van de Mortel Judith E, Almar Villanueva Laia, Schat Henk, Kwekkeboom Jeroen, Coughlan Sean, Moerland Perry D, Ver Loren van Themaat Emiel, Koornneef Maarten, Aarts Mark G M
Laboratory of Genetics, Wageningen University, 6703 BD Wageningen, The Netherlands.
Plant Physiol. 2006 Nov;142(3):1127-47. doi: 10.1104/pp.106.082073. Epub 2006 Sep 22.
The micronutrient zinc has an essential role in physiological and metabolic processes in plants as a cofactor or structural element in 300 catalytic and noncatalytic proteins, but it is very toxic when available in elevated amounts. Plants tightly regulate their internal zinc concentrations in a process called zinc homeostasis. The exceptional zinc hyperaccumulator species Thlaspi caerulescens can accumulate up to 3% of zinc, but also high amounts of nickel and cadmium, without any sign of toxicity. This should have drastic effects on the zinc homeostasis mechanism. We examined in detail the transcription profiles of roots of Arabidopsis thaliana and T. caerulescens plants grown under deficient, sufficient, and excess supply of zinc. A total of 608 zinc-responsive genes with at least a 3-fold difference in expression level were detected in A. thaliana and 352 in T. caerulescens in response to changes in zinc supply. Only 14% of these genes were also zinc responsive in A. thaliana. When comparing A. thaliana with T. caerulescens at each zinc exposure, more than 2,200 genes were significantly differentially expressed (>or=5-fold and false discovery rate < 0.05). While a large fraction of these genes are of yet unknown function, many genes with a different expression between A. thaliana and T. caerulescens appear to function in metal homeostasis, in abiotic stress response, and in lignin biosynthesis. The high expression of lignin biosynthesis genes corresponds to the deposition of lignin in the endodermis, of which there are two layers in T. caerulescens roots and only one in A. thaliana.
微量营养素锌在植物的生理和代谢过程中起着至关重要的作用,它是300种催化和非催化蛋白质的辅助因子或结构元素,但当锌含量过高时,它具有很强的毒性。植物通过一个称为锌稳态的过程严格调节其内部锌浓度。特殊的锌超积累植物天蓝遏蓝菜可以积累高达3%的锌,同时还能积累大量的镍和镉,且没有任何毒性迹象。这应该会对锌稳态机制产生巨大影响。我们详细研究了在锌供应不足、充足和过量的条件下生长的拟南芥和天蓝遏蓝菜根部的转录谱。在拟南芥中检测到总共608个锌响应基因,其表达水平至少有3倍的差异,在天蓝遏蓝菜中检测到352个。这些基因中只有14%在拟南芥中也是锌响应基因。在每次锌暴露条件下比较拟南芥和天蓝遏蓝菜时,超过2200个基因存在显著差异表达(≥5倍且错误发现率<0.05)。虽然这些基因中的很大一部分功能尚不清楚,但许多在拟南芥和天蓝遏蓝菜之间表达不同的基因似乎在金属稳态、非生物胁迫响应和木质素生物合成中发挥作用。木质素生物合成基因的高表达与木质素在内皮层中的沉积相对应,天蓝遏蓝菜根中有两层内皮层,而拟南芥根中只有一层。