GhHmgB3 deficiency deregulates proliferation and differentiation of cells during somatic embryogenesis in cotton.
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Summary
Results in response to the down-regulation of GhHmgB3 revealed series of β-catenin-related mechanisms might be responsible for the deregulation of proliferation and differentiation of cells in cotton SE.
- Type
- article
- Published
- 2011-12-01
- Cited by
- 40
- References
- 58
- Access
- Open access
- OpenAlex
- https://openalex.org/W1908840767
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:31501321
Keywords
Biology, Somatic embryogenesis, Somatic cell, Cell biology, Embryogenesis
References
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- A leucine-rich repeat containing receptor-like kinase marks somatic plant cells competent to form embryos.
- HMG1 and 2, and related 'architectural' DNA-binding proteins.
- Cloning and characterization of rice HMGB1 gene.
- Two Phases of Chromatin Decondensation during Dedifferentiation of Plant Cells
- High-throughput functional annotation and data mining with the Blast2GO suite
- Factors affecting transformation efficiency of embryogenic callus of Upland cotton (Gossypium hirsutum) with Agrobacterium tumefaciens
- MAP kinase signal transduction pathways in plants.
- Somatic hybrids obtained by fusion betweenPoncirus trifoliata (2x) andFortunella hindsii (4x) protoplasts
- Evaluation of MTS, XTT, MTT and3HTdR incorporation for assessing hepatocyte density, viability and proliferation
- Hmgb3 deficiency deregulates proliferation and differentiation of common lymphoid and myeloid progenitors.
- Role of high mobility group (HMG) chromatin proteins in DNA repair.
- Isolation and characterization of a cDNA encoding a high mobility group protein HMG-1 from Canavalia gladiata D.C.
- Mitogen-activated protein kinases and Wnt/beta-catenin signaling: Molecular conversations among signaling pathways.
- A draft gene regulatory network for cellular totipotency reprogramming during plant somatic embryogenesis.
Cited by
- Transcriptome profiling reveals auxin and cytokinin regulating somatic embryogenesis in different sister lines of cotton cultivar CCRI24.
- Studies on Embryogenic Competence and Regeneration Potential with Relation to Anthocyanin Biosynthesis in Cotton (G. hirsutum)
- Paraformaldehyde Fixation May Lead to Misinterpretation of the Subcellular Localization of Plant High Mobility Group Box Proteins
- AtWuschel Promotes Formation of the Embryogenic Callus in Gossypium hirsutum
- Transcript profiling reveals complex auxin signalling pathway and transcription regulation involved in dedifferentiation and redifferentiation during somatic embryogenesis in cotton
- Plant Proteins Containing High Mobility Group Box DNA-Binding Domains Modulate Different Nuclear Processes1[W]
- GhH2A12, a replication-dependent histone H2A gene from Gossypium hirsutum, is negatively involved in the development of cotton fiber cells
- Current status of tissue culture and genetic transformation research in cotton (Gossypium spp.)
- Comparative transcriptome analysis between somatic embryos (SEs) and zygotic embryos in cotton: evidence for stress response functions in SE development.
- Cotton cytochrome P450 CYP82D regulates systemic cell death by modulating the octadecanoid pathway
- GbPDF1 Is Involved in Cotton Fiber Initiation via the Core cis-Element HDZIP2ATATHB21[W]
- A peptide hormone gene, GhPSK promotes fibre elongation and contributes to longer and finer cotton fibre.
- Cotton GhCKI disrupts normal male reproduction by delaying tapetum programmed cell death via inactivating starch synthase.
- LEAFY COTYLEDON1-CASEIN KINASE I-TCP15-PHYTOCHROME INTERACTING FACTOR4 Network Regulates Somatic Embryogenesis by Regulating Auxin Homeostasis1[OPEN]
- Molecular and functional analyses of the plant specific 3xHMG-box proteins expressed during mitosis/meiosis
- Transgenic Bt cotton driven by the green tissue-specific promoter shows strong toxicity to lepidopteran pests and lower Bt toxin accumulation in seeds
- RNA Interference for Functional Genomics and Improvement of Cotton (Gossypium sp.)
- Fibre elongation requires normal redox homeostasis modulated by cytosolic ascorbate peroxidase in cotton (Gossypium hirsutum)
- Transcriptional identification and characterization of differentially expressed genes associated with embryogenesis in radish (Raphanus sativus L.)
- GhJAZ2 negatively regulates cotton fiber initiation by interacting with the R2R3-MYB transcription factor GhMYB25-like.
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