Kulshreshtha R, Kumar N, Balyan H S, Gupta P K, Khurana P, Tyagi A K, Khurana J P
Department of Plant Molecular Biology, University of Delhi South Campus, New Delhi, 110 021, India.
Planta. 2005 Jul;221(5):675-89. doi: 10.1007/s00425-004-1473-5. Epub 2005 May 13.
Phytochromes are a family of red/far-red light perceiving photoreceptors. The monocot phytochrome family is represented by three members, PHYA, PHYB and PHYC. We have isolated and characterized the first PHY gene member (TaPHYC) from common wheat, Triticum aestivum var. CPAN1676. It codes for a species of the photoreceptor, phyC, which is known to be light-stable in all plants analyzed so far. A sequence of 7.2 kb has been determined, which includes 3.42 kb of coding region. This is the second full-length PHYC gene sequenced from a monocot (first was from rice). TaPHYC gene shares structural similarities with the rice PHYC containing four exons and three introns in the coding region. The 5' UTR is 1.0-kb-long and harbors an upstream open reading frame (URF) encoding 28 aa. Southern blot analysis of TaPHYC indicates that it represents single locus in the wheat genome, although the possibility of additional loci cannot be completely ruled out. Chromosomal localization using nullisomic-tetrasomic lines of Triticum aestivum var. Chinese Spring places TaPHYC on chromosome 4B. PHYC represents a constitutively expressed gene in all the organs tested and under light/dark conditions. However, PHYC was found to be developmentally regulated showing maximal expression in 3-day-old dark-grown seedlings, which declined thereafter. In silico analysis has also been done to compare TaPHYC gene with the partial sequences known from other wheat species and cultivars. The presence of a topoisomerase gene immediately downstream of the PHYC gene, both in rice and wheat genomes, presents yet another example of synteny in cereals and its possible significance has been discussed.
光敏色素是一类感受红光/远红光的光感受器家族。单子叶植物光敏色素家族由三个成员PHYA、PHYB和PHYC代表。我们已经从小麦(普通小麦品种CPAN1676)中分离并鉴定了首个PHY基因成员(TaPHYC)。它编码一种光感受器phyC,据知在迄今分析的所有植物中该光感受器对光稳定。已测定了一段7.2 kb的序列,其中包括3.42 kb的编码区。这是从单子叶植物中测序得到的第二个全长PHYC基因(第一个来自水稻)。TaPHYC基因与水稻PHYC在结构上有相似性,其编码区包含四个外显子和三个内含子。5'非翻译区(UTR)长1.0 kb,含有一个编码28个氨基酸的上游开放阅读框(URF)。TaPHYC的Southern杂交分析表明,它在小麦基因组中代表单一位点,尽管不能完全排除存在其他位点的可能性。利用中国春小麦品种的缺体-四体品系进行染色体定位,将TaPHYC定位到4B染色体上。PHYC在所有测试器官以及光照/黑暗条件下均为组成型表达基因。然而,发现PHYC受发育调控,在3日龄黑暗培养的幼苗中表达量最高,此后下降。还进行了电子分析,以将TaPHYC基因与其他小麦物种和品种已知的部分序列进行比较。在水稻和小麦基因组中,PHYC基因紧邻下游均存在一个拓扑异构酶基因,这是谷类作物中同线性的又一个例子,并已讨论了其可能的意义。