Auguy Florence, Fahr Mouna, Moulin Patricia, El Mzibri Mohamed, Smouni Abdelaziz, Filali-Maltouf Abdelkarim, Béna Gilles, Doumas Patrick
Institut de Recherche pour le Développement, UMR DIADE, Equipe Rhizogenèse Montpellier, France.
Centre National de l'Energie, des Sciences et des Techniques Nucléaires, Laboratoire de Biotechnologie des Plantes, UBRM-DSV Rabat, Morocco.
Front Plant Sci. 2016 Jan 13;6:1231. doi: 10.3389/fpls.2015.01231. eCollection 2015.
Hirschfeldia incana, a pseudometallophyte belonging to the Brassicaceae family and widespread in the Mediterranean region, was selected for its ability to grow on soils contaminated by lead (Pb). The global comparison of gene expression using microarrays between a plant susceptible to Pb (Arabidopsis thaliana) and a Pb tolerant plant (H. incana) enabled the identification of a set of specific genes expressed in response to lead exposure. Three groups of genes were particularly over-represented by the Pb exposure in the biological processes categorized as photosynthesis, cell wall, and metal handling. Each of these gene groups was shown to be directly involved in tolerance or in protection mechanisms to the phytotoxicity associated with Pb. Among these genes, we demonstrated that MT2b, a metallothionein gene, was involved in lead accumulation, confirming the important role of metallothioneins in the accumulation and the distribution of Pb in leaves. On the other hand, several genes involved in biosynthesis of ABA were shown to be up-regulated in the roots and shoots of H. incana treated with Pb, suggesting that ABA-mediated signaling is a possible mechanism in response to Pb treatment in H. incana. This latest finding is an important research direction for future studies.
灰白希氏芥是一种属于十字花科的假金属植物,在地中海地区广泛分布,因其能够在被铅(Pb)污染的土壤上生长而被选中。利用微阵列对铅敏感植物(拟南芥)和耐铅植物(灰白希氏芥)之间的基因表达进行全球比较,能够鉴定出一组响应铅暴露而表达的特定基因。在归类为光合作用、细胞壁和金属处理的生物过程中,三组基因在铅暴露下尤其过度表达。这些基因组中的每一组都被证明直接参与了对与铅相关的植物毒性的耐受或保护机制。在这些基因中,我们证明金属硫蛋白基因MT2b参与了铅的积累,证实了金属硫蛋白在叶片中铅的积累和分布中的重要作用。另一方面,几个参与脱落酸生物合成的基因在经铅处理的灰白希氏芥的根和地上部分中被上调,这表明脱落酸介导的信号传导是灰白希氏芥对铅处理的一种可能反应机制。这一最新发现是未来研究的一个重要方向。