Rey María-Dolores, Calderón María C, Prieto Pilar
Plant Breeding Department, Institute for Sustainable Agriculture, Agencia Estatal Consejo Superior de Investigaciones Científicas Córdoba, Spain.
Front Plant Sci. 2015 Mar 19;6:160. doi: 10.3389/fpls.2015.00160. eCollection 2015.
Intensive breeding has led to a narrowing in the genetic base of our major crops. In wheat, access to the extensive gene pool residing in its many and varied relatives (some cultivated, others wild) is hampered by the block on recombination imposed by the Ph1 (Pairing homoeologous 1) gene. Here, the ph1b mutant has been exploited to induced allosyndesis between wheat chromosomes and those of both Hordeum vulgare (cultivated barley) and H. chilense (a wild barley). A number of single chromosome Hordeum sp. substitution and addition lines in wheat were crossed and backcrossed to the ph1b mutant to produce plants in which pairing between the wheat and the non-wheat chromosomes was not suppressed by the presence of Ph1. Genomic in situ hybridization was applied to almost 500 BC1F2 progeny as a screen for allosyndetic recombinants. Chromosome rearrangements were detected affecting H. chilense chromosomes 4H (ch) , 5H (ch) , 6H (ch) , and 7H (ch) and H. vulgare chromosomes 4H (v) , 6H (v) , and 7H (v) . Two of these were clearly the product of a recombination event involving chromosome 4H (ch) and a wheat chromosome.
集约化育种导致了我们主要作物遗传基础的变窄。在小麦中,由于Ph1(同源配对1)基因对重组的阻碍,获取其众多不同亲缘种(一些是栽培种,另一些是野生种)中广泛的基因库受到了限制。在此,ph1b突变体已被用于诱导小麦染色体与栽培大麦(大麦)和智利大麦(一种野生大麦)染色体之间的异源联会。将一些小麦中的单染色体大麦属替代系和附加系与ph1b突变体进行杂交和回交,以产生小麦与非小麦染色体之间的配对不受Ph1存在抑制的植株。对近500个BC1F2后代进行了基因组原位杂交,作为异源联会重组体的筛选。检测到影响智利大麦染色体4H(ch)、5H(ch)、6H(ch)和7H(ch)以及大麦染色体4H(v)、6H(v)和7H(v)的染色体重排。其中两个显然是涉及4H(ch)染色体和一条小麦染色体的重组事件的产物。