Department of Biochemistry and Molecular Biology, College of Life Science, Nanjing Agricultural University, Nanjing, 210095, PR China.
Plant Cell Physiol. 2011 Sep;52(9):1665-75. doi: 10.1093/pcp/pcr102. Epub 2011 Aug 3.
Investigation of heavy metal tolerance genes in green algae is of great importance because heavy metals have become one of the major contaminants in the aquatic ecosystem. In plants, accumulation of heavy metals modifies many aspects of cellular functions. However, the mechanism by which heavy metals exert detrimental effects is poorly understood. In this study, we identified a role for HO-1 (encoding heme oxygenase-1) in regulating the response of Chlamydomonas reinhardtii, a unicellular green alga, to mercury (Hg). Transgenic algae overexpressing HO-1 showed high tolerance to Hg exposure, with a 48.2% increase in cell number over the wild type, but accumulated less Hg. Physiological analysis revealed that expression of HO-1 suppressed the Hg-induced generation of reactive oxygen species. We further identified the effect of carbon monoxide (CO), a product of HO-1-mediated heme degradation, on growth and physiological parameters. Interestingly, administration of exogenous CO at non-toxic levels also conferred the tolerance of algae to Hg exposure. The CO-mediated alleviation of Hg toxicity was closely related to the lower accumulation of Hg and free radical species. These results indicate that functional identification of HO-1 is useful for molecular breeding designed to improve plant tolerance to heavy metals and reduce heavy metal accumulation in plant cells.
研究绿藻对重金属的耐受性基因具有重要意义,因为重金属已成为水生态系统中的主要污染物之一。在植物中,重金属的积累会改变许多细胞功能。然而,重金属产生有害影响的机制还不太清楚。在这项研究中,我们发现 HO-1(编码血红素加氧酶-1)在调节莱茵衣藻(一种单细胞绿藻)对汞(Hg)的反应中起作用。过表达 HO-1 的转基因藻类对 Hg 暴露表现出高耐受性,细胞数量比野生型增加了 48.2%,但积累的 Hg 较少。生理分析表明,HO-1 的表达抑制了 Hg 诱导的活性氧的产生。我们进一步确定了 HO-1 介导的血红素降解产物一氧化碳(CO)对生长和生理参数的影响。有趣的是,在非毒性水平下给予外源性 CO 也能使藻类耐受 Hg 暴露。CO 介导的减轻 Hg 毒性与 Hg 积累和自由基种类的减少密切相关。这些结果表明,HO-1 的功能鉴定有助于设计用于提高植物对重金属的耐受性和减少植物细胞中重金属积累的分子育种。