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亚麻(Linum usitatissimum)家族糖基水解酶 35 基因的基因组和表达分析。

Genomic and expression analysis of the flax (Linum usitatissimum) family of glycosyl hydrolase 35 genes.

机构信息

Department of Biological Sciences, University of Alberta, Edmonton, AB T6G 2E9, Canada.

出版信息

BMC Genomics. 2013 May 23;14:344. doi: 10.1186/1471-2164-14-344.

Abstract

BACKGROUND

Several β-galactosidases of the Glycosyl Hydrolase 35 (GH35) family have been characterized, and many of these modify cell wall components, including pectins, xyloglucans, and arabinogalactan proteins. The phloem fibres of flax (Linum usitatissimum) have gelatinous-type cell walls that are rich in crystalline cellulose and depend on β-galactosidase activity for their normal development. In this study, we investigate the transcript expression patterns and inferred evolutionary relationships of the complete set of flax GH35 genes, to better understand the functions of these genes in flax and other species.

RESULTS

Using the recently published flax genome assembly, we identified 43 β-galactosidase-like (BGAL) genes, based on the presence of a GH35 domain. Phylogenetic analyses of their protein sequences clustered them into eight sub-families. Sub-family B, whose members in other species were known to be expressed in developing flowers and pollen, was greatly under represented in flax (p-value < 0.01). Sub-family A5, whose sole member from arabidopsis has been described as its primary xyloglucan BGAL, was greatly expanded in flax (p-value < 0.01). A number of flax BGALs were also observed to contain non-consensus GH35 active sites. Expression patterns of the flax BGALs were investigated using qRT-PCR and publicly available microarray data. All predicted flax BGALs showed evidence of expression in at least one tissue.

CONCLUSION

Flax has a large number of BGAL genes, which display a distinct distribution among the BGAL sub-families, in comparison to other closely related species with available whole genome assemblies. Almost every flax BGAL was expressed in fibres, the majority of which expressed predominately in fibres as compared to other tissues, suggesting an important role for the expansion of this gene family in the development of this species as a fibre crop. Variations displayed in the canonical GH35 active site suggest a variety of roles unique to flax, which will require further characterization.

摘要

背景

已经鉴定出糖苷水解酶 35 家族(GH35)的几种β-半乳糖苷酶,其中许多修饰细胞壁成分,包括果胶、木葡聚糖和阿拉伯半乳聚糖蛋白。亚麻(Linum usitatissimum)的韧皮纤维具有凝胶状细胞壁,富含结晶纤维素,其正常发育依赖于β-半乳糖苷酶活性。在这项研究中,我们研究了亚麻 GH35 基因完整集合的转录表达模式和推断的进化关系,以更好地理解这些基因在亚麻和其他物种中的功能。

结果

使用最近公布的亚麻基因组组装,我们根据 GH35 结构域的存在,鉴定出 43 个β-半乳糖苷酶样(BGAL)基因。它们的蛋白质序列系统发育分析将它们聚类为八个亚家族。在其他物种中已知在发育中的花和花粉中表达的亚家族 B 在亚麻中严重代表性不足(p 值<0.01)。亚家族 A5,其在拟南芥中的唯一成员被描述为其主要的木葡聚糖 BGAL,在亚麻中得到了极大的扩展(p 值<0.01)。一些亚麻 BGAL 也被观察到含有非共识 GH35 活性位点。使用 qRT-PCR 和公开可用的微阵列数据研究了亚麻 BGAL 的表达模式。预测的所有亚麻 BGAL 在至少一种组织中均显示出表达证据。

结论

与具有可用全基因组组装的其他密切相关物种相比,亚麻具有大量的 BGAL 基因,这些基因在 BGAL 亚家族中分布明显。几乎每个亚麻 BGAL 在纤维中都有表达,其中大多数在纤维中的表达量高于其他组织,这表明该基因家族的扩张在该物种作为纤维作物的发育中起着重要作用。在典型 GH35 活性位点中显示的变化表明了亚麻特有的多种作用,这需要进一步的表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4849/3673811/9b9d0e93186b/1471-2164-14-344-1.jpg

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