Department of Developmental Biology and Neurosciences, Graduate School of Life Sciences, Tohoku University, Sendai 980-8578, Japan.
Plant J. 2010 Nov;64(4):645-56. doi: 10.1111/j.1365-313X.2010.04351.x. Epub 2010 Oct 5.
This comprehensive overview of the xyloglucan endotransglucosylase/hydrolase (XTH) family of genes and proteins in bryophytes, based on research using genomic resources that are newly available for the moss Physcomitrella patens, provides new insights into plant evolution. In angiosperms, the XTH genes are found in large multi-gene families, probably reflecting the diverse roles of individual XTHs in various cell types. As there are fewer cell types in P. patens than in angiosperms such as Arabidopsis and rice, it is tempting to deduce that there are fewer XTH family genes in bryophytes. However, the present study unexpectedly identified as many as 32 genes that potentially encode XTH family proteins in the genome of P. patens, constituting a fairly large multi-gene family that is comparable in size with those of Arabidopsis and rice. In situ localization of xyloglucan endotransglucosylase activity in this moss indicates that some P. patens XTH proteins exhibit biochemical functions similar to those found in angiosperms, and that their expression profiles are tissue-dependent. However, comparison of structural features of families of XTH genes between P. patens and angiosperms demonstrated the existence of several bryophyte-specific XTH genes with distinct structural and functional features that are not found in angiosperms. These bryophyte-specific XTH genes might have evolved to meet morphological and functional needs specific to the bryophyte. These findings raise interesting questions about the biological implications of the XTH family of proteins in non-seed plants.
基于对新出现的藓类植物苔藓 Physcomitrella patens 基因组资源的研究,本文全面概述了木葡聚糖内转糖基酶/水解酶(XTH)家族在苔藓植物中的基因和蛋白质,为植物进化提供了新的见解。在被子植物中,XTH 基因存在于大型多基因家族中,这可能反映了单个 XTH 在各种细胞类型中的多种作用。由于苔藓植物的细胞类型比拟南芥和水稻等被子植物少,因此人们很容易推断出苔藓植物中的 XTH 家族基因较少。然而,本研究出人意料地在苔藓植物 P. patens 的基因组中鉴定出多达 32 个可能编码 XTH 家族蛋白的基因,构成了一个相当大的多基因家族,其大小与拟南芥和水稻相当。木葡聚糖内转糖基酶活性的原位定位表明,一些 P. patens XTH 蛋白表现出与被子植物相似的生化功能,并且它们的表达谱依赖于组织。然而,对 P. patens 和被子植物之间 XTH 基因家族的结构特征进行比较表明,存在几种具有独特结构和功能特征的苔藓植物特异性 XTH 基因,这些特征在被子植物中不存在。这些苔藓植物特异性 XTH 基因可能是为了满足苔藓植物特有的形态和功能需求而进化而来的。这些发现提出了关于非种子植物 XTH 家族蛋白的生物学意义的有趣问题。