Chen Lingna, Zheng Xianggan, Guo Xiaojuan, Cui Yongzhong, Yang Hanqi
Research Institute of Resources Insects, Chinese Academy of Forestry, Bailongsi, Kunming, 650233, Panlong, China.
Mol Biol Rep. 2019 Apr;46(2):1625-1634. doi: 10.1007/s11033-019-04611-2. Epub 2019 Jan 28.
Auxin is an important hormone in many plant developmental processes. In this study, the auxin/indole acetic acid (Aux/IAA) gene family was comprehensively identified using Dendrocalamus sinicus transcriptome data. A total of 26 Aux/IAA genes (DsIAA1-DsIAA26) were mined using four conserved Aux/IAA family motifs (PF02309). They encoded hydrophilic proteins, including one or two nuclear localisation signals. The D. sinicus Aux/IAA proteins were classified into two groups, including seven sister-gene pairs based on their phylogenetic relationships. A phylogenetic tree generated by aligning 108 predicted protein sequences of 26 DsIAAs, 43 PhIAAs (Phyllostachys heterocycla), 29 AtIAAs (Arabidopsis), 31 OsIAAs (Oryza sativa) and 22 PtIAAs (Populus) revealed nine major groups. Among them, four groups, including 96 IAA proteins of all five species, suggested that the genes originated before divergence of monocots and dicots. The expression profiling in different tissues showed that most of the DsIAAs preferentially expressed in leaves and shoots, suggesting their important roles in the development of leaves and shoots in D. sinicus. Continuously high expression of DsIAA3, DsIAA4, DsIAA15, and DsIAA20 may be important for regulating shoot development in D. sinicus. These results provide useful information for further research into the function of Aux/IAA genes in woody sympodial bamboos.
生长素是许多植物发育过程中的一种重要激素。在本研究中,利用巨龙竹转录组数据对生长素/吲哚乙酸(Aux/IAA)基因家族进行了全面鉴定。使用四个保守的Aux/IAA家族基序(PF02309)挖掘出了总共26个Aux/IAA基因(DsIAA1-DsIAA26)。它们编码亲水性蛋白,包含一个或两个核定位信号。基于系统发育关系,巨龙竹Aux/IAA蛋白被分为两组,包括七对姐妹基因。通过对26个DsIAA、43个PhIAA(毛竹)、29个AtIAA(拟南芥)、31个OsIAA(水稻)和22个PtIAA(杨树)的108个预测蛋白序列进行比对生成的系统发育树揭示了九个主要类群。其中,包括所有五个物种的96个IAA蛋白的四个类群表明这些基因在单子叶植物和双子叶植物分化之前就已起源。不同组织中的表达谱分析表明,大多数DsIAA在叶和茎中优先表达,表明它们在巨龙竹的叶和茎发育中发挥重要作用。DsIAA3、DsIAA4、DsIAA15和DsIAA20的持续高表达可能对调控巨龙竹的茎发育很重要。这些结果为进一步研究Aux/IAA基因在木质合轴型竹子中的功能提供了有用信息。