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香蕉中的生长素响应因子基因家族:发育、成熟及非生物胁迫过程中的全基因组鉴定与表达分析

The auxin response factor gene family in banana: genome-wide identification and expression analyses during development, ripening, and abiotic stress.

作者信息

Hu Wei, Zuo Jiao, Hou Xiaowan, Yan Yan, Wei Yunxie, Liu Juhua, Li Meiying, Xu Biyu, Jin Zhiqiang

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 Haikou, China.

Key Laboratory of Biology and Genetic Resources of Tropical Crops, Institute of Tropical Bioscience and Biotechnology, Chinese Academy of Tropical Agricultural Sciences Haikou, China ; Key Laboratory of Genetic Improvement of Bananas, Haikou Experimental Station, Chinese Academy of Tropical Agricultural Sciences Haikou, China.

出版信息

Front Plant Sci. 2015 Sep 15;6:742. doi: 10.3389/fpls.2015.00742. eCollection 2015.

Abstract

Auxin signaling regulates various auxin-responsive genes via two types of transcriptional regulators, Auxin Response Factors (ARF) and Aux/IAA. ARF transcription factors act as critical components of auxin signaling that play important roles in modulating various biological processes. However, limited information about this gene family in fruit crops is currently available. Herein, 47 ARF genes were identified in banana based on its genome sequence. Phylogenetic analysis of the ARFs from banana, rice, and Arabidopsis suggested that the ARFs could be divided into four subgroups, among which most ARFs from the banana showed a closer relationship with those from rice than those from Arabidopsis. Conserved motif analysis showed that all identified MaARFs had typical DNA-binding and ARF domains, but 12 members lacked the dimerization domain. Gene structure analysis showed that the number of exons in MaARF genes ranged from 5 to 21, suggesting large variation amongst banana ARF genes. The comprehensive expression profiles of MaARF genes yielded useful information about their involvement in diverse tissues, different stages of fruit development and ripening, and responses to abiotic stresses in different varieties. Interaction networks and co-expression assays indicated the strong transcriptional response of banana ARFs and ARF-mediated networks in early fruit development for different varieties. Our systematic analysis of MaARFs revealed robust tissue-specific, development-dependent, and abiotic stress-responsive candidate MaARF genes for further functional assays in planta. These findings could lead to potential applications in the genetic improvement of banana cultivars, and yield new insights into the complexity of the control of MaARF gene expression at the transcriptional level. Finally, they support the hypothesis that ARFs are a crucial component of the auxin signaling pathway, which regulates a wide range of physiological processes.

摘要

生长素信号传导通过两种转录调节因子,即生长素反应因子(ARF)和Aux/IAA,调控各种生长素响应基因。ARF转录因子是生长素信号传导的关键组成部分,在调节各种生物学过程中发挥重要作用。然而,目前关于水果作物中该基因家族的信息有限。在此,基于香蕉的基因组序列鉴定出47个ARF基因。对香蕉、水稻和拟南芥的ARF进行系统发育分析表明,ARF可分为四个亚组,其中香蕉的大多数ARF与水稻的ARF关系比与拟南芥的更近。保守基序分析表明,所有鉴定出的MaARF都具有典型的DNA结合和ARF结构域,但有12个成员缺乏二聚化结构域。基因结构分析表明,MaARF基因的外显子数量在5到21之间,这表明香蕉ARF基因之间存在很大差异。MaARF基因的综合表达谱提供了有关它们在不同组织、果实发育和成熟的不同阶段以及不同品种对非生物胁迫响应中的作用的有用信息。相互作用网络和共表达分析表明,不同品种香蕉的ARF在果实发育早期具有强烈的转录反应以及ARF介导的网络。我们对MaARF的系统分析揭示了强大的组织特异性、发育依赖性和非生物胁迫响应性候选MaARF基因,可用于在植物中进行进一步的功能分析。这些发现可能会在香蕉品种的遗传改良中得到潜在应用,并为转录水平上MaARF基因表达调控的复杂性提供新的见解。最后,它们支持了ARF是生长素信号通路的关键组成部分这一假设,该信号通路调节广泛的生理过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b69/4569978/8eb0c24dac0a/fpls-06-00742-g0003.jpg

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