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智利大麦的细胞遗传学:现状及育种相关考量

Cytogenetics of Hordeum chilense: current status and considerations with reference to breeding.

作者信息

Martín A, Cabrera A

机构信息

Departamento de Agronomía y Mejora Genética Vegetal, Instituto de Agricultura Sostenible, Consejo Superior de Investigaciones Científicas, Córdoba, Spain.

出版信息

Cytogenet Genome Res. 2005;109(1-3):378-84. doi: 10.1159/000082423.

Abstract

Hordeum chilense Roem. et Schult. has a number of characteristics interesting for breeding: high crossability with other Triticeae, resistance to biotic and abiotic stresses and high variability for quality traits such as endosperm storage proteins or carotenoid content. xTritordeum, the amphiploids between H. chilense and different Triticum spp, are bridge species which facilitate the transfer of traits from H. chilense to wheat or triticale. The chromosome pairing between H. chilense and wheat chromosomes is very low (if existing) even in the absence of the action of the Ph1 gene. Nevertheless, translocation between H. chilense and wheat chromosomes has been observed frequently in genomic combinations where univalents of both species are present and therefore a method is available for using H. chilense in wheat or triticale breeding. Hybrids and amphiploids with other crop species of the Triticeae, such as rye or barley, have also been obtained, although to date the production of stable introgression stocks has not been completed. The technique of chromosome painting, using both high- and low-repeated DNA sequences in combination with genomic in situ hybridization have been used as effective methods for basic cytogenetic research in H. chilense, allowing analysis of genome evolution, and monitoring H. chilense chromosomes in interspecific hybridization breeding programs.

摘要

智利大麦(Hordeum chilense Roem. et Schult.)具有许多对育种有意义的特性:与其他小麦族物种杂交亲和性高、对生物和非生物胁迫具有抗性,并且在胚乳贮藏蛋白或类胡萝卜素含量等品质性状方面具有高度变异性。xTritordeum是智利大麦与不同小麦物种之间的双二倍体,是促进智利大麦性状向小麦或小黑麦转移的桥梁物种。即使在没有Ph1基因作用的情况下,智利大麦与小麦染色体之间的染色体配对也非常低(如果存在的话)。然而,在两个物种的单价体都存在的基因组组合中,经常观察到智利大麦与小麦染色体之间的易位,因此有方法可将智利大麦用于小麦或小黑麦育种。与小麦族的其他作物物种,如黑麦或大麦的杂种和双二倍体也已获得,尽管迄今为止尚未完成稳定渐渗系的培育。染色体涂染技术,结合高重复和低重复DNA序列与基因组原位杂交,已被用作智利大麦基础细胞遗传学研究的有效方法,可用于分析基因组进化,并在种间杂交育种计划中监测智利大麦染色体。

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