Milioni D, Sado P E, Stacey N J, Domingo C, Roberts K, McCann M C
Department of Cell and Developmental Biology, John Innes Centre, Norwich Research Park, Colney, UK.
Plant Mol Biol. 2001 Sep;47(1-2):221-38.
Plants, animals and some fungi undergo processes of cell specialization such that specific groups of cells are adapted to carry out particular functions. One of the more remarkable examples of cellular development in higher plants is the formation of water-conducting cells that are capable of supporting a column of water from the roots to tens of metres in the air for some trees. The Zinnia mesophyll cell system is a remarkable tool with which to study this entire developmental pathway in vitro. We have recently applied an RNA fingerprinting technology, to allow the detection of DNA fragments derived from RNA using cDNA synthesis and subsequent PCR-amplified fragment length polymorphisms (cDNA-AFLP), to systematically characterize hundreds of the genes involved in the process of tracheary element formation. Building hoops of secondary wall material is the key structural event in forming functional tracheary elements and we have identified over 50 partial sequences related to cell walls out of 600 differentially expressed cDNA fragments. The Zinnia system is an engine of gene discovery which is allowing us to identify and characterize candidate genes involved in cell wall biosynthesis and assembly.
植物、动物和一些真菌会经历细胞特化过程,从而使特定的细胞群适应执行特定功能。高等植物细胞发育中一个较为显著的例子是导水细胞的形成,对于一些树木而言,这些细胞能够支撑从根部到空气中数十米高的水柱。百日菊叶肉细胞系统是一种用于在体外研究整个发育途径的出色工具。我们最近应用了一种RNA指纹技术,通过cDNA合成和随后的PCR扩增片段长度多态性(cDNA-AFLP)来检测源自RNA的DNA片段,以系统地表征参与管状分子形成过程的数百个基因。构建次生壁材料环是形成功能性管状分子的关键结构事件,我们在600个差异表达的cDNA片段中鉴定出了50多个与细胞壁相关的部分序列。百日菊系统是一个基因发现引擎,它使我们能够鉴定和表征参与细胞壁生物合成和组装的候选基因。