Instituto Milenio de Biología Integrativa (iBio), Santiago, Chile.
Fundación Ciencia y Vida, Santiago, Chile.
Plant J. 2024 Sep;119(5):2255-2272. doi: 10.1111/tpj.16915. Epub 2024 Jul 17.
Advancing chloroplast genetic engineering in Chlamydomonas reinhardtii remains challenging, decades after its first successful transformation. This study introduces the development of a chloroplast-optimized mNeonGreen fluorescent reporter, enabling in vivo observation through a sixfold increase in fluorescence via context-aware construct engineering. Our research highlights the influence of transcriptional readthrough and antisense mRNA pairing on post-transcriptional regulation, pointing to novel strategies for optimizing heterologous gene expression. We further demonstrate the applicability of these insights using an accessible experimentation system using glass-bead transformation and reestablishment of photosynthesis using psbH mutants, focusing on the mitigation of transcriptional readthrough effects. By characterizing heterologous expression using regulatory elements such as PrrnS, 5'atpA, and 3' rbcL in a sense-transcriptional context, we further documented up to twofold improvement in fluorescence levels. Our findings contribute new tools for molecular biology research in the chloroplast and evidence fundamental gene regulation processes that could enable the development of more effective chloroplast engineering strategies. This work not only paves the way for more efficient genetic engineering of chloroplasts but also deepens our understanding of the regulatory mechanisms at play.
在蓝藻门水华鱼腥藻中进行叶绿体遗传工程仍然具有挑战性,尽管早在几十年前就首次成功实现了转化。本研究介绍了一种叶绿体优化的 mNeonGreen 荧光报告基因的开发,通过上下文感知构建工程将荧光强度提高了六倍,从而能够进行体内观察。我们的研究强调了转录通读和反义 mRNA 配对对外转录调控的影响,为优化异源基因表达提供了新的策略。我们进一步使用玻璃珠转化和 psbH 突变体重建光合作用的可及实验系统证明了这些见解的适用性,重点是减轻转录通读效应。通过使用 PrrnS、5'atpA 和 3' rbcL 等调节元件在顺式转录背景下对异源表达进行表征,我们进一步记录了荧光水平提高了两倍。我们的研究结果为叶绿体的分子生物学研究提供了新的工具,并为可能开发更有效的叶绿体工程策略提供了基本的基因调控过程的证据。这项工作不仅为叶绿体的更高效遗传工程铺平了道路,也加深了我们对发挥作用的调控机制的理解。