CEITEC - Central European Institute of Technology, Masaryk University; National Centre for Biomolecular Research, Faculty of Science, Masaryk University.
CEITEC - Central European Institute of Technology, Masaryk University; Institute of Food Biotechnology and Genomics, National Academy of Sciences of Ukraine.
J Vis Exp. 2024 Jan 12(203). doi: 10.3791/66087.
Chlorophyll biosynthesis is a hallmark of de-etiolation, one of the most dramatic stages in the plant life cycle. The tightly controlled and highly dynamic process of chlorophyll biosynthesis is triggered during the shift from the dark to the light in flowering plants. At the moment when etiolated seedlings are exposed to the first traces of sunlight, rapid (in order of seconds) conversion of protochlorophyllide into chlorophyllide is mediated by unique light-accepting protein complexes, leading via subsequent metabolic steps to the production of fully functional chlorophyll. Standard techniques for chlorophyll content analysis include pigment extraction from detached plant tissues, which does not apply to studying such fast processes. To investigate chlorophyll kinetics in vivo with high accuracy and spatiotemporal resolution in the first hours after light-induced de-etiolation, an instrument and protocol were developed. Here, we present a detailed procedure designed for statistically robust quantification of chlorophyll in the early stages of Arabidopsis de-etiolation.
叶绿素生物合成是去黄化的标志之一,是植物生命周期中最显著的阶段之一。在开花植物从黑暗到光照的转变过程中,叶绿素生物合成的这个受到严格控制且高度动态的过程被触发。当黄化幼苗暴露在第一缕阳光下时,原叶绿素ide 通过独特的光接受蛋白复合物迅速(以秒为单位)转化为叶绿素ide,随后通过后续的代谢步骤产生完全功能的叶绿素。叶绿素含量分析的标准技术包括从分离的植物组织中提取色素,但不适用于研究这种快速过程。为了在光诱导去黄化后的最初几个小时内以高精度和时空分辨率在体内研究叶绿素动力学,开发了一种仪器和方案。在这里,我们提出了一种详细的程序,旨在对拟南芥去黄化早期的叶绿素进行统计上稳健的定量。