Frankel Nicolás, Carrari Fernando, Hasson Esteban, Iusem Norberto D
Laboratorio de Fisiología y Biología Molecular, Departamento de Fisiología, Biología Molecular y Celular, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, and IFIBYNE-CONICET, Buenos Aires, Argentina.
Gene. 2006 Aug 15;378:74-83. doi: 10.1016/j.gene.2006.05.010. Epub 2006 May 26.
The Asr gene family is widespread in higher plants. Most Asr genes are up-regulated under different environmental stress conditions and during fruit ripening. ASR proteins are localized in the nucleus and their likely function is transcriptional regulation. In cultivated tomato, we identified a novel fourth family member, named Asr4, which maps close to its sibling genes Asr1-Asr2-Asr3 and displays an unshared region coding for a domain containing a 13-amino acid repeat. In this work we were able to expand our previous analysis for Asr2 and investigated the coding regions of the four known Asr paralogous genes in seven tomato species from different geographic locations. In addition, we performed a phylogenetic analysis on ASR proteins. The first conclusion drawn from this work is that tomato ASR proteins cluster together in the tree. This observation can be explained by a scenario of concerted evolution or birth and death of genes. Secondly, our study showed that Asr1 is highly conserved at both replacement and synonymous sites within the genus Lycopersicon. ASR1 protein sequence conservation might be associated with its multiple functions in different tissues while the low rate of synonymous substitutions suggests that silent variation in Asr1 is selectively constrained, which is probably related to its high expression levels. Finally, we found that Asr1 activation under water stress is not conserved between Lycopersicon species.
Asr基因家族在高等植物中广泛存在。大多数Asr基因在不同的环境胁迫条件下以及果实成熟过程中上调表达。ASR蛋白定位于细胞核,其可能的功能是转录调控。在栽培番茄中,我们鉴定出一个新的家族成员,命名为Asr4,它定位于与其同源基因Asr1 - Asr2 - Asr3附近,并显示出一个编码包含13个氨基酸重复序列结构域的非共享区域。在这项研究中,我们能够扩展之前对Asr2的分析,并研究了来自不同地理位置的7个番茄品种中4个已知Asr旁系同源基因的编码区。此外,我们对ASR蛋白进行了系统发育分析。这项研究得出的第一个结论是,番茄ASR蛋白在系统发育树中聚集在一起。这一观察结果可以通过协同进化或基因的生死模型来解释。其次,我们的研究表明,Asr1在番茄属内的替换位点和同义位点上都高度保守。ASR1蛋白序列的保守性可能与其在不同组织中的多种功能有关,而同义替换率较低表明Asr1中的沉默变异受到选择性限制,这可能与其高表达水平有关。最后,我们发现水分胁迫下Asr1的激活在番茄属物种间并不保守。