期刊文献+

Carotenoid metabolism and regulation in horticultural crops 被引量:46

下载PDF
导出
摘要 Carotenoids are a diverse group of pigments widely distributed in nature.The vivid yellow,orange,and red colors of many horticultural crops are attributed to the overaccumulation of carotenoids,which contribute to a critical agronomic trait for flowers and an important quality trait for fruits and vegetables.Not only do carotenoids give horticultural crops their visual appeal,they also enhance nutritional value and health benefits for humans.As a result,carotenoid research in horticultural crops has grown exponentially over the last decade.These investigations have advanced our fundamental understanding of carotenoid metabolism and regulation in plants.In this review,we provide an overview of carotenoid biosynthesis,degradation,and accumulation in horticultural crops and highlight recent achievements in our understanding of carotenoid metabolic regulation in vegetables,fruits,and flowers.
出处 《Horticulture Research》 SCIE 2015年第1期123-133,共11页 园艺研究(英文)
  • 相关文献

参考文献2

二级参考文献70

  • 1Auldridge ME, McCarty DR, Klee HJ (2006). Plant carotenoid cleavage oxygenases and their apocarotenoid products. Curr. Opin. Plant Biol. 9, 315-321.
  • 2Botella-Pavia P, Rodriguez-Concepcion M (2006). Carotenoid biotechnology in plants for nutritionally improved foods. Physiol. Plant. 126, 369-381.
  • 3Cunningham FX, Gantt E (1998). Genes and enzymes of carotenoid biosynthesis in plants. Annu. Rev. Plant Physiol. Plant MoL Biol. 49, 557-583.
  • 4Cunningham FX, Gantt E (2005). A study in scarlet: enzymes of ketocarotenoid biosynthesis in the flowers of Adonis aestivalis. Plant J. 41,478-492.
  • 5Cuttriss 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.
  • 6D'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.
  • 7Davuluri 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.
  • 8DellaPenna D, Pogson BJ (2006). Vitamin synthesis in plants: tocopherols and carotenoids. Annu. Rev. Plant Biol. 57, 711-738.
  • 9Diretto 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,
  • 10Diretto G, Tavazza R, Welsch R, Pizzichini D, Mourgues F, Papacchioli Vet al, (2006). Metabolic engineering of potato tuber carotenoids through tuber-specific silencing of lycopene epsilon cyclase. BMC Plant Biol. 6. 13.

共引文献39

同被引文献295

引证文献46

二级引证文献282

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部