to-grow-signals-regulating-bud-dormancy/)
- [A Transmembrane Hybrid-Type Histidine Kinase in Arabidopsis Functions as an Osmosensor](https://scholariq.org/papers/a-transmembrane-hybrid-type-histidine-kinase-in-arabidopsis-functions-as-an/)
- [A Systemic Small RNA Signaling System in Plants](https://scholariq.org/papers/a-systemic-small-rna-signaling-system-in-plants/)
- [Perception and transduction of abscisic acid signals: keys to the function of the versatile plant hormone ABA](https://scholariq.org/papers/perception-and-transduction-of-abscisic-acid-signals-keys-to-the-function-of-the/)
- [High Temperature-Induced Abscisic Acid Biosynthesis and Its Role in the Inhibition of Gibberellin Action in Arabidopsis Seeds](https://scholariq.org/papers/high-temperature-induced-abscisic-acid-biosynthesis-and-its-role-in-the/)
- [Identification and characterization of Arabidopsis gibberellin receptors](https://scholariq.org/papers/identification-and-characterization-of-arabidopsis-gibberellin-receptors/)
- [<i>ABA-Hypersensitive Germination3</i>Encodes a Protein Phosphatase 2C (AtPP2CA) That Strongly Regulates Abscisic Acid Signaling during Germination among Arabidopsis Protein Phosphatase 2Cs](https://scholariq.org/papers/i-aba-hypersensitive-germination3-i-encodes-a-protein-phosphatase-2c-atpp2ca/)
- [Acetate-mediated novel survival strategy against drought in plants](https://scholariq.org/papers/acetate-mediated-novel-survival-strategy-against-drought-in-plants/)
- [Nitric Oxide Mediates the Indole Acetic Acid Induction Activation of a Mitogen-Activated Protein Kinase Cascade Involved in Adventitious Root Development](https://scholariq.org/papers/nitric-oxide-mediates-the-indole-acetic-acid-induction-activation-of-a-mitogen/)

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Source: ScholarIQ — public research metadata, principally OpenAlex. See https://scholariq.org/sources/ for provenance and https://scholariq.org/methodology/ for what these figures mean.
