In vitroPloidy Manipulation for Crop Improvement

被引:69
作者
Touchell, Darren H. [1 ]
Palmer, Irene E. [1 ]
Ranney, Thomas G. [1 ]
机构
[1] North Carolina State Univ, Mt Crop Improvement Lab, Dept Hort Sci, Mt Hort Crops Res & Extens Ctr, Mills River, NC 28759 USA
来源
FRONTIERS IN PLANT SCIENCE | 2020年 / 11卷
关键词
chromosome doubling; in vitroregeneration; mitotic inhibitor; plant breeding; polyploidy; whole genome duplication; VITRO POLYPLOIDY INDUCTION; ESSENTIAL OIL COMPOSITION; DINITROANILINE HERBICIDE; REPRODUCTIVE-BEHAVIOR; SHOOT REGENERATION; TETRAPLOID PLANTS; COLCHICINE; ORYZALIN; L; TUBULIN;
D O I
10.3389/fpls.2020.00722
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
In vitroregeneration systems provide a powerful tool for manipulating ploidy to facilitate breeding and development of new crops. Polyploid induction can expand breeding opportunities, assist with the development of seedless triploid cultivars, enhance ornamental characteristics and environmental tolerances, increase biomass and restore fertility in wide hybrids.In vitroploidy manipulation is commonly induced using antimitotic agents such as colchicine, oryzalin and trifluralin, while many other antimitotic agents have been relatively unexplored. Successful induction requires a synergistic pairing of efficient penetration of the antimitotic agent and may be dependent the length of exposure and concentrations of antimitotic agents, tissue types, and interactions with basal media and plant growth regulators.In vitroconditions vary among taxa and individual genera, species, and cultivars, often requiring unique treatments to maximize polyploid induction. In some taxa, the induction of polyploidy influencesin vitrogrowth, development, and root formation. Here we provide an overview of mitotic inhibitors and their application forin vitroploidy manipulation for plant breeding and crop improvement.
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页数:11
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共 116 条
[81]   Reproductive behavior of induced allotetraploid xChitalpa and in vitro embryo culture of polyploid progeny [J].
Olsen, Richard T. ;
Ranney, Thomas G. ;
Viloria, Zenaida .
JOURNAL OF THE AMERICAN SOCIETY FOR HORTICULTURAL SCIENCE, 2006, 131 (06) :716-724
[82]  
Palmer I.E., 2008, South. Nurserymen Assn. Res. Conf, V53, P186
[83]   Polyploidization for the Genetic Improvement of Cannabis sativa [J].
Parsons, Jessica L. ;
Martin, Sara L. ;
James, Tracey ;
Golenia, Gregory ;
Boudko, Ekaterina A. ;
Hepworth, Shelley R. .
FRONTIERS IN PLANT SCIENCE, 2019, 10
[84]   Colchicine and oryzalin mediated chromosome doubling in different genotypes of Miscanthus sinensis [J].
Karen Koefoed Petersen ;
Per Hagberg ;
Kell Kristiansen .
Plant Cell, Tissue and Organ Culture, 2003, 73 (2) :137-146
[85]   In vitro chromosome doubling of Miscanthus sinensis [J].
Petersen, KK ;
Hagberg, P ;
Kristiansen, K .
PLANT BREEDING, 2002, 121 (05) :445-450
[86]   Chemical inhibitors:: a tool for plant cell cycle studies [J].
Planchais, S ;
Glab, N ;
Inzé, D ;
Bergounioux, C .
FEBS LETTERS, 2000, 476 (1-2) :78-83
[87]  
RANNEY TG, 2006, COMB P INT PLANT PRO, V56, P137
[88]   Production of compact petunias through polyploidization [J].
Regalado, J. J. ;
Carmona-Martin, E. ;
Querol, V. ;
Velez, C. G. ;
Encina, C. L. ;
Pitta-Alvarez, S. I. .
PLANT CELL TISSUE AND ORGAN CULTURE, 2017, 129 (01) :61-71
[89]   In vitro induction of autotetraploids from diploid yellow passion fruit mediated by colchicine and oryzalin [J].
Rego, M. M. ;
Rego, E. R. ;
Bruckner, C. H. ;
Finger, F. L. ;
Otoni, W. C. .
PLANT CELL TISSUE AND ORGAN CULTURE, 2011, 107 (03) :451-459
[90]   Induction of Polyploid Tillered Onion using Colchicine and Pendimethalin [J].
Ren, Jian ;
Wu, Xiaoxu ;
Song, Ce ;
Liang, Yu ;
Gao, Wenzheng ;
Wang, Yong .
SAINS MALAYSIANA, 2018, 47 (11) :2617-2624