4.4 Article

Characterization of Anatomical and Physiological Effects of Variegation Mutation on Grapevine

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HORTSCIENCE
卷 56, 期 10, 页码 1251-1257

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AMER SOC HORTICULTURAL SCIENCE
DOI: 10.21273/HORTSCI15929-21

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chlorophyll; chloroplast; grape; histology; plant cell; Vitis

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Variegation is a common trait in plants that can affect leaf anatomy and physiology, leading to growth inhibition. The mutation alters leaf development, reduces pigment concentration, and decreases photosynthetic efficiency, with higher light intensity helping to reduce variegation expression. Variegated plants also show significant reductions in growth traits compared to wild-type plants.
Variegation is a common trait in plants that characteristically displays white or off-colored plant tissue. In grapevine, leaf variegation is expressed as white and pale green leaf tissue resulting in plants that are stunted in growth and hindered in development. In this study, several experiments were performed to investigate the impact of this mutation has on the anatomy of grape leaves and physiology of the plant. Histological staining of variegated and nonvariegated leaf tissue transections showed alterations to the leaf palisade mesophyll structure that affected leaf tissue width. An assay quantifying leaf pigments was performed to compare chlorophyll and carotenoid concentrations in leaves between variegated and wild-type seedlings, which showed that variegated leaf samples had reduced chlorophyll and carotenoid concentration. Through fluorescence imaging, we determined that photochemical efficiency of photosystem II (PSII) is reduced in variegated seedlings. By growing variegated and wild-type plants under high, medium, and low light intensities that variegated plants exposed to higher light intensity reduces the phenotypic expression of the variegation trait. Also, we found variegated plants to have significant reductions in growth traits such as plant height, leaf number, branch number, and dry weight compared with wild-type phenotype plants. Overall, our experiments revealed the variegation mutation altered normal leaf development causing significant effects to grapevine physiology.

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