首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Photoperiod insensitive Ppd-A1a mutations in tetraploid wheat (Triticum durum Desf.)
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Photoperiod insensitive Ppd-A1a mutations in tetraploid wheat (Triticum durum Desf.)

机译:四倍体小麦(Triticum durum Desf。)中光周期不敏感的Ppd-A1a突变

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Variation in photoperiod response plays an important role in adapting crops to agricultural environments. In hexaploid wheat, mutations conferring photoperiod insensitivity (flowering after a similar time in short or long days) have been mapped on the 2B (Ppd-B1) and 2D (Ppd-D1) chromosomes in colinear positions to the 2H Ppd-H1 gene of barley. No A genome mutation is known. On the D genome, photoperiod insensitivity is likely to be caused by deletion of a regulatory region that causes misexpression of a member of the pseudo-response regulator (PRR) gene family and activation of the photoperiod pathway irrespective of day length. Photoperiod insensitivity in tetraploid (durum) wheat is less characterized. We compared pairs of near-isogenic lines that differ in photoperiod response and showed that photoperiod insensitivity is associated with two independent deletions of the A genome PRR gene that cause altered expression. This is associated with induction of the floral regulator FT. The A genome deletions and the previously described D genome deletion of hexaploid wheat remove a common region, suggesting a shared mechanism for photoperiod insensitivity. The identification of the A genome mutations will allow characterization of durum wheat germplasm and the construction of genotypes with novel combinations of photoperiod insensitive alleles.
机译:光周期反应的变化在使作物适应农业环境中起着重要作用。在六倍体小麦中,赋予光周期不敏感性的突变(短时间或长距离相似时间后开花)已定位于2B(Ppd-B1)和2D(Ppd-D1)染色体上与2H Ppd-H1基因共线的位置上大麦。没有已知的基因组突变。在D基因组上,光周期不敏感很可能是由于调节区的缺失而引起的,而该调节区会导致假应答调节因子(PRR)基因家族成员的错误表达以及光周期途径的激活,而与天数无关。四倍体(硬粒)小麦对光周期的不敏感性较少。我们比较了在光周期反应方面不同的近等基因系对,并表明光周期不敏感性与A基因组PRR基因的两个独立缺失有关,从而引起表达改变。这与花香调节剂FT的诱导有关。六倍体小麦的A基因组删除和先前描述的D基因组删除删除了一个共同的区域,表明光周期不敏感的共享机制。 A基因组突变的鉴定将允许硬粒小麦种质的表征和利用光周期不敏感等位基因的新组合构建基因型。

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