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Overexpression of zeaxanthin epoxidase gene enhances the sensitivity of tomato PSII photoinhibition to high light and chilling stress
Author(s) -
Wang Ning,
Fang Wei,
Han Han,
Sui Na,
Li Bin,
Meng QingWei
Publication year - 2008
Publication title -
physiologia plantarum
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.351
H-Index - 146
eISSN - 1399-3054
pISSN - 0031-9317
DOI - 10.1111/j.1399-3054.2007.01016.x
Subject(s) - photoinhibition , lycopersicon , biology , photosystem ii , zeaxanthin , xanthophyll , genetically modified tomato , cauliflower mosaic virus , violaxanthin , botany , microbiology and biotechnology , transgene , genetically modified crops , gene , photosynthesis , biochemistry , carotenoid , lutein
A tomato ( Lycopersicon esculentum Mill.) zeaxanthin epoxidase gene ( LeZE ) was isolated. The deduced amino acid sequence of LeZE showed high identities with zeaxanthin epoxidase in other plant species. Northern blot analysis showed that the mRNA accumulation of LeZE in the wild‐type (WT) was not induced by light and temperature but regulated by the diurnal rhythm. The sense transgenic plants were obtained under the control of the cauliflower mosaic virus 35S promoter (35S‐CaMV). Northern and western blot analysis confirmed that sense LeZE was transferred into the tomato genome and overexpressed. The ratio of (A + Z)/(V + A + Z) and the values of non‐photochemical quenching were lower in transgenic plants than in WT plants under high light and chilling stress with low irradiance. The O 2 evolution rate and the maximal photochemical efficiency of PSII (Fv/Fm) in transgenic plants decreased more quickly during both stresses and recovered slower than that in WT under optimal conditions. These results suggested that overexpression of LeZE impaired the function of the xanthophyll cycle and aggravated PSII photoinhibition in tomato under high light and chilling stress.

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