Protein expression changes during cotton fiber elongation in response to drought stress and recovery
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Summary
The results suggest that the enhancement of the perception of drought stress, a new balance of the metabolism of the biosynthesis of cell wall components and cytoskeleton homeostasis plays an important role in the response of cotton fibers to drought stress.
- Type
- article
- Published
- 2014-08-01
- Cited by
- 32
- References
- 98
- OpenAlex
- https://openalex.org/W1978540792
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:8690763
Keywords
Proteomics, Cell biology, Drought stress, Gossypium, Cytoskeleton
References
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- Changes in the protein profile of Quercus ilex leaves in response to drought stress and recovery.
Cited by
- Comparative Proteomic Analysis of Brassica napus in Response to Drought Stress.
- Cell Wall Metabolism in Response to Abiotic Stress
- Two-dimensional gel electrophoresis-based analysis provides global insights into the cotton ovule and fiber proteomes
- Water deficit stress tolerance in chickpea is mediated by the contribution of integrative defence systems in different tissues of the plant.
- Extracellular Matrix Proteome and Phosphoproteome of Potato Reveals Functionally Distinct and Diverse Canonical and Non-Canonical Proteoforms
- Antioxidative defence system and protein profiling in relation to water deficit stress in chickpea cultivars differing in rooting system
- Proteomic changes in response to low-light stress during cotton fiber elongation
- iTRAQ-Based Comparative Proteomic Analysis of Seedling Leaves of Two Upland Cotton Genotypes Differing in Salt Tolerance
- Genome-wide investigation and expression profiling of APX gene family in Gossypium hirsutum provide new insights in redox homeostasis maintenance during different fiber development stages
- Proteomic and Biochemical Changes during Senescence of Phalaenopsis ‘Red Dragon’ Petals
- Water-induced variation in yield and quality can be explained by altered yield component contributions in field-grown cotton
- Genome-Wide Association Studies Reveal Genetic Variation and Candidate Genes of Drought Stress Related Traits in Cotton (Gossypium hirsutum L.)
- Transcriptome Profiling, Biochemical and Physiological Analyses Provide New Insights towards Drought Tolerance in Nicotiana tabacum L.
- Tandem mass tag-based (TMT) quantitative proteomics analysis reveals the response of fine roots to drought stress in cotton (Gossypium hirsutum L.)
- Ginkgo biloba and Helianthus annuus show different strategies to adjust photosynthesis, leaf water relations, and cell wall composition under water deficit stress
- Potassium (K) application alleviates the negative effect of drought on cotton fiber strength by sustaining higher sucrose content and carbohydrates conversion rate.
- Identifying transcription factors that reduce wood recalcitrance and improve enzymatic degradation of xylem cell wall in Populus
- Impact of soil moisture on common bean (Phaseolus vulgaris L.) phytochemicals
- Optimal irrigation amount and nitrogen rate improved seed cotton yield while maintaining fiber quality of drip-fertigated cotton in northwest China
- Transcriptome Analysis of Tolerant and Susceptible Maize Genotypes Reveals Novel Insights about the Molecular Mechanisms Underlying Drought Responses in Leaves
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