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远缘杂交在转移有益基因创造小麦新种质中的潜力 被引量:1

Potentiality of the chromosome translocation in wheat distant crossing and creating new germplasm
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摘要 本文概述了小麦远缘杂交技术的发展以及这些技术的应用对以染色体易位方式转移有益基因到普通小麦中的影响。通过对小麦远缘杂交技术的总结得出,普通小麦由于本身的多倍性,对导入的外源基因具有较强的调节能力,是适宜外源有益基因导入的良好受体。而以染色体易位方式转移有益基因是创造小麦新种质的有效方法之一,许多研究也表明以染色体易位导入的外源有益基因更利于表达。近几年,随着细胞遗传学以及其它生物技术的发展,对小麦族进化途径和染色体间的亲缘关系进一步明确,从而更便于进行易位导入的技术选择,也使得染色体易位鉴定方法更趋完善。现在已有更良好的外源导入的工具和方法,使多基因控制的外源优良性状导入成为可能。在小麦远缘杂交中染色体易位所具有的上述优势,在育种实践中逐步显示出来,为开拓小麦种质资源开创了一条新的途径。 Chromosome translocation as an efficient way to transferring desirable genes to common wheat is successful in creating new wheat germplasm.In this paper the development of the technology on the utility of wheat relatives to common wheat and the influence of this technology on chromosome translocation to transfer desirable genes are summarized.Common wheat as an polypoids is considered more efficient to succeed on chromosome translocation.The studies on wheat evaluation and the relationship among wheat genomes promote the application of chromosome translocation in transferring desir- able genes to common wheat.As the advantage of the chromosome transolcation was ap- peared gradually in wheat breeding programmes,it presents a new way to creating wheat germplasm.
出处 《植物遗传资源科学》 CSCD 2002年第1期61-64,共4页
关键词 小麦 种质 染色体易位 有益基因转移 远缘杂交 Wheat germplasm Chromosome translocation Desirable genes
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参考文献16

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