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二倍体小麦族中的基因补偿了小麦 5D 染色体上低温调节基因 Ltp 的功能。

Genes in diploid triticinae compensating for the low temperature regulating gene Ltp in chromosome 5D of Triticum aestivum.

机构信息

Instituto Gulbenkian de Ciência, Oeiras, Portugal.

出版信息

Theor Appl Genet. 1979 Sep;55(5):205-8. doi: 10.1007/BF00268114.

Abstract

Hybrids of Triticum aestivum (monosomic 5D or ditelosomic 5DL) x T. speltoides (= Ae. speltoides) showed that the genotype of T. speltoides carries gene(s) which can partially compensate for the expected decrease in chromosome association at low temperatures (10°C) in the absence of chromosome 5D. In hybrids of T. aestivum (normal, ditelosomic 3DL or ditelosomic 3DL-monosomic 5D) x T. longissimum (= Ae. sharonensis), this compensation was not observed.In normal F1 hybrids of T. durum x T. longissimum partial chromosome association occurred at 10°C and this stabilizer effect may be explained by the presence of a Ltp-like gene on chromosome 5A. When a line of T. durum carrying a homozygous translocated 5B-5D chromosome was used in the crosses an even higher chromosome association was observed.These results suggest either the existence of a promoter gene for chromosome association in the 5D translocated segment or the loss of a weak suppressor gene in the removed segment of 5B. It was concluded that the translocated 5D segment did not carry the Ltp stabilizer gene.

摘要

小麦(单体 5D 或双体 5DL)x 斯佩耳特小麦杂种表明,斯佩耳特小麦的基因型携带可部分补偿染色体在低温(10°C)下减少联会的基因(s),在没有 5D 染色体的情况下。在小麦(正常、双体 3DL 或双体 3DL-单体 5D)x 长穗偃麦草杂种中,未观察到这种补偿。在硬粒小麦 x 长穗偃麦草的正常 F1 杂种中,在 10°C 时发生部分染色体联会,这种稳定剂效应可以用 5A 染色体上存在 Ltp 样基因来解释。当使用携带纯合易位 5B-5D 染色体的硬粒小麦系进行杂交时,观察到甚至更高的染色体联会。这些结果表明,5D 易位片段中存在染色体联会的启动子基因,或者在 5B 的缺失片段中丢失了一个弱的抑制基因。结论是,易位的 5D 片段不携带 Ltp 稳定剂基因。

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