Environmental, developmental, and genetic factors controlling root system architecture
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Summary
This review focuses on root architecture and its diversity and the role of environment, nutrient, and water as well as plant hormones and their interactions in shaping root architecture.
- Type
- review
- Published
- 2014-07-03
- Cited by
- 26
- References
- 156
- Access
- Open access
- OpenAlex
- https://openalex.org/W1976264406
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:41139626
Keywords
Root (linguistics), Biology, Architecture, Genetic architecture, Nutrient
References
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- Arabidopsis CULLIN3 Genes Regulate Primary Root Growth and Patterning by Ethylene-Dependent and -Independent Mechanisms
- Transcription Factor Networks. Pathways to the Knowledge of Root Development
- A secreted peptide acts on BIN2-mediated phosphorylation of ARFs to potentiate auxin response during lateral root development
- Cytokinin modulates endocytic trafficking of PIN1 auxin efflux carrier to control plant organogenesis.
- A critical review on the role of mycorrhizal fungi in the uptake of phosphorus by plants
- Characterization of the Plant-Specific BREVIS RADIX Gene Family Reveals Limited Genetic Redundancy Despite High Sequence Conservation1
- Auxin: regulation, action, and interaction.
- Strigolactones
- Systems biology approaches to understand the role of auxin in root growth and development.
- Functional characterization of the Arabidopsis bHLH92 transcription factor in abiotic stress
- Strigolactone Involvement in Root Development, Response to Abiotic Stress, and Interactions with the Biotic Soil Environment
Cited by
- Predicting Plant Performance Under Simultaneously Changing Environmental Conditions—The Interplay Between Temperature, Light, and Internode Growth
- Tissue-Specific Regulation of Gibberellin Signaling Fine-Tunes Arabidopsis Iron-Deficiency Responses.
- Seed size plasticity in response to embryonic lethality conferred by ectopic CYCD activation is dependent on plant architecture
- DRO1 influences root system architecture in Arabidopsis and Prunus species
- The role of FMT and FIS1A in mitochondrial morphology and salt stress in Arabidopsis thaliana
- MsmiR156 affects global gene expression and promotes root regenerative capacity and nitrogen fixation activity in alfalfa
- Recent advances in auxin research in rice and their implications for crop improvement.
- Evaluation of plant-growth promoting properties of Gluconacetobacter diazotrophicus and Gluconacetobacter sacchari isolated from sugarcane and tomato in West Central region of Colombia
- Adventitious root formation of in vitro peach shoots is regulated by auxin and ethylene
- Understanding Fe2+ toxicity and P deficiency tolerance in rice for enhancing productivity under acidic soils
- Novel Micro-Phenotyping Approach to Chemical Genetic Screening for Increased Plant Tolerance to Abiotic Stress.
- An atypical aspartic protease modulates lateral root development in Arabidopsis thaliana.
- On the design strategy of Hongshan Cultural Museum Guided by the concept of local architecture
- Diclofenac modified the root system architecture of Arabidopsis via interfering with the hormonal activities of auxin.
- Expression of Potato StDRO1 in Arabidopsis Alters Root Architecture and Drought Tolerance
- Characteristics of members of IGT family genes in controlling rice root system architecture and tiller development
- Comparison of diversity and zinc solubilizing efficiency of rhizobacteria obtained from solanaceous crops under polyhouse and open field conditions
- Micro-ridge-furrow soil moisture regulation technology improves seedling quality and yield of winter rapeseed
- Effect of different photoperiod regimes in combination with natural and artificial light on nutrient uptake in bok choy (Brassica rapa L.) using an internet of things-based hydroponics system
- Seed endophytic bacterium Lysinibacillus sp. (ZM1) from maize (Zea mays L.) shapes its root architecture through modulation of auxin biosynthesis and nitrogen metabolism.
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