School of Applied Biosciences, Kyungpook National University, Daegu, 702-701, Republic of Korea.
Graduate School of Biotechnology and Crop Biotech Institute, Kyung Hee University, Yongin, 446-701, Republic of Korea.
Plant Mol Biol. 2016 Sep;92(1-2):71-88. doi: 10.1007/s11103-016-0496-1. Epub 2016 Jun 29.
Microspore production using endogenous developmental programs has not been well studied. The main limitation is the difficulty in identifying genes preferentially expressed in pollen grains at early stages. To overcome this limitation, we collected transcriptome data from anthers and microspore/pollen and performed meta-expression analysis. Subsequently, we identified 410 genes showing preferential expression patterns in early developing pollen samples of both japonica and indica cultivars. The expression patterns of these genes are distinguishable from genes showing pollen mother cell or tapetum-preferred expression patterns. Gene Ontology enrichment and MapMan analyses indicated that microspores in rice are closely linked with protein degradation, nucleotide metabolism, and DNA biosynthesis and regulation, while the pollen mother cell or tapetum are strongly associated with cell wall metabolism, lipid metabolism, secondary metabolism, and RNA biosynthesis and regulation. We also generated transgenic lines under the control of the promoters of eight microspore-preferred genes and confirmed the preferred expression patterns in plants using the GUS reporting system. Furthermore, cis-regulatory element analysis revealed that pollen specific elements such as POLLEN1LELAT52, and 5659BOXLELAT5659 were commonly identified in the promoter regions of eight rice genes with more frequency than estimation. Our study will provide new sights on early pollen development in rice, a model crop plant.
利用内源性发育程序进行小孢子生产尚未得到很好的研究。主要的限制是难以识别在花粉粒早期优先表达的基因。为了克服这一限制,我们收集了来自花药和小孢子/花粉的转录组数据,并进行了元表达分析。随后,我们在粳稻和籼稻品种的早期发育花粉样本中鉴定出了 410 个优先表达模式的基因。这些基因的表达模式与表现出花粉母细胞或绒毡层优先表达模式的基因明显不同。GO 富集和 MapMan 分析表明,水稻中的小孢子与蛋白质降解、核苷酸代谢和 DNA 生物合成和调控密切相关,而花粉母细胞或绒毡层则与细胞壁代谢、脂质代谢、次生代谢以及 RNA 生物合成和调控密切相关。我们还在八个小孢子优先表达基因的启动子控制下生成了转基因系,并使用 GUS 报告系统在植物中证实了优先表达模式。此外,顺式调控元件分析表明,在具有更高频率的八个水稻基因的启动子区域中,通常会识别出花粉特异性元件,如 POLLEN1LELAT52 和 5659BOXLELAT5659。我们的研究将为水稻这一模式作物的早期花粉发育提供新的视角。