4.7 Article

High-Light-Induced Degradation of Photosystem II Subunits' Involvement in the Albino Phenotype in Tea Plants

期刊

出版社

MDPI
DOI: 10.3390/ijms23158522

关键词

Camellia sinensis; albino tea; photosystem II; photodamage; thylakoid

资金

  1. Major Project for Science and Technology Innovation of Modern Seed Industry 2025 from Ningbo Municipal Bureau of Science and Technology [2019B10022]
  2. Special fund for Innovation-driven Development of Guangxi [Guike AA20302018-4]
  3. Department of Science and Technology of Guangxi Zhuang Autonomous Region
  4. China Agriculture Research System of MOF and MARA [CARS-19]

向作者/读者索取更多资源

The PSII of the light-sensitive albino tea plant is more vulnerable to high-light stress, which leads to the degradation of PSII subunits and disruption of light-harvesting chlorophyll-protein complexes, resulting in leaf bleaching. The de novo synthesis and repair of PSII subunits are involved in the impairment of PSII complexes, leading to the albino phenotype in the tea plant.
The light-sensitive (LS) albino tea plant grows albinic shoots lacking chlorophylls (Chls) under high-light (HL) conditions, and the albinic shoots re-green under low light (LL) conditions. The albinic shoots contain a high level of amino acids and are preferential materials for processing quality green tea. The young plants of the albino tea cultivars are difficult to be cultivated owing to lacking Chls. The mechanisms of the tea leaf bleaching and re-greening are unknown. We detected the activity and composition of photosystem II (PSII) subunits in LS albino tea cultivar Huangjinya (HJY), with a normal green-leaf cultivar Jinxuan (JX) as control so as to find the relationship of PSII impairment to the albino phenotype in tea. The PSII of HJY is more vulnerable to HL-stress than JX. HL-induced degradation of PSII subunits CP43, CP47, PsbP, PsbR. and light-harvest chlorophyll-protein complexes led to the exposure and degradation of D1 and D2, in which partial fragments of the degraded subunits were crosslinked to form larger aggregates. Two copies of subunits PsbO, psbN, and Lhcb1 were expressed in response to HL stress. The cDNA sequencing of CP43 shows that there is no difference in sequences of PsbC cDNA and putative amino acids of CP43 between HJY and JX. The de novo synthesis and/or repair of PSII subunits is considered to be involved in the impairment of PSII complexes, and the latter played a predominant role in the albino phenotype in the LS albino tea plant.

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