Global Ubiquitome Profiling Revealed the Roles of Ubiquitinated Proteins in Metabolic Pathways of Tea Leaves in Responding to Drought Stress
Author:
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/s41598-019-41041-3.pdf
Reference44 articles.
1. Das, A., Das, S. & Mondal, T. K. Identification of Differentially Expressed Gene Profiles in Young Roots of Tea [Camellia sinensis (L.) O. Kuntze] Subjected to Drought Stress Using Suppression Subtractive Hybridization. Plant Molecular Biology Reporter 30, 1088–1101 (2012).
2. Lin, S. K. et al. Time-course of photosynthesis and non-structural carbon compounds in the leaves of tea plants (Camellia sinensis L.) in response to deficit irrigation. Agricultural Water Management 144, 98–106 (2014).
3. Liu, S. C. et al. Transcriptomic Analysis of Tea Plant Responding to Drought Stress and Recovery. Plos One 11, e0147306 (2016).
4. Wang, W. et al. Transcriptomic Analysis Reveals the Molecular Mechanisms of Drought-Stress-Induced Decreases in Camellia sinensis Leaf Quality. Front Plant Sci 7, 385 (2016).
5. Zheng, C., Wang, Y., Ding, Z. & Zhao, L. Global Transcriptional Analysis Reveals the Complex Relationship between Tea Quality, Leaf Senescence and the Responses to Cold-Drought Combined Stress in Camellia sinensis. Frontiers in plant science 7, 1858, https://doi.org/10.3389/fpls.2016.01858 (2016).
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