Pages that link to "Q82881624"
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The following pages link to SIZ1 regulation of phosphate starvation-induced root architecture remodeling involves the control of auxin accumulation (Q82881624):
Displaying 48 items.
- Ethylene and the Regulation of Physiological and Morphological Responses to Nutrient Deficiencies (Q26801728) (← links)
- Plant Water Uptake in Drying Soils (Q27708662) (← links)
- Roots Withstanding their Environment: Exploiting Root System Architecture Responses to Abiotic Stress to Improve Crop Tolerance (Q28070109) (← links)
- Comparative expression profiling reveals a role of the root apoplast in local phosphate response (Q30315205) (← links)
- HPS4/SABRE regulates plant responses to phosphate starvation through antagonistic interaction with ethylene signalling (Q33353589) (← links)
- Regulation of Plant Cellular and Organismal Development by SUMO. (Q33364777) (← links)
- Overexpression of the protein phosphatase 2A regulatory subunit a gene ZmPP2AA1 improves low phosphate tolerance by remodeling the root system architecture of maize (Q33610645) (← links)
- Identifying the Genes Regulated by AtWRKY6 Using Comparative Transcript and Proteomic Analysis under Phosphorus Deficiency (Q33755281) (← links)
- SPX1 is an important component in the phosphorus signalling network of common bean regulating root growth and phosphorus homeostasis (Q33809947) (← links)
- Functional annotation of the transcriptome of Sorghum bicolor in response to osmotic stress and abscisic acid (Q34050755) (← links)
- SUMO, a heavyweight player in plant abiotic stress responses (Q34383758) (← links)
- MMS21/HPY2 and SIZ1, two Arabidopsis SUMO E3 ligases, have distinct functions in development (Q34442445) (← links)
- The pattern of Phosphate transporter 1 genes evolutionary divergence in Glycine max L (Q34627674) (← links)
- Differentiating phosphate-dependent and phosphate-independent systemic phosphate-starvation response networks in Arabidopsis thaliana through the application of phosphite (Q35564249) (← links)
- Uncovering genes and ploidy involved in the high diversity in root hair density, length and response to local scarce phosphate in Arabidopsis thaliana (Q35579787) (← links)
- Comparative Analysis of Anther Transcriptome Profiles of Two Different Rice Male Sterile Lines Genotypes under Cold Stress (Q35636736) (← links)
- Elevated phosphorus impedes manganese acquisition by barley plants. (Q35970368) (← links)
- SUMO proteases ULP1c and ULP1d are required for development and osmotic stress responses in Arabidopsis thaliana. (Q36057389) (← links)
- Cold signaling and cold response in plants (Q36790491) (← links)
- Responses of root architecture development to low phosphorus availability: a review (Q36973302) (← links)
- High phosphate reduces host ability to develop arbuscular mycorrhizal symbiosis without affecting root calcium spiking responses to the fungus (Q37261586) (← links)
- Sugar Signaling in Root Responses to Low Phosphorus Availability (Q37864475) (← links)
- Root architecture remodeling induced by phosphate starvation (Q37903619) (← links)
- Update on sumoylation: defining core components of the plant SUMO conjugation system by phylogenetic comparison. (Q38026563) (← links)
- Auxin and the integration of environmental signals into plant root development (Q38153668) (← links)
- Regulation of root morphogenesis in arbuscular mycorrhizae: what role do fungal exudates, phosphate, sugars and hormones play in lateral root formation? (Q38162406) (← links)
- Root nutrient foraging (Q38235935) (← links)
- NPKS uptake, sensing, and signaling and miRNAs in plant nutrient stress (Q38530654) (← links)
- A new insight into root responses to external cues: Paradigm shift in nutrient sensing (Q38543071) (← links)
- Protein SUMOylation and plant abiotic stress signaling: in silico case study of rice RLKs, heat-shock and Ca(2+)-binding proteins (Q39384090) (← links)
- Phosphate availability regulates ethylene biosynthesis gene expression and protein accumulation in white clover (Trifolium repens L.) roots (Q42323677) (← links)
- OsSIZ2 exerts regulatory influences on the developmental responses and phosphate homeostasis in rice (Q42363716) (← links)
- Overexpression of GbWRKY1 positively regulates the Pi starvation response by alteration of auxin sensitivity in Arabidopsis (Q44531382) (← links)
- Cross-talk between Phosphate Starvation and Other Environmental Stress Signaling Pathways in Plants. (Q46097742) (← links)
- Defining the SUMO System in Maize: SUMOylation Is Up-Regulated during Endosperm Development and Rapidly Induced by Stress (Q46544799) (← links)
- Control of Endogenous Auxin Levels in Plant Root Development. (Q47294872) (← links)
- Regulatory feedback response mechanisms to phosphate starvation in rice. (Q47558309) (← links)
- Is auxin involved in the induction of genetic instability in barley homeotic double mutants? (Q48110314) (← links)
- Arabidopsis PIAL1 and 2 promote SUMO chain formation as E4-type SUMO ligases and are involved in stress responses and sulfur metabolism. (Q50622543) (← links)
- Analysis of the Root System Architecture of Arabidopsis Provides a Quantitative Readout of Crosstalk between Nutritional Signals (Q50673337) (← links)
- Loci and natural alleles underlying robust roots and adaptive domestication of upland ecotype rice in aerobic conditions (Q58791257) (← links)
- MYC-type transcription factors, MYC67 and MYC70, interact with ICE1 and negatively regulate cold tolerance in Arabidopsis (Q58803579) (← links)
- SUMO modification of LBD30 by SIZ1 regulates secondary cell wall formation in Arabidopsis thaliana (Q61813740) (← links)
- Increased tolerance to salt stress in the phosphate-accumulating Arabidopsis mutants siz1 and pho2 (Q84542994) (← links)
- Comparative analysis of the male inflorescence transcriptome profiles of an ms22 mutant of maize (Q90036418) (← links)
- De novo transcriptome sequencing and gene expression profiling of Magnolia wufengensis in response to cold stress (Q91996595) (← links)
- Selenium Modulates the Level of Auxin to Alleviate the Toxicity of Cadmium in Tobacco (Q92373386) (← links)
- A Transcriptomic Analysis Reveals Diverse Regulatory Networks That Respond to Cold Stress in Strawberry (Fragaria×ananassa) (Q92999485) (← links)