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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >The WRKY Transcription Factor Family in Citrus: Valuable and Useful Candidate Genes for Citrus Breeding
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The WRKY Transcription Factor Family in Citrus: Valuable and Useful Candidate Genes for Citrus Breeding

机译:柑橘中的WRKY转录因子家族:柑橘育种的有价值和有用的候选基因

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摘要

WRKY transcription factors belong to a large family of plant transcriptional regulators whose members have been reported to be involved in a wide range of biological roles including plant development, adaptation to environmental constraints and response to several diseases. However, little or poor information is available about WRKY's in Citrus. The recent release of completely assembled genomes sequences of Citrus sinensis and Citrus clementina and the availability of ESTs sequences from other citrus species allowed us to perform a genome survey for Citrus WRKY proteins. In the present study, we identified 100 WRKY members from C. sinensis (51), C. clementina (48) and Citrus unshiu (1), and analyzed their chromosomal distribution, gene structure, gene duplication, syntenic relation and phylogenetic analysis. A phylogenetic tree of 100 Citrus WRKY sequences with their orthologs from Arabidopsis has distinguished seven groups. The CsWRKY genes were distributed across all ten sweet orange chromosomes. A comprehensive approach and an integrative analysis of Citrus WRKY gene expression revealed variable profiles of expression within tissues and stress conditions indicating functional diversification. Thus, candidate Citrus WRKY genes have been proposed as potentially involved in fruit acidification, essential oil biosynthesis and abiotic/biotic stress tolerance. Our results provided essential prerequisites for further WRKY genes cloning and functional analysis with an aim of citrus crop improvement.
机译:WRKY转录因子属于植物转录调节剂的一个大家族,据报道其成员参与了广泛的生物学作用,包括植物发育,适应环境限制和对几种疾病的反应。但是,关于柑橘中WRKY的信息很少或很少。最近发布的柑橘和柑橘柑桔的完全组装的基因组序列以及其他柑橘种类的ESTs序列的可用性使我们能够进行柑橘WRKY蛋白的基因组研究。在本研究中,我们从中华C(51),柑桔(C. clementina)(48)和柑橘(1)中鉴定了100个WRKY成员,并分析了它们的染色体分布,基因结构,基因重复,同义关系和系统发育分析。由拟南芥属的100个柑橘WRKY序列及其直系同源物组成的系统进化树已将其分为七个组。 CsWRKY基因分布在所有十个甜橙染色体上。柑橘WRKY基因表达的综合方法和综合分析揭示了组织内表达的可变概况和表明功能多样化的应激条件。因此,已经提出候选柑橘WRKY基因可能参与水果酸化,精油生物合成和非生物/生物胁迫耐受性。我们的结果为进一步改善WRKY基因克隆和功能分析提供了必要的先决条件,目的是改善柑橘类作物。

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