Aluminum Induced Physiological and Proteomic Responses in Tea (Camellia Sinensis) Roots and Leaves
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Biology
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Tea (Camellia sinensis (L.) O. Kuntze), is an aluminum (Al) hyperaccumulator and grows well in acid soils. Although Al-induced growth of tea plant has been studied, the proteomic profiles of tea plants in response to Al are unclear. In the present study, the proteomic profiles in tea roots and leaves under Al stress were investigated using iTRAQ proteomics approach. In total, 755 and 1059 differentially expressed proteins were identified in tea roots and leaves, respectively. KEGG enrichment analysis showed that the differentially expressed proteins in roots were mainly involved in 11 pathways whereas those from leaves were mainly involved in 9 pathways. Abundance of most protein functions in glycolytic metabolism were enhanced in tea roots, and proteins involved in photosynthesis were stimulated in tea leaves. The protein ferulate-5-hydroxylase (F5H) in lignin biosynthetic pathway was down-regulated in both roots and leaves. Furthermore, antioxidant enzymes (ascorbate peroxidase, catalase and glutathione S-transferase) and citrate synthesis were accumulated in tea roots in response to Al. The results indicated that active photosynthesis and glycolysis as well as increased activities of antioxidant enzymes can be considered as a possible reason for the stimulatory effects of Al on the growth of tea plants. Additionally, the down-regulation of F5H and the binding of Al and phenolic acids may reduce the accumulation of lignin.
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Wang Y, Cheng J, Wei S, Jiang W, Li Y, Guo W Plants (Basel). 2023; 12(7).
PMID: 37050058 PMC: 10097190. DOI: 10.3390/plants12071432.
Peng A, Yu K, Yu S, Li Y, Zuo H, Li P Int J Mol Sci. 2023; 24(5).
PMID: 36902071 PMC: 10003434. DOI: 10.3390/ijms24054640.
Tease out the future: How tea research might enable crop breeding for acid soil tolerance.
Ding Z, Shi Y, Li G, Harberd N, Zheng S Plant Commun. 2021; 2(3):100182.
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Gu H, Wang Y, Xie H, Qiu C, Zhang S, Xiao J Sci Rep. 2020; 10(1):15504.
PMID: 32968186 PMC: 7511325. DOI: 10.1038/s41598-020-72596-1.