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首页> 外文期刊>Genes & Genetic Systems >Effect of a rye B chromosome and its segments on homoeologous pairing in hybrids between common wheat and Aegilops variabilis
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Effect of a rye B chromosome and its segments on homoeologous pairing in hybrids between common wheat and Aegilops variabilis

机译:黑麦B染色体及其片段对普通小麦与变异山羊草杂种同源配对的影响。

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References(24) Cited-By(2) Rye B chromosomes, which are supernumerary chromosomes dispensable for the host but increase in number by non-disjunction after meiosis, have been reported to affect meiotic homoeologous pairing in wheat-rye hybrids. The effect of a rye B chromosome (B) and its segments (B-9 and B-10) on homoeologous pairing was studied in hybrids between common wheat (2n = 42) and Aegilops variabilis (2n = 28), with reference to the Ph1 gene located on wheat chromosome 5B. The B-9 and B-10 chromosomes are derived from reciprocal translocations between a wheat and the B chromosomes, and the former had the B pericentromeric segment and the latter had the B distal segment. Both the B and B-9 chromosomes suppressed homoeologous pairing when chromosome 5B was absent. On the other hand, the B-9 and B-10 chromosomes promoted homoeologous pairing when 5B was present. On pairing suppression, B-9 had a greater effect in one dose than in two doses, and B-9 had a greater effect than B-10 had in one dose. These results suggested that the effect of the B chromosomes on homoeologous pairing was not confined to a specific region and that the intensity of the effect varied depending on the presence or absence of 5B and also on the segment and dose of the B chromosome. The mean chiasma frequency (10.23) in a hybrid (2n = 36) possessing 5B and one B-9 was considerably higher than that (2.78) of a hybrid (2n = 35) possessing 5B alone, and was comparable with that (14.09) of a hybrid (2n = 34) lacking 5B. This fact suggested that the B chromosome or its segment can be used in introducing alien genes into wheat by inducing homoeologous pairing between wheat and alien chromosome.
机译:参考文献(24)被引诱的By(2)黑麦B染色体是宿主可以分配的多余染色体,但减数分裂后通过非分离增加了数目,影响了小麦-黑麦杂种的减数分裂同源配对。研究了黑麦B染色体(B)及其片段(B-9和B-10)对同源配对的影响,参考了普通小麦(2n = 42)与变异山羊草(2n = 28)之间的杂交。 Ph1基因位于小麦5B号染色体上。 B-9和B-10染色体来源于小麦和B染色体之间的相互易位,前者具有B着丝粒部分,而后者具有B远端部分。当缺少5B染色体时,B和B-9染色体都抑制了同源配对。另一方面,当存在5B时,B-9和B-10染色体促进同源配对。在配对抑制方面,B-9在一剂中的作用大于两剂,而B-9在一剂中的作用大于B-10。这些结果表明,B染色体对同源配对的作用不限于特定区域,并且作用强度取决于5B的存在与否以及B染色体的区段和剂量而变化。具有5B和一个B-9的杂种(2n = 36)的平均chiasma频率(10.23)明显高于仅具有5B的杂种(2n = 35)的平均(2.78),与(14.09)具有可比性缺乏5B的混合动力(2n = 34)。这个事实表明,通过诱导小麦和外来染色体之间的同源配对,B染色体或其片段可以用于将外源基因引入小麦。

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