Department of Plant Physiology and Molecular Biology, University of Plovdiv, 24 Tsar Assen St, 4000 Plovdiv, Bulgaria.
Plant Physiol Biochem. 2012 Jun;55:85-92. doi: 10.1016/j.plaphy.2012.03.015. Epub 2012 Apr 6.
Resurrection plants can tolerate almost complete water loss in their vegetative parts. The superoxide dismutases (SODs) are essential enzymes of defense against the oxidative damage caused by water stress. Here, we cloned and characterized cDNAs of the SOD gene family in the resurrection plant Haberlea rhodopensis. Seven full-length cDNAs, and their partial genomic clones, were obtained by combination of degenerate PCR, RT-PCR and RACE. The derived amino acid sequences exhibited a very high degree of similarity to cytosolic Cu,Zn-SODs (HrCSD2, HrCSD3), chloroplastic Cu,Zn-SODs (HrCSD5), other Cu,Zn-SODs (HrCSD4), Mn-SODs (HrMSD) and Fe-SODs (HrFSD). One cDNA turned out to be a pseudogene (HrCSD1). All identified SOD genes were found expressed at transcriptional level--the HrCSD2, HrCSD5, HrMSD and HrFSD were constitutively expressed in all organs, while the HrCSD3 and HrCSD4 were organ-specific. The transcripts of the housekeeping SOD genes were detected at significant levels even in air-dry leaves. The multigene SOD family of H. rhodopensis is the first studied SOD family amongst resurrection plant species. Our finding of well expressed SOD transcripts in fully dehydrated leaves correlates with retention of SOD activity, and with the ability of H. rhodopensis to revive upon rehydration. Because of the endemic relict nature of that species, our findings may help to further elucidate the evolutionary relationships among different SOD isoforms from distinct plant species.
复苏植物可以容忍其营养器官几乎完全失去水分。超氧化物歧化酶(SOD)是防御因水分胁迫而导致的氧化损伤的必需酶。在这里,我们克隆并鉴定了复苏植物Habera rhodopensis 的 SOD 基因家族的 cDNA。通过简并 PCR、RT-PCR 和 RACE 的组合,获得了 7 个全长 cDNA 及其部分基因组克隆。推导的氨基酸序列与细胞质 Cu,Zn-SOD(HrCSD2、HrCSD3)、叶绿体 Cu,Zn-SOD(HrCSD5)、其他 Cu,Zn-SOD(HrCSD4)、Mn-SOD(HrMSD)和 Fe-SOD(HrFSD)具有非常高的相似性。一个 cDNA 原来是一个假基因(HrCSD1)。所有鉴定的 SOD 基因在转录水平上均有表达——HrCSD2、HrCSD5、HrMSD 和 HrFSD 在所有器官中均持续表达,而 HrCSD3 和 HrCSD4 则具有器官特异性。看家 SOD 基因的转录本即使在风干叶片中也能检测到显著水平。H. rhodopensis 的多基因 SOD 家族是在复苏植物物种中研究的第一个 SOD 家族。我们在完全脱水的叶片中发现表达良好的 SOD 转录物与 SOD 活性的保留以及 H. rhodopensis 在再水合时能够复活有关。由于该物种具有地方性的残余性质,我们的发现可能有助于进一步阐明来自不同植物物种的不同 SOD 同工型之间的进化关系。