Ernst Wilfried H O, Krauss Gerd-Joachim, Verkleij Jos A C, Wesenberg Dirk
Institute of Ecological Science, Vrije Universiteit Amsterdam, De Boelelaan (10851081) HV Amsterdam, The Netherlands.
Plant Cell Environ. 2008 Jan;31(1):123-43. doi: 10.1111/j.1365-3040.2007.01746.x. Epub 2007 Nov 12.
The metabolism of sulphur in angiosperms is reviewed under the aspect of exposure to ecologically relevant concentrations of sulphur, heavy metals and metalloids. Because of the inconsistent use of the term 'metal tolerance', in this review the degree of tolerance to arsenic and heavy metals is divided into three categories: hypotolerance, basal tolerance and hypertolerance. The composition of nutrient solutions applied to physiological experiments let see that the well-known interactions of calcium, sulphate and zinc supply with uptake of heavy metals, especially cadmium are insufficiently considered. Expression of genes involved in reductive sulphate assimilation pathway and enzyme activities are stimulated by cadmium and partially by copper, but nearly not by other heavy metals. The synthesis of the sulphur-rich compounds glucosinolates, metallothioneins and phytochelatins is affected in a metal-specific way. Phytochelatin levels are low in all metal(loid)-hypertolerant plant species growing in the natural environment on metal(loid)-enriched soils. If laboratory experiments mimic the natural environments, especially high Zn/Cd ratios and good sulphur supply, and chemical analyses are extended to more mineral elements than the single metal(loid) under investigation, a better understanding of the impact of metal(loid)s on the sulphur metabolism can be achieved.
本文从接触具有生态相关性的硫、重金属和类金属浓度的角度,对被子植物中硫的代谢进行了综述。由于“金属耐受性”一词的使用不一致,在本综述中,对砷和重金属的耐受程度分为三类:低耐受性、基础耐受性和高耐受性。应用于生理实验的营养液成分表明,钙、硫酸盐和锌供应与重金属(尤其是镉)吸收之间的众所周知的相互作用未得到充分考虑。参与还原性硫酸盐同化途径的基因表达和酶活性受到镉的刺激,部分受到铜的刺激,但几乎不受其他重金属的刺激。富含硫的化合物硫代葡萄糖苷、金属硫蛋白和植物螯合肽的合成受到金属特异性的影响。在富含金属(类金属)的土壤中自然生长的所有金属(类金属)高耐受性植物物种中,植物螯合肽水平都很低。如果实验室实验模拟自然环境,特别是高锌/镉比率和良好的硫供应,并且化学分析扩展到比所研究的单一金属(类金属)更多的矿质元素,那么就能更好地理解金属(类金属)对硫代谢的影响。