2020
DOI: 10.1007/s13205-020-2063-3
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Color characteristics, pigment accumulation and biosynthetic analyses of leaf color variation in herbaceous peony (Paeonia lactiflora Pall.)

Abstract: Herbaceous peony (Paeonia lactiflora Pall.) is one of the color-leaved ornamental spring plants, with graceful appearance and splendid color. However, the underlying mechanism of this coloration variation from purple to green has not been studied in P. lactiflora. In th study, the leaves in purple, purple-green, and green stages were compared in terms of anatomical, physiological, and molecular. We found that the variation of leaf color from purple to green was mainly determined by the change in pigments distr… Show more

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Cited by 32 publications
(17 citation statements)
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References 44 publications
(63 reference statements)
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“…Many studies have shown that the change of anthocyanin content or proportion will directly affect the color of leaves. For example, the change in color of herbaceous peony leaves from purple to green is caused by a reduction in anthocyanins and accumulation of chlorophyll (Tang et al, 2020). The leaf colors of coleus vary according to the relative proportions of chlorophyll and anthocyanin (Nguyen and Cin, 2009).…”
Section: Discussionmentioning
confidence: 99%
“…Many studies have shown that the change of anthocyanin content or proportion will directly affect the color of leaves. For example, the change in color of herbaceous peony leaves from purple to green is caused by a reduction in anthocyanins and accumulation of chlorophyll (Tang et al, 2020). The leaf colors of coleus vary according to the relative proportions of chlorophyll and anthocyanin (Nguyen and Cin, 2009).…”
Section: Discussionmentioning
confidence: 99%
“…Biochemical and molecular research contributes to better understanding and possible regulation of developmental traits, from stress tolerance [ 60 , 61 ] to flower color [ 62 , 63 ] and biosynthesis of secondary metabolites [ 64 ]. Currently, the first priority for genetic research should be introduction of disease resistance to new cultivars, and recent reports confirm possibility of this direction [ 65 67 ].…”
Section: Future Outlookmentioning
confidence: 99%
“…This indicated that it was a feasible way to achieve high yield by prolonging the photosynthetic function period of leaves and preventing premature senescence of leaves. Improving the synthesis capacity of chlorophyll, slowing down the senescence and degradation speed of chloroplast, and improving the antioxidant capacity of chloroplast are the main means to ensure the photosynthetic efficiency (Khan et al, 2020;Tang et al, 2020;Yu et al, 2020;Pang et al, 2022). It was found that leaf senescence may be induced by hexose accumulation.…”
Section: Prolonging the Photosynthetic Period Of Leavesmentioning
confidence: 99%