Donald Danforth Plant Science Center, 975 N. Warson Rd, St Louis, MO, 63132, USA.
Department of Biology, University of Missouri, One University Boulevard, St Louis, MO, 63121, USA.
Plant J. 2017 Dec;92(6):1232-1244. doi: 10.1111/tpj.13731. Epub 2017 Nov 18.
Chlamydomonas reinhardtii is a unicellular green alga that has attracted interest due to its potential biotechnological applications, and as a model for algal biofuel and energy metabolism. Despite all the advantages that this unicellular alga offers, poor and inconsistent expression of nuclear transgenes remains an obstacle for basic and applied research. We used a data-mining strategy to identify highly expressed genes in Chlamydomonas whose flanking sequences were tested for the ability to drive heterologous nuclear transgene expression. Candidates identified in this search included two ribosomal protein genes, RPL35a and RPL23, and ferredoxin, FDX1, whose flanking regions including promoters, terminators and untranslated sequences could drive stable luciferase transgene expression to significantly higher levels than the commonly used Hsp70A-RBCS2 (AR) hybrid promoter/terminator sequences. The RPL23 flanking sequences were further tested using the zeocin resistance gene sh-ble as a reporter in monocistronic and dicistronic constructs, and consistently yielded higher numbers of zeocin-resistant transformants and higher levels of resistance than AR- or PSAD-based vectors. Chlamydomonas RPL23 sequences also enabled transgene expression in Volvox carteri. Our study provides an additional benchmark for strong constitutive expression of transgenes in Chlamydomonas, and develops a general approach for identifying flanking sequences that can be used to drive transgene expression for any organism where transcriptome data are available.
莱茵衣藻是一种单细胞绿藻,由于其在生物技术方面的潜在应用,以及作为藻类生物燃料和能量代谢的模型,引起了人们的兴趣。尽管这种单细胞藻类具有所有的优势,但核转基因的表达水平低且不稳定仍是基础和应用研究的一个障碍。我们采用数据挖掘策略,鉴定了在莱茵衣藻中高度表达的基因,这些基因的侧翼序列被测试是否具有驱动异源核转基因表达的能力。在这次搜索中鉴定出的候选基因包括两个核糖体蛋白基因 RPL35a 和 RPL23,以及铁氧还蛋白 FDX1,它们的侧翼区域包括启动子、终止子和非翻译序列,可以驱动稳定的荧光素酶转基因表达,使其表达水平显著高于常用的 Hsp70A-RBCS2(AR)杂种启动子/终止子序列。进一步用 zeocin 抗性基因 sh-ble 作为报告基因,在单顺反子和双顺反子构建体中测试了 RPL23 侧翼序列,结果 consistently 产生了更多的 zeocin 抗性转化体,抗性水平也高于基于 AR 或 PSAD 的载体。莱茵衣藻 RPL23 序列还能使转基因在衣藻属中表达。我们的研究为莱茵衣藻中转基因的强组成型表达提供了另一个基准,并开发了一种通用方法,用于鉴定侧翼序列,以驱动任何具有转录组数据的生物的转基因表达。