Pillet Jeremy, Yu Hao-Wei, Chambers Alan H, Whitaker Vance M, Folta Kevin M
Horticultural Sciences Department, University of Florida, Gainesville, FL 32611, USA.
Gulf Coast Research and Education Center, University of Florida, Wimauma, FL 33598, USA.
J Exp Bot. 2015 Aug;66(15):4455-67. doi: 10.1093/jxb/erv205. Epub 2015 May 15.
New modulators of the strawberry flavonoid pathway were identified through correlation network analysis. The transcriptomes of red, ripe fruit from two parental lines and 14 of their progeny were compared, and uncharacterized transcripts matching the expression patterns of known flavonoid-pathway genes were identified. Fifteen transcripts corresponded with putative transcription factors, and several of these were examined experimentally using transient expression in developing fruits. The results suggest that two of the newly-identified regulators likely contribute to discrete nodes of the flavonoid pathway. One increases only LEUCOANTHOCYANIDIN REDUCTASE (LAR) and FLAVONOL 3'-HYDROXYLASE (F3'H) transcript accumulation upon overexpression. Another affects LAR and FLAVONOL SYNTHASE (FLS) after overexpression. The third putative transcription factor appears to be a universal regulator of flavonoid-pathway genes, as many pathway transcripts decrease in abundance when this gene is silenced. This report demonstrates that such systems-level approaches may be especially powerful when connected to an effective transient expression system, helping to provide rapid and strong evidence of gene function in key fruit-ripening processes.
通过关联网络分析鉴定出草莓类黄酮途径的新型调控因子。比较了两个亲本系及其14个后代的红色成熟果实的转录组,并鉴定出与已知类黄酮途径基因表达模式相匹配的未表征转录本。15个转录本与推定的转录因子相对应,其中几个在发育中的果实中通过瞬时表达进行了实验研究。结果表明,两个新鉴定的调控因子可能作用于类黄酮途径的不同节点。一个在过表达时仅增加无色花青素还原酶(LAR)和黄酮醇3'-羟化酶(F3'H)的转录本积累。另一个在过表达后影响LAR和黄酮醇合酶(FLS)。第三个推定的转录因子似乎是类黄酮途径基因的通用调控因子,因为当该基因沉默时,许多途径转录本的丰度会降低。本报告表明,当与有效的瞬时表达系统相结合时,这种系统水平的方法可能特别有效,有助于在关键果实成熟过程中快速有力地证明基因功能。