Wang Lanfen, Zhu Jifeng, Li Xiaoming, Wang Shumin, Wu Jing
Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China.
Gene. 2018 Apr 20;651:152-160. doi: 10.1016/j.gene.2018.02.005. Epub 2018 Feb 6.
Mung bean and adzuki bean are warm-season legumes widely cultivated in China. However, bean production in major producing regions is limited by biotic and abiotic stress, such as drought and salt stress. Basic leucine zipper (bZIP) genes play key roles in responses to various biotic and abiotic stresses. However, only several bZIP genes involved in drought and salt stress in legumes, especially Vigna radiata and Vigna angularis, have been identified. In this study, we identified 54 and 50 bZIP proteins from whole-genome sequences of V. radiata and V. angularis, respectively. First, we comprehensively surveyed the characteristics of all bZIP genes, including their gene structure, chromosome distribution and motif composition. Phylogenetic trees showed that VrbZIP and VabZIP proteins were divided into ten clades comprising nine known and one unknown subgroup. The results of the nucleotide substitution rate of the orthologous gene pairs showed that bZIP proteins have undergone strong purifying selection: V. radiata and V. angularis diverged 1.25 million years ago (mya) to 9.20 mya (average of 4.95 mya). We also found that many cis-acting regulatory elements (CAREs) involved in abiotic stress and plant hormone responses were detected in the putative promoter regions of the bZIP genes. Finally, using the quantitative real-time PCR (qRT-PCR) method, we performed expression profiling of the bZIP genes in response to drought, salt and abscisic acid (ABA). We identified several bZIP genes that may be involved in drought and salt responses. Generally, our results provided useful and rich resources of VrbZIP and VabZIP genes for the functional characterization and understanding of bZIP transcription factors (TFs) in warm-season legumes. In addition, our results revealed important and interesting data - a subset of VrbZIP and VabZIP gene expression profiles in response to drought, salt and ABA stress. These results provide gene expression evidence for the selection of candidate genes under drought and salt stress for future study.
绿豆和赤小豆是在中国广泛种植的暖季豆类。然而,主要产区的豆类生产受到生物和非生物胁迫的限制,如干旱和盐胁迫。碱性亮氨酸拉链(bZIP)基因在应对各种生物和非生物胁迫中起关键作用。然而,在豆类中,尤其是绿豆和赤小豆中,仅鉴定出了几个参与干旱和盐胁迫的bZIP基因。在本研究中,我们分别从绿豆和赤小豆的全基因组序列中鉴定出了54个和50个bZIP蛋白。首先,我们全面研究了所有bZIP基因的特征,包括它们的基因结构、染色体分布和基序组成。系统发育树显示,VrbZIP和VabZIP蛋白被分为十个进化枝,包括九个已知亚组和一个未知亚组。直系同源基因对的核苷酸替换率结果表明,bZIP蛋白经历了强烈的纯化选择:绿豆和赤小豆在125万年前(mya)至920万年前(平均495万年前)发生了分化。我们还发现,在bZIP基因的推定启动子区域检测到许多参与非生物胁迫和植物激素反应的顺式作用调控元件(CAREs)。最后,我们使用定量实时PCR(qRT-PCR)方法,对bZIP基因在干旱、盐和脱落酸(ABA)处理下的表达谱进行了分析。我们鉴定出了几个可能参与干旱和盐反应的bZIP基因。总体而言,我们的结果为暖季豆类中bZIP转录因子(TFs)的功能表征和理解提供了有用且丰富的VrbZIP和VabZIP基因资源。此外,我们的结果揭示了重要且有趣的数据——VrbZIP和VabZIP基因在干旱、盐和ABA胁迫下的部分表达谱。这些结果为未来研究在干旱和盐胁迫下选择候选基因提供了基因表达证据。