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苔藓植物小立碗藓的类萌发素蛋白基因家族在系统发育上分为两个具有特征的新分支。

Germin-like protein gene family of a moss, Physcomitrella patens, phylogenetically falls into two characteristic new clades.

作者信息

Nakata Masaru, Watanabe Yayoi, Sakurai Yoko, Hashimoto Yuka, Matsuzaki Masahiro, Takahashi Yohsuke, Satoh Toshio

机构信息

Department of Biological Science, Graduate School of Science, Hiroshima University, Kagamiyama 1-3-1, Higashi-Hiroshima, 739-8526, Japan.

出版信息

Plant Mol Biol. 2004 Oct;56(3):381-95. doi: 10.1007/s11103-004-3475-x.

Abstract

We identified 77 EST clones encoding germin-like proteins (GLPs) from a moss, Physcomitrella patens in a database search. These Physcomitrella GLPs ( PpGLP s) were separated into seven groups based on DNA sequence homology. Phylogenetic analysis showed that these groups were divided into two novel clades clearly distinguishable from higher plant germins and GLPs, named bryophyte subfamilies 1 and 2. PpGLPs belonging to bryophyte subfamilies 1 lacked two cysteines at the conserved positions observed in higher plant germins or GLPs. PpGLPs belonging to bryophyte subfamily 2 contained two cysteines as observed in higher plant germins and GLPs. In bryophyte subfamily 1, 12 amino acids, in which one of two cysteines is included, were deleted between boxes A and B. Further, we determined the genomic structure of all of seven PpGLP genes. The sequences of PpGLP s of bryophyte subfamily 1 contained one or two introns, whereas those of bryophyte subfamily 2 contained no introns. Other GLPs from bryophytes, a liverwort GLP from Marchantia polymorpha , and two moss GLPs from Barbula unguiculata and Ceratodon purpureus also fell into bryophyte subfamily 1 and bryophyte subfamily 2, respectively. No higher plant germins and GLPs were grouped into the bryophyte subfamilies 1 and 2 by our analysis. Moreover, we revealed that PpGLP6 had manganese-containing extracellular superoxide dismutase activity. These results indicated that bryophyte possess characteristic GLPs, which phylogenetically are clearly distinguishable from higher plant GLPs.

摘要

我们在数据库搜索中从一种苔藓——小立碗藓中鉴定出77个编码类萌发素蛋白(GLPs)的EST克隆。这些小立碗藓GLPs(PpGLPs)根据DNA序列同源性被分为七组。系统发育分析表明,这些组被分为两个明显不同于高等植物萌发素和GLPs的新分支,命名为苔藓亚科1和苔藓亚科2。属于苔藓亚科1的PpGLPs在高等植物萌发素或GLPs中保守位置上缺少两个半胱氨酸。属于苔藓亚科2的PpGLPs含有如高等植物萌发素和GLPs中所观察到的两个半胱氨酸。在苔藓亚科1中,在A盒和B盒之间缺失了12个氨基酸,其中包括两个半胱氨酸中的一个。此外,我们确定了所有七个PpGLP基因的基因组结构。苔藓亚科1的PpGLPs序列包含一到两个内含子,而苔藓亚科2的序列不包含内含子。来自苔藓植物的其他GLPs、一种来自多歧紫萼藓的地钱GLP以及来自扭口藓和紫萼藓的两种苔藓GLPs也分别属于苔藓亚科1和苔藓亚科2。通过我们的分析,没有高等植物萌发素和GLPs被归入苔藓亚科1和苔藓亚科2。此外,我们发现PpGLP6具有含锰的细胞外超氧化物歧化酶活性。这些结果表明,苔藓具有特征性的GLPs,在系统发育上与高等植物GLPs明显不同。

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