Facella Paolo, Carbone Fabrizio, Placido Antonio, Perrotta Gaetano
ENEA Trisaia Research Center Rotondella (MT) Italy.
Council for Agricultural Research and Economics The Olive Growing and Olive Product Industry Research Centre Rende (CS) Italy.
FEBS Open Bio. 2017 Mar 1;7(4):456-471. doi: 10.1002/2211-5463.12082. eCollection 2017 Apr.
Light plays a key role in the regulation of many physiological processes required for plant and chloroplast development. Plant cryptochromes (crys) play an important role in monitoring, capturing, and transmitting the light stimuli. In this study, we analyzed the effects of CRY2 overexpression on transcription of tomato chloroplast genome by a tiling array, containing about 90 000 overlapping probes (5-nucleotide resolution). We profiled transcription in leaves of wild-type and CRY2-overexpressing plants grown in a diurnal cycle, to generate a comprehensive map of chloroplast transcription and to monitor potential specific modulations of the chloroplast transcriptome induced by the overexpression of CRY2. Our results demonstrate that CRY2 is a master gene of transcriptional regulation in the tomato chloroplast. In fact, it modulates the day/night mRNA abundance of about 58% of the 114 ORFs. The effect of CRY2 includes a differential extension of some transcripts at their 5'-end, according to the period of the day. We observed that the influence of CRY2 on chloroplast transcription is not limited to coding RNA; a great number of putative noncoding micro RNA also showed differential accumulation pattern. To our knowledge, this is the first study that highlights how a photoreceptor affects the day/night transcription of the chloroplast genome.
光在植物和叶绿体发育所需的许多生理过程的调节中起着关键作用。植物隐花色素(crys)在监测、捕获和传递光刺激方面发挥着重要作用。在本研究中,我们通过包含约90000个重叠探针(5核苷酸分辨率)的平铺阵列分析了CRY2过表达对番茄叶绿体基因组转录的影响。我们对在昼夜循环中生长的野生型和CRY2过表达植物的叶片转录进行了分析,以生成叶绿体转录的综合图谱,并监测由CRY2过表达诱导的叶绿体转录组的潜在特异性调节。我们的结果表明,CRY2是番茄叶绿体转录调控的主控基因。事实上,它调节了114个开放阅读框中约58%的昼夜mRNA丰度。CRY2的作用包括根据一天中的不同时段,在一些转录本的5'端进行差异延伸。我们观察到,CRY2对叶绿体转录的影响不仅限于编码RNA;大量假定的非编码微小RNA也显示出差异积累模式。据我们所知,这是第一项突出显示光感受器如何影响叶绿体基因组昼夜转录的研究。