Liscum E., Hangarter R. P.
Department of Plant Biology, The Ohio State University, Columbus, Ohio 43210.
Plant Cell. 1991 Jul;3(7):685-694. doi: 10.1105/tpc.3.7.685.
We have isolated a new class of photomorphogenic mutants in Arabidopsis. Hypocotyl elongation is not inhibited in the mutant seedlings by continuous blue light but is inhibited by far red light, indicating that these mutations are phenotypically different from the previously isolated long hypocotyl (hy) mutants. Complementation analysis indicated that recessive nuclear mutations at three genetic loci, designated blu1, blu2, and blu3, can result in the blu mutant phenotype and that these mutants are genetically distinct from other long hypocotyl mutants. The BLU genes appear to be important only during seedling development because the blu mutations have little effect on mature plants, whereas hypocotyl elongation and cotyledon expansion are altered in seedlings. The genetic separation of the blue and far red sensitivities of light-induced hypocotyl inhibition in the blu and hy mutants demonstrates that two photosensory systems function in this response.
我们在拟南芥中分离出了一类新的光形态建成突变体。在连续蓝光照射下,突变体幼苗的下胚轴伸长不受抑制,但远红光可抑制其伸长,这表明这些突变在表型上与先前分离出的长下胚轴(hy)突变体不同。互补分析表明,位于三个基因位点(分别命名为blu1、blu2和blu3)的隐性核突变可导致blu突变体表型,且这些突变体在遗传上与其他长下胚轴突变体不同。BLU基因似乎仅在幼苗发育过程中起重要作用,因为blu突变对成熟植株影响很小,而幼苗中的下胚轴伸长和子叶扩展会发生改变。blu和hy突变体中光诱导下胚轴抑制的蓝光和远红光敏感性的遗传分离表明,两种光感受系统在这一反应中发挥作用。