Mutation Associated with Orange Fruit Color Increases Concentrations of β-Carotene in a Sweet Pepper Variety (Capsicum annuum L.)

被引:8
|
作者
Tomlekova, Nasya [1 ]
Spasova-Apostolova, Velichka [2 ]
Pantchev, Ivelin [3 ]
Sarsu, Fatma [4 ]
机构
[1] Maritsa Vegetable Crops Res Inst, Dept Breeding Variety Maintenance & Intro, 32 Brezovsko Shosse St, Plovdiv 4003, Bulgaria
[2] Tobacco & Tobacco Prod Inst, Dept Breeding & Seed Prod, Markovo 4108, Bulgaria
[3] Sofia Univ, Dept Biochem, 8 Dragan Tzankov, Sofia 1164, Bulgaria
[4] IAEA, Plant Breeding & Genet Sect, Joint FAO IAEA Div Nucl Tech Food & Agr, A-1400 Vienna, Austria
关键词
carotenoids; beta-carotene hydroxylase; sweet pepper; mutagenesis; high performance liquid chromatography; molecular characterization; BIOSYNTHESIS; GENES; HYDROXYLASES; INHERITANCE; MUTANTS; RED;
D O I
10.3390/foods10061225
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Pepper is the second most important vegetable crop in Bulgarian agriculture and has become the subject of extensive breeding programs that frequently employ induced mutagenesis. The success of breeding programs can be enhanced by the efficient and integral application of different biochemical and molecular methods to characterize specific mutant alleles. On the other hand, identifying new cost-effective methods is important under a limited-resources environment. In this paper we compare the levels of five health-related carotenoid compounds of fruits (alpha-carotene, beta-carotene, lutein, beta-cryptoxanthin, zeaxanthin) between a mutant variety Oranzheva kapia (possessing high ss-carotene concentration) and a corresponding initial pepper variety Pazardzhishka kapia 794. Both varieties are intended for fresh consumption. Pepper is a major natural source of beta-carotene. It was observed that fruit at both commercial and botanical maturity from mutant variety had greater alpha-carotene and beta-carotene concentrations to the initial variety (7.49 and 1.94 times higher, respectively) meaning that the mutant was superior in fruit quality to the initial genotype. Two hydroxylase enzymes, converting alpha- and beta-carotene to lutein and zeaxanthin, respectively, are known to exist in pepper and are encoded by two genes on chromosomes 3 and 6-CrtZ(chr03) and CrtZ(chr06). The molecular characterization of the mutant variety through locus-specific Polymerase chain reaction amplification, gene cloning and sequencing as well as expression was performed. Our results suggest that the increased ss-carotene accumulation in the mutant variety Oranzheva kapia results from a biosynthetic pathway breakdown due to deletion of CrtZ(chr03) gene.
引用
收藏
页数:16
相关论文
共 50 条
  • [21] QUALITY CHARACTERISTICS AND CONTENT OF MINERAL COMPOUNDS IN FRUIT OF SOME CULTIVARS OF SWEET PEPPER (CAPSICUM ANNUUM L.)
    Jadczak, Dorota
    Grzeszczuk, Monika
    Kosecka, Dominika
    JOURNAL OF ELEMENTOLOGY, 2010, 15 (03): : 509 - 515
  • [22] First report of ‘Candidatus Phytoplasma solani’ associated with pepper chlorosis of sweet pepper, Capsicum annuum L., in Japan
    Yoshifumi Shimomoto
    Kenichi Ikeda
    Yasushi Asahina
    Kazutaka Yano
    Misako Oka
    Tomoka Oki
    Junki Yamasaki
    Shigeharu Takeuchi
    Yasuaki Morita
    Journal of General Plant Pathology, 2020, 86 : 76 - 79
  • [23] EFFECT OF CUTTING AND TEMPERATURE DRYING IN CONVECTIVE DRYING OVEN ON COLOR IN SWEET PEPPER (Capsicum annuum L.)
    Martinez-Zamora, Ricardo
    Vega-Pena, Guadalupe
    Diaz-Ovalle, Christian O.
    Altamirano-Romo, Susana
    Castillo-Borja, Florianne
    AVANCES EN CIENCIAS E INGENIERIA, 2016, 7 (04): : 37 - 46
  • [24] First report of 'Candidatus Phytoplasma solani' associated with pepper chlorosis of sweet pepper, Capsicum annuum L., in Japan
    Shimomoto, Yoshifumi
    Ikeda, Kenichi
    Asahina, Yasushi
    Yano, Kazutaka
    Oka, Misako
    Oki, Tomoka
    Yamasaki, Junki
    Takeuchi, Shigeharu
    Morita, Yasuaki
    JOURNAL OF GENERAL PLANT PATHOLOGY, 2020, 86 (01) : 76 - 79
  • [25] MATHEMATICAL MODELING IN THE ESTIMATION OF PEPPER (Capsicum annuum L.) FRUIT VOLUME
    Bozokalfa, M. Kadri
    Kilic, Murat
    CHILEAN JOURNAL OF AGRICULTURAL RESEARCH, 2010, 70 (04): : 626 - 632
  • [26] Yield and fruit quality of pepper (Capsicum annuum L.) in response to bioregulators
    Belakbir, A
    Ruiz, JM
    Romero, L
    HORTSCIENCE, 1998, 33 (01) : 85 - 87
  • [27] Integrative analysis of metabolome and transcriptome reveals the mechanism of color formation in pepper fruit (Capsicum annuum L.)
    Liu, Yuhua
    Lv, Junheng
    Liu, Zhoubin
    Wang, Jing
    Yang, Bozhi
    Chen, Wenchao
    Ou, Lijun
    Dai, Xiongze
    Zhang, Zhuqing
    Zou, Xuexiao
    FOOD CHEMISTRY, 2020, 306
  • [28] Comparative Transcriptome Analysis Identified Genes Associated with Fruit Size in Pepper (Capsicum annuum L.)
    Zheng, Yuxin
    Ma, Qilong
    Mao, Lianzhen
    Wu, Zhuoxuan
    Liu, Zhoubin
    Zou, Xuexiao
    Yang, Bozhi
    HORTICULTURAE, 2023, 9 (09)
  • [29] DNA Divergence as a Criterion of a Sweet Pepper (Capsicum annuum L.) Selection for Heterosis
    Shapturenko, M. N.
    Tarutina, L. A.
    Mishin, L. A.
    Kilchevsky, A. V.
    Khotyleva, L. V.
    RUSSIAN JOURNAL OF GENETICS, 2014, 50 (02) : 123 - 130
  • [30] Substrate Evaluation on Postharvest Quality of Sweet Pepper (Capsicum annuum L.) Fruit under Gravity Fed Fertigation
    Eudoxie, G.
    Martin, M.
    Mohammed, M.
    III INTERNATIONAL CONFERENCE ON POSTHARVEST AND QUALITY MANAGEMENT OF HORTICULTURAL PRODUCTS OF INTEREST FOR TROPICAL REGIONS, 2014, 1047 : 87 - 92