Understanding the genetic regulation of anthocyanin biosynthesis in plants - Tools for breeding purple varieties of fruits and vegetables

被引:177
作者
Chaves-Silva, Samuel [1 ,2 ]
dos Santos, Adolfo Luis [1 ,2 ]
Chalfun-Junior, Antonio [2 ]
Zhao, Jian [3 ]
Peres, Lazaro E. P. [4 ]
Benedito, Vagner Augusto [1 ]
机构
[1] West Virginia Univ, Div Plant & Soil Sci, 3425 New Agr Sci Bldg,6108, Morgantown, WV 26506 USA
[2] Univ Fed Lavras UFLA, Biol Dept, BR-37200000 Lavras, MG, Brazil
[3] Anhui Agr Univ, Coll Tea & Food Sci & Technol, State Key Lab Tea Plant Biol & Utilizat, Hefei 230036, Anhui, Peoples R China
[4] Univ Sao Paulo, Escola Super Agr Luiz de Queiroz ESALQ, Dept Biol Sci, BR-13418900 Piracicaba, SP, Brazil
关键词
Anthocyanin; Biosynthesis; Genetic regulation; Biofortification; Functional food; Nutraceutical; Plant breeding; MYB TRANSCRIPTION FACTORS; EXPRESSION ANALYSIS; PROANTHOCYANIDIN BIOSYNTHESIS; FLAVONOID BIOSYNTHESIS; VACUOLAR INCLUSIONS; NITROGEN LIMITATION; NEGATIVE REGULATOR; VITIS-VINIFERA; RED FLESH; ARABIDOPSIS;
D O I
10.1016/j.phytochem.2018.05.013
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Anthocyanins are naturally occurring flavonoids derived from the phenylpropanoid pathway. There is increasing evidence of the preventative and protective roles of anthocyanins against a broad range of pathologies, including different cancer types and metabolic diseases. However, most of the fresh produce available to consumers typically contains only small amounts of anthocyanins, mostly limited to the epidermis of plant organs. Therefore, transgenic and non-transgenic approaches have been proposed to enhance the levels of this phytonutrient in vegetables, fruits, and cereals. Here, were review the current literature on the anthocyanin biosynthesis pathway in model and crop species, including the structural and regulatory genes involved in the differential pigmentation patterns of plant structures. Furthermore, we explore the genetic regulation of anthocyanin biosynthesis and the reasons why it is strongly repressed in specific cell types, in order to create more efficient breeding strategies to boost the biosynthesis and accumulation of anthocyanins in fresh fruits and vegetables.
引用
收藏
页码:11 / 27
页数:17
相关论文
共 175 条
[51]   Intake of bilberries (Vaccinium myrtillus L.) reduced risk factors for cardiovascular disease by inducing favorable changes in lipoprotein profiles [J].
Habanova, Marta ;
Saraiva, Jorge A. ;
Haban, Miroslav ;
Schwarzova, Marianna ;
Chlebo, Peter ;
Predna, Lenka ;
Gazo, Jan ;
Wyka, Joanna .
NUTRITION RESEARCH, 2016, 36 (12) :1415-1422
[52]   Breeding depression of red flesh apple progeny containing both functional MdMYB10 and MYB110a_JP genes [J].
Hamada, Yuka ;
Sato, Hideto ;
Otagaki, Shungo ;
Okada, Kazuma ;
Abe, Kazuyuki ;
Matsumoto, Shogo .
PLANT BREEDING, 2015, 134 (02) :239-246
[53]   Different Anthocyanin Profiles of the Skin and the Pulp of Yan73 (Muscat Hamburg x Alicante Bouschet) Grape Berries [J].
He, Jian-Jun ;
Liu, Yan-Xia ;
Pan, Qiu-Hong ;
Cui, Xiang-Yun ;
Duan, Chang-Qing .
MOLECULES, 2010, 15 (03) :1141-1153
[54]   Colletotrichum truncatum, a new cause of anthracnose on Chinese flowering cabbage (Brassica parachinensis) in China [J].
He, Yinyin ;
Chen, Qiguang ;
Shu, Canwei ;
Yang, Mei ;
Zhou, Erxun .
TROPICAL PLANT PATHOLOGY, 2016, 41 (03) :183-192
[55]   How relevant are flavonoids as antioxidants in plants? [J].
Hernandez, Iker ;
Alegre, Leonor ;
Van Breusegem, Frank ;
Munne-Bosch, Sergi .
TRENDS IN PLANT SCIENCE, 2009, 14 (03) :125-132
[56]   The Basic Helix-Loop-Helix Transcription Factor MYC1 Is Involved in the Regulation of the Flavonoid Biosynthesis Pathway in Grapevine [J].
Hichri, Imene ;
Heppel, Simon C. ;
Pillet, Jeremy ;
Leon, Celine ;
Czemmel, Stefan ;
Delrot, Serge ;
Lauvergeat, Virginie ;
Bogs, Jochen .
MOLECULAR PLANT, 2010, 3 (03) :509-523
[57]   Isolation of candidate genes for the barley Ant1 and wheat Rc genes controlling anthocyanin pigmentation in different vegetative tissues [J].
Himi, Eiko ;
Taketa, Shin .
MOLECULAR GENETICS AND GENOMICS, 2015, 290 (04) :1287-1298
[58]   Dominant repression of target genes by chimeric repressors that include the EAR motif, a repression domain, in Arabidopsis [J].
Hiratsu, K ;
Matsui, K ;
Koyama, T ;
Ohme-Takagi, M .
PLANT JOURNAL, 2003, 34 (05) :733-739
[59]   Flavonoids, flavonoid-rich foods, and cardiovascular risk: a meta-analysis of randomized controlled trials [J].
Hooper, Lee ;
Kroon, Paul A. ;
Rimm, Eric B. ;
Cohn, Jeffrey S. ;
Harvey, Ian ;
Le Cornu, Kathryn A. ;
Ryder, Jonathan J. ;
Hall, Wendy L. ;
Cassidy, Aedin .
AMERICAN JOURNAL OF CLINICAL NUTRITION, 2008, 88 (01) :38-50
[60]   A SQUAMOSA MADS Box Gene Involved in the Regulation of Anthocyanin Accumulation in Bilberry Fruits [J].
Jaakola, Laura ;
Poole, Mervin ;
Jones, Matthew O. ;
Kamarainen-Karppinen, Terttu ;
Koskimaki, Janne J. ;
Hohtola, Anja ;
Haggman, Hely ;
Fraser, Paul D. ;
Manning, Kenneth ;
King, Graham J. ;
Thomson, Helen ;
Seymour, Graham B. .
PLANT PHYSIOLOGY, 2010, 153 (04) :1619-1629