Improvement of phytochemical production by plant cells and organ culture and by genetic engineering

被引:0
|
作者
Erik Nielsen
Marta Elisabetta Eleonora Temporiti
Rino Cella
机构
[1] University of Pavia,Department of Biology and Biotechnology
来源
Plant Cell Reports | 2019年 / 38卷
关键词
Plant biotechnology; Phytochemicals; Plant tissue culture; Metabolic engineering; Ectopic gene expression; Genome editing;
D O I
暂无
中图分类号
学科分类号
摘要
Plants display an amazing ability to synthesize a vast array of secondary metabolites that are an inexhaustible source of phytochemicals, bioactive molecules some of which impact the human health. Phytochemicals present in medicinal herbs and spices have long been used as natural remedies against illness. Plant tissue culture represents an alternative to whole plants as a source of phytochemicals. This approach spares agricultural land that can be used for producing food and other raw materials, thus favoring standardized phytochemical production regardless of climatic adversities and political events. Over the past 20 years, different strategies have been developed to increase the synthesis and the extraction of phytochemicals from tissue culture often obtaining remarkable results. Moreover, the availability of genomics and metabolomics tools, along with improved recombinant methods related to the ability to overexpress, silence or disrupt one or more genes of the pathway of interest promise to open new exciting possibilities of metabolic engineering. This review provides a general framework of the cellular and molecular tools developed so far to enhance the yield of phytochemicals. Additionally, some emerging topics such as the culture of cambial meristemoid cells, the selection of plant cell following the expression of genes encoding human target proteins, and the bioextraction of phytochemicals from plant material have been addressed. Altogether, the herein described techniques and results are expected to improve metabolic engineering tools aiming at improving the production of phytochemicals of pharmaceutical and nutraceutical interest.
引用
收藏
页码:1199 / 1215
页数:16
相关论文
共 50 条
  • [31] Recent advances in plant biotechnology and genetic engineering for production of secondary metabolites
    Sheludko, Y. V.
    [J]. CYTOLOGY AND GENETICS, 2010, 44 (01) : 52 - 60
  • [32] Plant genetic engineering for biofuel production: towards affordable cellulosic ethanol
    Mariam B. Sticklen
    [J]. Nature Reviews Genetics, 2008, 9 : 433 - 443
  • [33] Recent advances in plant biotechnology and genetic engineering for production of secondary metabolites
    Y. V. Sheludko
    [J]. Cytology and Genetics, 2010, 44 : 52 - 60
  • [34] Improvement of oat by genetic engineering
    Nuutila, AM
    Oksman-Caldentey, KM
    Kiviharju, E
    Pehu, E
    Puolimatka, M
    [J]. 2ND EUROPEAN SYMPOSIUM ON ENZYMES IN GRAIN PROCESSING, ESEGP-2, 2000, 207 : 339 - 340
  • [35] GENETIC ENGINEERING AND CROP IMPROVEMENT
    CARLSON, PS
    RICE, TB
    [J]. HORTSCIENCE, 1977, 12 (02) : 135 - 137
  • [36] SYMPOSIUM ON PLANT TISSUE AND ORGAN CULTURE
    RANGASWAMI, NS
    [J]. CURRENT SCIENCE, 1962, 31 (03): : 93 - &
  • [37] Continuous improvement at Toyota manufacturing plant: applications of production systems engineering methods
    Li, Jingshan
    [J]. INTERNATIONAL JOURNAL OF PRODUCTION RESEARCH, 2013, 51 (23-24) : 7235 - 7249
  • [38] Genetic engineering approaches for organ transplantation
    Aran, JM
    Fillat, C
    Estivill, X
    [J]. TRANSPLANTATION PROCEEDINGS, 1999, 31 (06) : 2228 - 2229
  • [39] GENETIC ENGINEERING OF LIMBAL STEM CELLS TOWARDS IMPROVEMENT OF ALLOGRAFT SURVIVAL
    Valdivia, Emilio
    Carvalho-Oliveira, Marco
    Breda, Claudia
    Bertolini, Marina
    Yuzefovych, Yuliia
    Rother, Tamina
    Hofmann, Nicola
    Boergel, Martin
    Blasczyk, Rainer
    Ferrari, Stefano
    Figueiredo, Constanca
    [J]. HLA, 2020, 95 (04) : 288 - 289
  • [40] Cellular engineering of plant cells for improved therapeutic protein production
    Karki, Uddhab
    Fang, Hong
    Guo, Wenzheng
    Unnold-Cofre, Carmela
    Xu, Jianfeng
    [J]. PLANT CELL REPORTS, 2021, 40 (07) : 1087 - 1099