Obertello Mariana, Wall Luis, Laplaze Laurent, Nicole Michel, Auguy Florence, Gherbi Hassen, Bogusz Didier, Franche Claudine
Groupe Rhizogénèse Symbiotique, UMR 1098, IRD (Institut de Recherche pour le D6veloppement), 911 avenue Agropolis, BP 5045, 34394 Montpellier Cedex 5, France.
Mol Plant Microbe Interact. 2007 Oct;20(10):1231-40. doi: 10.1094/MPMI-20-10-1231.
cgMT1 is a metallothionein (MT)-like gene that was isolated from a cDNA library of young nitrogen-fixing nodules resulting from the symbiotic interaction between Frankia spp. and the actinorhizal tree Casuarina glauca. cgMT1 is highly transcribed in the lateral roots and nitrogen-fixing cells of actinorhizal nodules; it encodes a class I type 1 MT. To obtain insight into the function of cgMT1, we studied factors regulating the expression of the MT promoter region (PcgMT1) using a beta-glucuronidase (gus) fusion approach in transgenic plants of Arabidopsis thaliana. We found that copper, zinc, and cadmium ions had no significant effect on the regulation of PcgMT1-gus expression whereas wounding and H2O2 treatments led to an increase in reporter gene activity in transgenic leaves. Strong PcgMT1-gus expression also was observed when transgenic plants were inoculated with a virulent strain of the bacterial pathogen Xanthomonas campestris pv. campestris. Transgenic Arabidopsis plants expressing cgMT1 under the control of the constitutive 35S promoter were characterized by reduced accumulation of H2O2 when leaves were wounded and by increased susceptibility to the bacterial pathogen X. campestris. These results suggest that cgMT1 could play a role during the oxidative response linked to biotic and abiotic stresses.
cgMT1是一种类金属硫蛋白(MT)基因,它是从由弗兰克氏菌属与放线菌根树蓝桉之间的共生相互作用产生的年轻固氮根瘤的cDNA文库中分离出来的。cgMT1在放线菌根瘤的侧根和固氮细胞中高度转录;它编码一种I类1型MT。为了深入了解cgMT1的功能,我们在拟南芥转基因植物中使用β-葡萄糖醛酸酶(gus)融合方法研究了调节MT启动子区域(PcgMT1)表达的因素。我们发现铜、锌和镉离子对PcgMT1-gus表达的调节没有显著影响,而创伤和H2O2处理导致转基因叶片中报告基因活性增加。当转基因植物接种细菌性病原菌野油菜黄单胞菌野油菜致病变种的强毒株时,也观察到了强烈的PcgMT1-gus表达。在组成型35S启动子控制下表达cgMT1的转基因拟南芥植物的特征是,叶片受伤时H2O2积累减少,对细菌性病原菌野油菜黄单胞菌的易感性增加。这些结果表明,cgMT1可能在与生物和非生物胁迫相关的氧化反应中发挥作用。