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五倍体小麦杂种:应用、特性及挑战

Pentaploid Wheat Hybrids: Applications, Characterisation, and Challenges.

作者信息

Padmanaban Sriram, Zhang Peng, Hare Ray A, Sutherland Mark W, Martin Anke

机构信息

Centre for Crop Health, University of Southern Queensland, Toowoomba QLD, Australia.

Plant Breeding Institute, The University of Sydney, Sydney NSW, Australia.

出版信息

Front Plant Sci. 2017 Mar 17;8:358. doi: 10.3389/fpls.2017.00358. eCollection 2017.

Abstract

Interspecific hybridisation between hexaploid and tetraploid wheat species leads to the development of F pentaploid hybrids with unique chromosomal constitutions. Pentaploid hybrids derived from bread wheat ( L.) and durum wheat ( spp. Desf.) crosses can improve the genetic background of either parent by transferring traits of interest. The genetic variability derived from bread and durum wheat and transferred into pentaploid hybrids has the potential to improve disease resistance, abiotic tolerance, and grain quality, and to enhance agronomic characters. Nonetheless, pentaploid wheat hybrids have not been fully exploited in breeding programs aimed at improving crops. There are several potential barriers for efficient pentaploid wheat production, such as low pollen compatibility, poor seed set, failed seedling establishment, and frequent sterility in F hybrids. However, most of the barriers can be overcome by careful selection of the parental genotypes and by employing the higher ploidy level genotype as the maternal parent. In this review, we summarize the current research on pentaploid wheat hybrids and analyze the advantages and pitfalls of current methods used to assess pentaploid-derived lines. Furthermore, we discuss current and potential applications in commercial breeding programs and future directions for research into pentaploid wheat.

摘要

六倍体小麦物种与四倍体小麦物种之间的种间杂交会产生具有独特染色体组成的F五倍体杂种。源自普通小麦(L.)和硬粒小麦(spp. Desf.)杂交的五倍体杂种可以通过转移感兴趣的性状来改善任一亲本的遗传背景。源自普通小麦和硬粒小麦并转移到五倍体杂种中的遗传变异性具有改善抗病性、非生物耐受性和籽粒品质以及增强农艺性状的潜力。尽管如此,五倍体小麦杂种在旨在改良作物的育种计划中尚未得到充分利用。高效生产五倍体小麦存在几个潜在障碍,例如花粉兼容性低、结实率低、幼苗建立失败以及F杂种中频繁出现不育现象。然而,通过仔细选择亲本基因型并采用较高倍性水平的基因型作为母本,大多数障碍是可以克服的。在这篇综述中,我们总结了当前关于五倍体小麦杂种的研究,并分析了用于评估五倍体衍生系的当前方法的优点和缺陷。此外,我们讨论了在商业育种计划中的当前和潜在应用以及五倍体小麦研究的未来方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25ff/5355473/060835acd44f/fpls-08-00358-g001.jpg

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