Haploids: Constraints and opportunities in plant breeding

被引:141
作者
Dwivedi, Sangam L. [1 ]
Britt, Anne B. [2 ]
Tripathi, Leena [3 ]
Sharma, Shivali [1 ]
Upadhyaya, Hari D. [1 ,4 ,5 ,6 ]
Ortiz, Rodomiro [7 ]
机构
[1] Int Crops Res Inst Semi Arid Trop, Patancheru 502324, Telangana, India
[2] Univ Calif Davis, Dept Plant Biol, Davis, CA 95616 USA
[3] IITA, Nairobi, Kenya
[4] Kansas State Univ, Dept Agron, Manhattan, KS 66506 USA
[5] Univ Western Australia, UWA Inst Agr, Crawley, WA 6009, Australia
[6] Univ Louisiana Lafayette, Dept Biol, Lafayette, LA 70504 USA
[7] Swedish Univ Agr Sci, Dept Plant Breeding, S-23053 Alnarp, Sweden
基金
美国国家科学基金会;
关键词
Accelerating plant breeding; Centromere-mediated genome elimination; Genetic transformation and androgenesis; Haploids and doubled haploids; In vitro gametic tissues and plant breeding; MARKER-ASSISTED SELECTION; TRITICUM-AESTIVUM L; FUSARIUM-WILT RESISTANCE; IN-VITRO PRODUCTION; HORDEUM-VULGARE L; BRASSICA-NAPUS L; ORYZA-SATIVA L; DOUBLED-HAPLOIDS; MICROSPORE EMBRYOGENESIS; GENOMIC SELECTION;
D O I
10.1016/j.biotechadv.2015.07.001
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The discovery of haploids in higher plants led to the use of doubled haploid (DH) technology in plant breeding. This article provides the state of the art on DH technology including the induction and identification of haploids, what factors influence haploid induction, molecular basis of microspore embryogenesis, the genetics underpinnings of haploid induction and its use in plant breeding, particularly to fix traits and unlock genetic variation. Both in vitro and in vivo methods have been used to induce haploids that are thereafter chromosome doubled to produce DH. Various heritable factors contribute to the successful induction of haploids, whose genetics is that of a quantitative trait. Genomic regions associated with in vitro and in vivo DH production were noted in various crops with the aid of DNA markers. It seems that F-2 plants are the most suitable for the induction of DH lines than F-1 plants. Identifying putative haploids is a key issue in haploid breeding. DH technology in Brassicas and cereals, such as barley, maize, rice, rye and wheat, has been improved and used routinely in cultivar development, while in other food staples such as pulses and root crops the technology has not reached to the stage leading to its application in plant breeding. The centromere-mediated haploid induction system has been used in Arabidopsis, but not yet in crops. Most food staples are derived from genomic resources-rich crops, including those with sequenced reference genomes. The integration of genomic resources with DH technology provides new opportunities for the improving selection methods, maximizing selection gains and accelerate cultivar development. Marker-aided breeding and DH technology have been used to improve host plant resistance in barley, rice, and wheat Multinational seed companies are using DH technology in large-scale production of inbred lines for further development of hybrid cultivars, particularly in maize. The public sector provides support to national programs or small-medium private seed for the exploitation of DH technology in plant breeding. (C) 2015 Elsevier Inc All rights reserved.
引用
收藏
页码:812 / 829
页数:18
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