Klimmek Frank, Sjödin Andreas, Noutsos Christos, Leister Dario, Jansson Stefan
Umeå Plant Science Centre, Department of Plant Physiology, Umeå University, Sweden.
Plant Physiol. 2006 Mar;140(3):793-804. doi: 10.1104/pp.105.073304.
We have analyzed gene regulation of the Lhc supergene family in poplar (Populus spp.) and Arabidopsis (Arabidopsis thaliana) using digital expression profiling. Multivariate analysis of the tissue-specific, environmental, and developmental Lhc expression patterns in Arabidopsis and poplar was employed to characterize four rarely expressed Lhc genes, Lhca5, Lhca6, Lhcb7, and Lhcb4.3. Those genes have high expression levels under different conditions and in different tissues than the abundantly expressed Lhca1 to 4 and Lhcb1 to 6 genes that code for the 10 major types of higher plant light-harvesting proteins. However, in some of the datasets analyzed, the Lhcb4 and Lhcb6 genes as well as an Arabidopsis gene not present in poplar (Lhcb2.3) exhibited minor differences to the main cooperative Lhc gene expression pattern. The pattern of the rarely expressed Lhc genes was always found to be more similar to that of PsbS and the various light-harvesting-like genes, which might indicate distinct physiological functions for the rarely and abundantly expressed Lhc proteins. The previously undetected Lhcb7 gene encodes a novel plant Lhcb-type protein that possibly contains an additional, fourth, transmembrane N-terminal helix with a highly conserved motif. As the Lhcb4.3 gene seems to be present only in Eurosid species and as its regulation pattern varies significantly from that of Lhcb4.1 and Lhcb4.2, we conclude it to encode a distinct Lhc protein type, Lhcb8.
我们利用数字表达谱分析了杨树(Populus spp.)和拟南芥(Arabidopsis thaliana)中Lhc超基因家族的基因调控。通过对拟南芥和杨树中组织特异性、环境及发育相关的Lhc表达模式进行多变量分析,以表征四个低表达的Lhc基因,即Lhca5、Lhca6、Lhcb7和Lhcb4.3。与编码高等植物10种主要类型光捕获蛋白的高表达Lhca1至4和Lhcb1至6基因相比,这些基因在不同条件和不同组织中的表达水平较高。然而,在一些分析的数据集中,Lhcb4和Lhcb6基因以及杨树中不存在的一个拟南芥基因(Lhcb2.3)与主要的协同Lhc基因表达模式存在细微差异。总是发现低表达Lhc基因的模式与PsbS和各种类光捕获基因的模式更为相似,这可能表明低表达和高表达Lhc蛋白具有不同的生理功能。之前未检测到的Lhcb7基因编码一种新型植物Lhcb型蛋白,该蛋白可能在N端含有一个额外的、第四个跨膜螺旋以及一个高度保守的基序。由于Lhcb4.3基因似乎仅存在于蔷薇类物种中,且其调控模式与Lhcb4.1和Lhcb4.2的调控模式有显著差异,我们推断它编码一种独特的Lhc蛋白类型,即Lhcb8。