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Carotenoid Metabolism in Plants: The Role ol Plastids 被引量:34

Carotenoid Metabolism in Plants: The Role ol Plastids
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摘要 Carotenoids are indispensable to plants and critical in human diets. Plastids are the organelles for carotenoid biosynthesis and storage in plant cells. They exist in various types, which include proplastids, etioplasts, chloroplasts, amyloplasts, and chromoplasts. These plastids have dramatic differences in their capacity to synthesize and sequester carotenoids. Clearly, plastids play a central role in governing carotenogenic activity, carotenoid stability, and pigment diversity. Understanding of carotenoid metabolism and accumulation in various plastids expands our view on the multifaceted regulation of carotenogenesis and facilitates our efforts toward developing nutrient-enriched food crops. In this review, we provide a comprehensive overview of the impact of various types of plastids on carotenoid biosynthesis and accumulation, and discuss recent advances in our understanding of the regulatory control of carotenogenesis and metabolic engineering of carotenoids in light of plastid types in plants. Carotenoids are indispensable to plants and critical in human diets. Plastids are the organelles for carotenoid biosynthesis and storage in plant cells. They exist in various types, which include proplastids, etioplasts, chloroplasts, amyloplasts, and chromoplasts. These plastids have dramatic differences in their capacity to synthesize and sequester carotenoids. Clearly, plastids play a central role in governing carotenogenic activity, carotenoid stability, and pigment diversity. Understanding of carotenoid metabolism and accumulation in various plastids expands our view on the multifaceted regulation of carotenogenesis and facilitates our efforts toward developing nutrient-enriched food crops. In this review, we provide a comprehensive overview of the impact of various types of plastids on carotenoid biosynthesis and accumulation, and discuss recent advances in our understanding of the regulatory control of carotenogenesis and metabolic engineering of carotenoids in light of plastid types in plants.
出处 《Molecular Plant》 SCIE CAS CSCD 2018年第1期58-74,共17页 分子植物(英文版)
关键词 CAROTENOID PLASTID regulation METABOLISM metabolic engineering carotenoid, plastid, regulation, metabolism, metabolic engineering
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  • 1Genji Qin,Hongya Gu,Ligeng Ma,Yiben Peng,Xing Wang Deng,Zhangliang Chen,Li-Jia Qu.Disruption of phytoene desaturase gene results in albino and dwarf phenotypes in Arabidopsis by impairing chlorophyll, carotenoid, and gibberellin biosynthesis[J].Cell Research,2007,17(5):471-482. 被引量:39
  • 2Auldridge ME, McCarty DR, Klee HJ (2006). Plant carotenoid cleavage oxygenases and their apocarotenoid products. Curr. Opin. Plant Biol. 9, 315-321.
  • 3Botella-Pavia P, Rodriguez-Concepcion M (2006). Carotenoid biotechnology in plants for nutritionally improved foods. Physiol. Plant. 126, 369-381.
  • 4Cunningham FX, Gantt E (1998). Genes and enzymes of carotenoid biosynthesis in plants. Annu. Rev. Plant Physiol. Plant MoL Biol. 49, 557-583.
  • 5Cunningham FX, Gantt E (2005). A study in scarlet: enzymes of ketocarotenoid biosynthesis in the flowers of Adonis aestivalis. Plant J. 41,478-492.
  • 6Cuttriss A J, Chubb AC, Alawady A, Grimm B, Pogson BJ (2007). Regulation of lutein biosynthesis and prolamellar body formation in Arabidopsis. Funct. Plant Biol. 34, 663-672.
  • 7D'Ambrosio C, Giorio G, Marino I, Merendino A, Petrozza A, Salfi Let al. (2004). Virtually complete conversion of lycopene into β- carotene in fruits of tomato plants transformed with the tomato lycopene beta-cyclase (tlcy-b) cDNA. Plant Sci. 166, 207-214.
  • 8Davuluri GR, van Tuinen A, Fraser PD, Manfredonia A, Newman R, Burgess D et al. (2005). Fruit-specific RNAi-mediated suppression of DET1 enhances carotenoid and fiavonoid content in tomatoes. Nat. Biotechnol. 23, 890-895.
  • 9DellaPenna D, Pogson BJ (2006). Vitamin synthesis in plants: tocopherols and carotenoids. Annu. Rev. Plant Biol. 57, 711-738.
  • 10Diretto G, AI-Babili S, Tavazza R, Papacchioli V, Beyer P, Giuliano G (2007). Metabolic engineering of potato carotenoid content through tuber-specific overexpression of a bacterial mini-pathway, PLoS ONE 2, e350,

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