Key Laboratory of Ministry of Education for Conservation and Utilization of Special Biological Resources in Western China, Ningxia University, Yinchuan, Ningxia, 750021, China.
College of Life Science, Ningxia University, Yinchuan, Ningxia, 750021, China.
Sci Rep. 2020 Jun 24;10(1):10242. doi: 10.1038/s41598-020-66860-7.
Aux/IAA genes are early auxin-responsive genes and essential for auxin signaling transduction. There is little information about Aux/IAAs in the agriculturally important cereal, barley. Using in silico method, we identified and subsequently characterized 36 Aux/IAAs from the barley genome. Based on their genomic sequences and the phylogenic relationship with Arabidopsis and rice Aux/IAA, the 36 HvIAAs were categorized into two major groups and 14 subgroups. The indication of the presence or absence of these domains for the biological functions and acting mechanisms was discussed. The cis-element distributions in HvIAA promoters suggests that the HvIAAs expressions may not only regulated by auxin (the presence of AuxREs and TGA-element) but also by other hormones and developmental and environmental cues. We then studied the HvIAAs expression in response to NAA (1-Naphthaleneacetic acid) using quantitative real-time PCR (qRT-PCR). Like the promoter analysis, only 14 HvIAAs were upregulated by NAA over two-fold at 4 h. HvIAAs were clustered into three groups based on the spatiotemporal expression data. We confirmed by qRT-PCR that most HvIAAs, especially HvIAA3, HvIAA7, HvIAA8, HvIAA18, HvIAA24 and HvIAA34, are expressed in the developing barley spike compared within seedling, suggesting their roles in regulating spike development. Taken together, our data provide a foundation for further revealing the biological function of these HvIAAs.
Aux/IAA 基因是早期生长素响应基因,对于生长素信号转导至关重要。在农业上重要的谷类作物大麦中,关于 Aux/IAAs 的信息很少。我们使用计算机方法从大麦基因组中鉴定并随后表征了 36 个 Aux/IAAs。基于它们的基因组序列和与拟南芥和水稻 Aux/IAA 的系统发育关系,将 36 个 HvIAAs 分为两个主要组和 14 个亚组。讨论了这些结构域对于生物学功能和作用机制的存在或不存在的指示。HvIAA 启动子中的顺式元件分布表明,HvIAAs 的表达可能不仅受生长素(AuxREs 和 TGA 元件的存在)调节,还受其他激素以及发育和环境线索的调节。然后,我们使用定量实时 PCR(qRT-PCR)研究了 NAA(1-萘乙酸)对 HvIAAs 表达的影响。与启动子分析一样,仅在 4 小时时,有 14 个 HvIAAs 被 NAA 上调了两倍以上。根据时空表达数据,将 HvIAAs 聚类为三组。通过 qRT-PCR 证实,大多数 HvIAAs,特别是 HvIAA3、HvIAA7、HvIAA8、HvIAA18、HvIAA24 和 HvIAA34,在发育中的大麦穗中表达,而在幼苗中不表达,表明它们在调节穗发育中的作用。总之,我们的数据为进一步揭示这些 HvIAAs 的生物学功能提供了基础。