Shimizu T, Akada S, Senda M, Ishikawa R, Harada T, Niizeki M, Dube S K
Plant Breeding Laboratory, Faculty of Agriculture, Hirosaki University, Japan.
Plant Mol Biol. 1999 Mar;39(4):785-95. doi: 10.1023/a:1006124219945.
By developing gene-specific RT-PCR and using filters to allow transmission down to 290 nm (UV-B+) or blocking all radiation below 320 nm (UV-B(-)), the effect of UV-B+ and UV-B- light on expression of each of the presently known seven members of soybean chalcone synthase (CHS) gene family in dark-grown seedlings was analyzed. Dark expression was detectable already in 18 h dark-germinating embryos, with progressive increases on successive days, suggesting that chs belongs to a class of genes expressed very early during germination, and that the expression at this stage is either constitutive or induced by non-light-dependent factors present in the seed or made available following imbibition. Exposure of 18 h dark-germinating embryos to UV-B- or to UV-B+ light did not lead to an increase in chs signal. However, the 24 h dark-germinating embryos showed a distinct effect of UV-B+, interestingly coinciding with the stage when the head of seedlings was in the process of being pushed up above ground by stem elongation, suggesting the possibility of a developmental switch modulating the appearance of UV-B response. The response to UV-B- was most prominent in chs1 and almost silent in chs2, while the up-regulation by UV-B+ was most prominent in chs5 and chs6 and much less so in chs2. Interestingly, chs2 was noted to be the only member of the Gmchs gene family devoid of H-box, raising the possibility that the H-box may be a good indicator of the photo-inducibility of a chs gene.
通过开发基因特异性逆转录聚合酶链反应(RT-PCR)并使用滤光片使波长低至290nm的光透过(UV-B+)或阻挡320nm以下的所有辐射(UV-B(-)),分析了UV-B+和UV-B-光对黑暗中生长的大豆查尔酮合酶(CHS)基因家族目前已知的七个成员各自表达的影响。在黑暗中萌发18小时的胚中已可检测到黑暗表达,且在随后的几天中逐渐增加,这表明chs属于一类在萌发早期就表达的基因,并且此阶段的表达要么是组成型的,要么是由种子中存在的非光依赖性因子诱导的,或者是在吸胀后产生的。将黑暗中萌发18小时的胚暴露于UV-B-或UV-B+光下不会导致chs信号增加。然而,黑暗中萌发24小时的胚对UV-B+表现出明显的反应,有趣的是,这与幼苗头部通过茎伸长被向上推至地面以上的阶段相吻合,这表明可能存在一个发育开关来调节UV-B反应的出现。对UV-B-的反应在chs1中最为突出,而在chs2中几乎没有反应,而UV-B+的上调在chs5和chs6中最为突出,在chs2中则要少得多。有趣的是,chs2被认为是Gmchs基因家族中唯一没有H-box的成员,这增加了H-box可能是chs基因光诱导性良好指标的可能性。