Suppr超能文献

木薯中NAC转录因子家族的全基因组鉴定与表达分析

Genome-Wide Identification and Expression Analysis of the NAC Transcription Factor Family in Cassava.

作者信息

Hu Wei, Wei Yunxie, Xia Zhiqiang, Yan Yan, Hou Xiaowan, Zou Meiling, Lu Cheng, Wang Wenquan, Peng Ming

机构信息

Key Laboratory of Biology and Genetic Resources of Tropical Crops, Institute of Tropical Bioscience and Biotechnology, Chinese Academy of Tropical Agricultural Sciences, Xueyuan Road 4, Haikou, Hainan, 571101, People's Republic of China.

出版信息

PLoS One. 2015 Aug 28;10(8):e0136993. doi: 10.1371/journal.pone.0136993. eCollection 2015.

Abstract

NAC [no apical meristem (NAM), Arabidopsis transcription activation factor [ATAF1/2] and cup-shaped cotyledon (CUC2)] proteins is one of the largest groups of plant specific transcription factors and plays a crucial role in plant growth, development, and adaption to the environment. Currently, no information is known about the NAC family in cassava. In this study, 96 NAC genes (MeNACs) were identified from the cassava genome. Phylogenetic analysis of the NACs from cassava and Arabidopsis showed that MeNAC proteins can be clustered into 16 subgroups. Gene structure analysis found that the number of introns of MeNAC genes varied from 0 to 5, with the majority of MeNAC genes containing two introns, indicating a small gene structure diversity of cassava NAC genes. Conserved motif analysis revealed that all of the identified MeNACs had the conserved NAC domain and/or NAM domain. Global expression analysis suggested that MeNAC genes exhibited different expression profiles in different tissues between wild subspecies and cultivated varieties, indicating their involvement in the functional diversity of different accessions. Transcriptome analysis demonstrated that MeNACs had a widely transcriptional response to drought stress and that they had differential expression profiles in different accessions, implying their contribution to drought stress resistance in cassava. Finally, the expression of twelve MeNAC genes was analyzed under osmotic, salt, cold, ABA, and H2O2 treatments, indicating that cassava NACs may represent convergence points of different signaling pathways. Taken together, this work found some excellent tissue-specific and abiotic stress-responsive candidate MeNAC genes, which would provide a solid foundation for functional investigation of the NAC family, crop improvement and improved understanding of signal transduction in plants. These data bring new insight on the complexity of the transcriptional control of MeNAC genes and support the hypothesis that NACs play an important role in plant growth, development, and adaption of environment.

摘要

NAC(无顶端分生组织(NAM)、拟南芥转录激活因子[ATAF1/2]和杯状子叶(CUC2))蛋白是植物特异性转录因子中最大的家族之一,在植物生长、发育及环境适应性方面发挥着关键作用。目前,关于木薯中NAC家族尚无相关信息。在本研究中,从木薯基因组中鉴定出96个NAC基因(MeNACs)。对木薯和拟南芥的NAC进行系统发育分析表明,MeNAC蛋白可分为16个亚组。基因结构分析发现,MeNAC基因的内含子数量从0到5不等,大多数MeNAC基因含有两个内含子,这表明木薯NAC基因的基因结构多样性较小。保守基序分析显示,所有鉴定出的MeNACs均具有保守的NAC结构域和/或NAM结构域。全局表达分析表明,MeNAC基因在野生亚种和栽培品种的不同组织中表现出不同的表达谱,表明它们参与了不同种质的功能多样性。转录组分析表明,MeNACs对干旱胁迫具有广泛的转录响应,并且在不同种质中具有差异表达谱,这意味着它们对木薯的抗旱性有贡献。最后,分析了12个MeNAC基因在渗透、盐、冷、ABA和H2O2处理下的表达情况,表明木薯NACs可能代表不同信号通路的汇聚点。综上所述,本研究发现了一些优异的组织特异性和非生物胁迫响应候选MeNAC基因,这将为NAC家族的功能研究、作物改良以及深入理解植物信号转导提供坚实基础。这些数据为MeNAC基因转录调控的复杂性带来了新的见解,并支持了NACs在植物生长、发育和环境适应性中起重要作用的假说。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6038/4552662/9a81c30f1457/pone.0136993.g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验