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甜橙(Citrus sinensis)中AP2/ERF基因超家族的全基因组鉴定与系统发育分析

Genome-wide identification and phylogenetic analysis of the AP2/ERF gene superfamily in sweet orange (Citrus sinensis).

作者信息

Ito T M, Polido P B, Rampim M C, Kaschuk G, Souza S G H

机构信息

Laboratório de Biologia Molecular, Universidade Paranaense, Umuarama, PR, Brasil.

Laboratório de Biologia Molecular, Universidade Paranaense, Umuarama, PR, Brasil

出版信息

Genet Mol Res. 2014 Sep 26;13(3):7839-51. doi: 10.4238/2014.September.26.22.

DOI:10.4238/2014.September.26.22
PMID:25299098
Abstract

Sweet orange (Citrus sinensis) plays an important role in the economy of more than 140 countries, but it is grown in areas with intermittent stressful soil and climatic conditions. The stress tolerance could be addressed by manipulating the ethylene response factor (ERF) transcription factors because they orchestrate plant responses to environmental stress. We performed an in silico study on the ERFs in the expressed sequence tag database of C. sinensis to identify potential genes that regulate plant responses to stress. We identified 108 putative genes encoding protein sequences of the AP2/ERF superfamily distributed within 10 groups of amino acid sequences. Ninety-one genes were assembled from the ERF family containing only one AP2/ERF domain, 13 genes were assembled from the AP2 family containing two AP2/ERF domains, and four other genes were assembled from the RAV family containing one AP2/ERF domain and a B3 domain. Some conserved domains of the ERF family genes were disrupted into a few segments by introns. This irregular distribution of genes in the AP2/ERF superfamily in different plant species could be a result of genomic losses or duplication events in a common ancestor. The in silico gene expression revealed that 67% of AP2/ERF genes are expressed in tissues with usual plant development, and 14% were expressed in stressed tissues. Because the AP2/ERF superfamily is expressed in an orchestrated way, it is possible that the manipulation of only one gene may result in changes in the whole plant function, which could result in more tolerant crops.

摘要

甜橙(Citrus sinensis)在140多个国家的经济中发挥着重要作用,但它生长在土壤和气候条件间歇性恶劣的地区。通过操纵乙烯反应因子(ERF)转录因子可以解决其胁迫耐受性问题,因为它们协调植物对环境胁迫的反应。我们对甜橙表达序列标签数据库中的ERF进行了电子研究,以确定调控植物胁迫反应的潜在基因。我们鉴定出108个推定基因,其编码的蛋白质序列属于AP2/ERF超家族,分布在10组氨基酸序列中。91个基因来自仅含一个AP2/ERF结构域的ERF家族,13个基因来自含两个AP2/ERF结构域的AP2家族,另外4个基因来自含一个AP2/ERF结构域和一个B3结构域的RAV家族。ERF家族基因的一些保守结构域被内含子打断成几个片段。不同植物物种中AP2/ERF超家族基因的这种不规则分布可能是共同祖先基因组丢失或复制事件的结果。电子基因表达分析表明,67%的AP2/ERF基因在植物正常发育的组织中表达,14%在胁迫组织中表达。由于AP2/ERF超家族是以一种协调的方式表达的,因此仅操纵一个基因就可能导致整个植物功能的改变,从而培育出耐受性更强的作物。

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