Rodrigues Simone M, Andrade Maxuel O, Gomes Ana Paula Soares, Damatta Fabio M, Baracat-Pereira Maria C, Fontes Elizabeth P B
Departamento de Bioquímica e Biologia Molecular/BIOAGRO, Universidade Federal de Viçosa, MG, Brasil.
J Exp Bot. 2006;57(9):1909-18. doi: 10.1093/jxb/erj132. Epub 2006 Apr 4.
Despite extensive studies in eukaryotic aldehyde dehydrogenases, functional information about the ALDH7 antiquitin-like proteins is lacking. A soybean antiquitin homologue gene, designated GmTP55, has been isolated which encodes a dehydrogenase motif-containing 55 kDa protein induced by dehydration and salt stress. GmTP55 is closely related to the stress-induced plant antiquitin-like proteins that belong to the ALDH7 family. Transgenic tobacco (Nicotiana tabacum) and Arabidopsis (Arabidopsis thaliana) plants constitutively expressing GmTP55 have been obtained in order to examine the physiological role of this enzyme under a variety of stress conditions. Ectopic expression of GmTP55 in both Arabidopsis and tobacco conferred tolerance to salinity during germination and to water deficit during plant growth. Under salt stress, the germination efficiency of both transgenic tobacco and Arabidopsis seeds was significantly higher than that of their control counterparts. Likewise, under progressive drought, the transgenic tobacco lines apparently kept the shoot turgidity to a normal level, which contrasted with the leaf wilt phenotype of control plants. The transgenic plants also exhibited an enhanced tolerance to H(2)O(2)- and paraquat-induced oxidative stress. Both GmTP55-expressing Arabidopsis and tobacco seeds germinated efficiently in medium supplemented with H(2)O(2), whereas the germination of control seeds was drastically impaired. Similarly, transgenic tobacco leaf discs treated with paraquat displayed a significant reduction in the necrotic lesions as compared with control leaves. These transgenic lines also exhibited a lower concentration of lipid peroxidation-derived reactive aldehydes under oxidative stress. These results suggest that antiquitin may be involved in adaptive responses mediated by a physiologically relevant detoxification pathway in plants.
尽管对真核生物醛脱氢酶进行了广泛研究,但关于ALDH7抗泛素样蛋白的功能信息仍然缺乏。已分离出一个大豆抗泛素同源基因,命名为GmTP55,它编码一种含有脱氢酶基序的55 kDa蛋白,该蛋白受脱水和盐胁迫诱导。GmTP55与属于ALDH7家族的胁迫诱导型植物抗泛素样蛋白密切相关。为了研究这种酶在各种胁迫条件下的生理作用,已获得组成型表达GmTP55的转基因烟草(Nicotiana tabacum)和拟南芥(Arabidopsis thaliana)植株。GmTP55在拟南芥和烟草中的异位表达赋予了种子萌发期间对盐胁迫的耐受性以及植株生长期间对水分亏缺的耐受性。在盐胁迫下,转基因烟草和拟南芥种子的萌发效率均显著高于对照种子。同样,在渐进干旱条件下,转基因烟草品系的地上部保持正常的膨压,这与对照植株的叶片萎蔫表型形成对比。转基因植株还表现出对H(2)O(2)和百草枯诱导的氧化胁迫的耐受性增强。在添加H(2)O(2)的培养基中,表达GmTP55的拟南芥和烟草种子均能高效萌发,而对照种子的萌发则受到严重抑制。同样,与对照叶片相比,用百草枯处理的转基因烟草叶盘坏死损伤显著减少,这些转基因品系在氧化胁迫下脂质过氧化衍生的活性醛浓度也较低。这些结果表明,抗泛素可能参与植物中由生理相关解毒途径介导的适应性反应。