Molecular Plant Biophysics and Biochemistry, Depatment of Molecular Biology, University of Salzburg, Billrothstr.11, 5020, Salzburg, Austria.
Plant Mol Biol. 2015 Jan;87(1-2):69-80. doi: 10.1007/s11103-014-0261-2. Epub 2014 Oct 24.
Pollen grains of Lilium longiflorum are a long-established model system for pollen germination and tube tip growth. Due to their size, protein content and almost synchronous germination in synthetic media, they provide a simple system for physiological measurements as well as sufficient material for biochemical studies like protein purifications, enzyme assays, organelle isolation or determination of metabolites during germination and pollen tube elongation. Despite recent progresses in molecular biology techniques, sequence information of expressed proteins or transcripts in lily pollen is still scarce. Using a next generation sequencing strategy (RNAseq), the lily pollen transcriptome was investigated resulting in more than 50 million high quality reads with a length of 90 base pairs. Sequenced transcripts were assembled and annotated, and finally visualized with MAPMAN software tools and compared with other RNAseq or genome data including Arabidopsis pollen, Lilium vegetative tissues and the Amborella trichopoda genome. All lily pollen sequence data are provided as open access files with suitable tools to search sequences of interest.
百合花粉粒是花粉萌发和管尖生长的长期确立的模式系统。由于其大小、蛋白质含量和在合成培养基中几乎同步萌发,它们为生理测量提供了一个简单的系统,同时也为生化研究提供了足够的材料,如蛋白质纯化、酶测定、细胞器分离或在萌发和花粉管伸长过程中代谢物的测定。尽管在分子生物学技术方面取得了最近的进展,但百合花粉中表达蛋白或转录本的序列信息仍然很少。使用下一代测序策略(RNAseq),研究了百合花粉的转录组,产生了超过 5000 万个高质量的 90 碱基长的读取。测序的转录本被组装和注释,并最终使用 MAPMAN 软件工具进行可视化,并与其他 RNAseq 或基因组数据(包括拟南芥花粉、百合营养组织和 Amborella trichopoda 基因组)进行比较。所有百合花粉序列数据都作为开放访问文件提供,并提供了适当的工具来搜索感兴趣的序列。