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木本植物中NAC转录因子基因家族的全基因组分析揭示了差异表达模式和冷胁迫响应

Genome-Wide Analysis of the NAC Transcription Factor Gene Family Reveals Differential Expression Patterns and Cold-Stress Responses in the Woody Plant .

作者信息

Zhuo Xiaokang, Zheng Tangchun, Zhang Zhiyong, Zhang Yichi, Jiang Liangbao, Ahmad Sagheer, Sun Lidan, Wang Jia, Cheng Tangren, Zhang Qixiang

机构信息

Beijing Key Laboratory of Ornamental Plants Germplasm Innovation & Molecular Breeding, National Engineering Research Center for Floriculture, Beijing Laboratory of Urban and Rural Ecological Environment, Engineering Research Center of Landscape Environment of Ministry of Education, Key Laboratory of Genetics and Breeding in Forest Trees and Ornamental Plants of Ministry of Education, School of Landscape Architecture, Beijing Forestry University, Beijing 100083, China.

Beijing Advanced Innovation Center for Tree Breeding by Molecular Design, Beijing Forestry University, Beijing 100083, China.

出版信息

Genes (Basel). 2018 Oct 12;9(10):494. doi: 10.3390/genes9100494.

Abstract

NAC transcription factors (TFs) participate in multiple biological processes, including biotic and abiotic stress responses, signal transduction and development. Cold stress can adversely impact plant growth and development, thereby limiting agricultural productivity. , an excellent horticultural crop, is widely cultivated in Asian countries. Its flower can tolerate freezing-stress in the early spring. To investigate the putative NAC genes responsible for cold-stress, we identified and analyzed 113 high-confidence genes and characterized them by bioinformatics tools and expression profiles. These s were clustered into 14 sub-families and distributed on eight chromosomes and scaffolds, with the highest number located on chromosome 3. Duplicated events resulted in a large gene family; 15 and 8 pairs of s were the result of tandem and segmental duplicates, respectively. Moreover, three membrane-bound proteins (//) and three miRNA-targeted genes (//) were identified. Most genes presented tissue-specific and time-specific expression patterns. Sixteen s (///////////) exhibited down-regulation during flower bud opening and are, therefore, putative candidates for dormancy and cold-tolerance. Seventeen genes (////////////////) were highly expressed in stem during winter and are putative candidates for freezing resistance. The cold-stress response pattern of 15 putative s was observed under 4 °C at different treatment times. The expression of 10 genes (////////) was upregulated, while 5 genes (////) were significantly inhibited. The putative candidates, thus identified, have the potential for breeding the cold-tolerant horticultural plants. This study increases our understanding of functions of the gene family in cold tolerance, thereby potentially intensifying the molecular breeding programs of woody plants.

摘要

NAC转录因子参与多种生物学过程,包括生物和非生物胁迫反应、信号转导及发育。低温胁迫会对植物生长发育产生不利影响,进而限制农业生产力。 是一种优良的园艺作物,在亚洲国家广泛种植。其花朵能耐受早春的冻害。为了研究与低温胁迫相关的假定NAC基因,我们鉴定并分析了113个高可信度的 基因,并通过生物信息学工具和表达谱对其进行了表征。这些 基因被聚类为14个亚家族,分布在8条染色体和支架上,其中数量最多的位于3号染色体上。基因复制事件导致了一个庞大的基因家族;分别有15对和8对 基因是串联重复和片段重复的结果。此外,还鉴定出了3个膜结合蛋白(//)和3个miRNA靶向基因(//)。大多数 基因呈现出组织特异性和时间特异性的表达模式。16个 基因(///////////)在花芽开放期间表现出下调,因此是休眠和耐寒性的假定候选基因。17个基因(////////////////)在冬季茎中高表达,是抗冻性的假定候选基因。在4℃下不同处理时间观察了15个假定 的低温胁迫反应模式。10个基因(////////)的表达上调,而5个基因(////)受到显著抑制。由此鉴定出的假定候选基因具有培育耐寒园艺植物的潜力。这项研究增进了我们对 基因家族在耐寒性方面功能的理解,从而有可能加强木本植物的分子育种计划。

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