Waters Mark T, Wang Peng, Korkaric Muris, Capper Richard G, Saunders Nigel J, Langdale Jane A
Department of Plant Sciences, University of Oxford, Oxford, OX1 3RB, United Kingdom.
Plant Cell. 2009 Apr;21(4):1109-28. doi: 10.1105/tpc.108.065250. Epub 2009 Apr 17.
Chloroplasts of photosynthetic organisms harness light energy and convert it into chemical energy. In several land plants, GOLDEN2-LIKE (GLK) transcription factors are required for chloroplast development, as glk1 glk2 double mutants are pale green and deficient in the formation of the photosynthetic apparatus. We show here that glk1 glk2 double mutants of Arabidopsis thaliana accumulate abnormal levels of chlorophyll precursors and that constitutive GLK gene expression leads to increased accumulation of transcripts for antenna proteins and chlorophyll biosynthetic enzymes. To establish the primary targets of GLK gene action, an inducible expression system was used in combination with transcriptome analysis. Following induction, transcript pools were substantially enriched in genes involved in chlorophyll biosynthesis, light harvesting, and electron transport. Chromatin immunoprecipitation experiments confirmed the direct association of GLK1 protein with target gene promoters, revealing a putative regulatory cis-element. We show that GLK proteins influence photosynthetic gene expression independently of the phyB signaling pathway and that the two GLK genes are differentially responsive to plastid retrograde signals. These results suggest that GLK genes help to coregulate and synchronize the expression of a suite of nuclear photosynthetic genes and thus act to optimize photosynthetic capacity in varying environmental and developmental conditions.
光合生物的叶绿体利用光能并将其转化为化学能。在几种陆地植物中,叶绿体发育需要类GOLDEN2(GLK)转录因子,因为glk1 glk2双突变体呈浅绿色且光合装置形成不足。我们在此表明,拟南芥的glk1 glk2双突变体积累异常水平的叶绿素前体,并且GLK基因的组成型表达导致天线蛋白和叶绿素生物合成酶的转录本积累增加。为了确定GLK基因作用的主要靶点,将诱导表达系统与转录组分析结合使用。诱导后,转录本库在参与叶绿素生物合成、光捕获和电子传递的基因中大量富集。染色质免疫沉淀实验证实了GLK1蛋白与靶基因启动子的直接关联,揭示了一个假定的调控顺式元件。我们表明,GLK蛋白独立于phyB信号通路影响光合基因表达,并且两个GLK基因对质体逆行信号有不同的反应。这些结果表明,GLK基因有助于共同调节和同步一组核光合基因的表达,从而在不同的环境和发育条件下优化光合能力。