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bZIP家族的全基因组分析揭示了它们在香蕉发育、成熟和非生物胁迫响应中的作用。

Genome-wide analyses of the bZIP family reveal their involvement in the development, ripening and abiotic stress response in banana.

作者信息

Hu Wei, Wang Lianzhe, Tie Weiwei, Yan Yan, Ding Zehong, Liu Juhua, Li Meiying, Peng Ming, 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, Hainan, 571101, China.

School of Life Science and Engineering, Henan University of Urban Construction, Pingdingshan, Henan, 467044, China.

出版信息

Sci Rep. 2016 Jul 22;6:30203. doi: 10.1038/srep30203.

Abstract

The leucine zipper (bZIP) transcription factors play important roles in multiple biological processes. However, less information is available regarding the bZIP family in the important fruit crop banana. In this study, 121 bZIP transcription factor genes were identified in the banana genome. Phylogenetic analysis showed that MabZIPs were classified into 11 subfamilies. The majority of MabZIP genes in the same subfamily shared similar gene structures and conserved motifs. The comprehensive transcriptome analysis of two banana genotypes revealed the differential expression patterns of MabZIP genes in different organs, in various stages of fruit development and ripening, and in responses to abiotic stresses, including drought, cold, and salt. Interaction networks and co-expression assays showed that group A MabZIP-mediated networks participated in various stress signaling, which was strongly activated in Musa ABB Pisang Awak. This study provided new insights into the complicated transcriptional control of MabZIP genes and provided robust tissue-specific, development-dependent, and abiotic stress-responsive candidate MabZIP genes for potential applications in the genetic improvement of banana cultivars.

摘要

亮氨酸拉链(bZIP)转录因子在多种生物学过程中发挥着重要作用。然而,关于重要水果作物香蕉中的bZIP家族,我们所知甚少。在本研究中,在香蕉基因组中鉴定出了121个bZIP转录因子基因。系统发育分析表明,MabZIPs被分为11个亚家族。同一亚家族中的大多数MabZIP基因具有相似的基因结构和保守基序。对两种香蕉基因型的综合转录组分析揭示了MabZIP基因在不同器官、果实发育和成熟的各个阶段以及对包括干旱、寒冷和盐胁迫在内的非生物胁迫响应中的差异表达模式。相互作用网络和共表达分析表明,A组MabZIP介导的网络参与了各种胁迫信号传导,在Musa ABB Pisang Awak中被强烈激活。本研究为MabZIP基因复杂的转录调控提供了新见解,并为香蕉品种遗传改良的潜在应用提供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MabZIP基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6d0/4957152/976c960a5456/srep30203-f1.jpg

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