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禾本科钙结合蛋白基因家族的特性分析。

Characterization of the caleosin gene family in the Triticeae.

机构信息

Biology Department, Concordia University, 7141 Sherbrooke W, Montreal, QC H4B 1R6, Canada.

出版信息

BMC Genomics. 2014 Mar 27;15(1):239. doi: 10.1186/1471-2164-15-239.

Abstract

BACKGROUND

The caleosin genes encode proteins with a single conserved EF hand calcium-binding domain and comprise small gene families found in a wide range of plant species. Some members of the gene family have been shown to be upregulated by environmental stresses including low water availability and high salinity. Caleosin 3 from wheat has been shown to interact with the α-subunit of the heterotrimeric G proteins, and to act as a GTPase activating protein (GAP). This study characterizes the size and diversity of the gene family in wheat and related species and characterizes the differential tissue-specific expression of members of the gene family.

RESULTS

A total of 34 gene family members that belong to eleven paralogous groups of caleosins were identified in the hexaploid bread wheat, T. aestivum. Each group was represented by three homeologous copies of the gene located on corresponding homeologous chromosomes, except the caleosin 10, which has four gene copies. Ten gene family members were identified in diploid barley, Hordeum vulgare, and in rye, Secale cereale, seven in Brachypodium distachyon, and six in rice, Oryza sativa. The analysis of gene expression was assayed in triticale and rye by RNA-Seq analysis of 454 sequence sets and members of the gene family were found to have diverse patterns of gene expression in the different tissues that were sampled in rye and in triticale, the hybrid hexaploid species derived from wheat and rye. Expression of the gene family in wheat and barley was also previously determined by microarray analysis, and changes in expression during development and in response to environmental stresses are presented.

CONCLUSIONS

The caleosin gene family had a greater degree of expansion in the Triticeae than in the other monocot species, Brachypodium and rice. The prior implication of one member of the gene family in the stress response and heterotrimeric G protein signaling, points to the potential importance of the caleosin gene family. The complexity of the family and differential expression in various tissues and under conditions of abiotic stress suggests the possibility that caleosin family members may play diverse roles in signaling and development that warrants further investigation.

摘要

背景

钙调蛋白基因编码具有单个保守 EF 手钙结合结构域的蛋白质,包含在广泛的植物物种中发现的小基因家族。该基因家族的一些成员已被证明可被包括低水分可用性和高盐度在内的环境胁迫上调。小麦的钙调蛋白 3 已被证明与异三聚体 G 蛋白的α亚基相互作用,并作为 GTP 酶激活蛋白(GAP)起作用。本研究描述了小麦和相关物种中该基因家族的大小和多样性,并描述了该基因家族成员的差异组织特异性表达。

结果

在六倍体面包小麦 T. aestivum 中,共鉴定出属于十一个钙调蛋白旁系同源群的 34 个基因家族成员。每个组都由位于相应同源染色体上的三个同源基因的拷贝代表,除了钙调蛋白 10,它有四个基因拷贝。在二倍体大麦 Hordeum vulgare 和黑麦 Secale cereale 中鉴定出 10 个基因家族成员,在短柄草 Brachypodium distachyon 中鉴定出 7 个,在水稻 Oryza sativa 中鉴定出 6 个。通过对 454 个序列集的 RNA-Seq 分析,在黑麦和黑麦衍生的杂种六倍体物种triticale 中测定了基因表达的分析,在取样的不同组织中发现基因家族成员的基因表达具有多样化的模式,在小麦和黑麦中,基因家族的表达也通过微阵列分析预先确定,并呈现了在发育过程中以及在应对环境胁迫时的表达变化。

结论

钙调蛋白基因家族在小麦族中的扩张程度大于其他单子叶植物物种,如短柄草和水稻。该基因家族的一个成员参与了胁迫反应和异三聚体 G 蛋白信号转导,这表明钙调蛋白基因家族可能具有重要意义。该家族的复杂性以及在不同组织和非生物胁迫条件下的差异表达表明,钙调蛋白家族成员可能在信号转导和发育中发挥多种作用,值得进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f240/3986672/3d74aad986d8/12864_2013_7045_Fig1_HTML.jpg

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