Wilhelm Edward P, Turner Adrian S, Laurie David A
Crop Genetics Department, John Innes Centre, Norwich Research Park, Colney, Norwich, NR4 7UH, UK.
Theor Appl Genet. 2009 Jan;118(2):285-94. doi: 10.1007/s00122-008-0898-9. Epub 2008 Oct 7.
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.
光周期反应的变异在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(在短日照或长日照下相似时间后开花)的突变已定位在2B(Ppd - B1)和2D(Ppd - D1)染色体上,其共线位置对应于大麦的2H Ppd - H1基因。目前尚不知道A基因组存在突变。在D基因组上,光周期不敏感可能是由于一个调控区域的缺失导致伪反应调节因子(PRR)基因家族成员的错误表达,并激活了光周期途径,而与日照长度无关。四倍体(硬粒)小麦的光周期不敏感特征较少。我们比较了光周期反应不同的近等基因系对,结果表明光周期不敏感与A基因组PRR基因的两个独立缺失有关,这两个缺失导致了表达改变。这与花调控因子FT的诱导有关。六倍体小麦的A基因组缺失和之前描述的D基因组缺失去除了一个共同区域,这表明光周期不敏感存在共同机制。A基因组突变的鉴定将有助于硬粒小麦种质的鉴定,并构建具有光周期不敏感等位基因新组合的基因型。