Research Center of Chinese Jujube, Hebei Agricultural University, Baoding, China.
College of Life Science, Hebei Agricultural University, Baoding, China.
BMC Genomics. 2017 Nov 9;18(1):855. doi: 10.1186/s12864-017-4259-4.
Chinese jujube (Ziziphus jujuba Mill.) is one of the most important members in the Rhamnaceae family. The whole genome sequence and more than 30,000 proteins of Chinese jujube have been obtained in 2014. Mitogen-activated protein kinase cascades are universal signal transduction modules in plants, which is rapidly activated under various biotic and abiotic stresses. To date, there has been no comprehensive analysis of the MAPK and MAPKK gene family in Chinese jujube at the whole genome level.
By performing a series of bioinformatics analysis, ten MAPK and five MAPKK genes were identified from the genome database of Chinese jujube, and then compared with the homologous genes from Arabidopsis. Phylogenetic analysis showed that ZjMAPKs was classified into four known groups, including A, B, C and D. ZjMAPKs contains five members of the TEY phosphorylation site and five members with the TDY motif. The ZjMAPKK family was subsequently divided into three groups, A, B and D. The gene structure, conserved motifs, functional annotation and chromosome distribution of ZjMAPKs and ZjMAPKKs were also predicted. ZjMAPKs and ZjMAPKKs were distributed on nine pseudo-chromosomes of Chinese jujube. Subsequently, expression analysis of ZjMAPK and ZjMAPKK genes using reverse transcription PCR and quantitative real-time PCR was carried out. The majority of ZjMAPK and ZjMAPKK genes were expressed in all tested organs/tissues with considerable differences in transcript levels indicating that they might be constitutively expressed. Moreover, ZjMKK5 was specific expressed in early development stage of jujube flower bud, indicating it plays some roles in reproductive organs development. The transcript expression of most ZjMAPK and ZjMAPKK genes was down-regulated in response to plant growth regulators, darkness treatment and phytoplasma infection.
We identified ten ZjMAPK and five ZjMAPKK genes from the genome database of Chinese jujube, the research results shown that ZjMPKs and ZjMKKs have the different expression patterns, indicating that they might play different roles in response to various treatments. The results provide valuable information for the further elucidation of physiological functions and biological roles of jujube MAPKs and MAPKKs.
枣(Ziziphus jujuba Mill.)是鼠李科中最重要的成员之一。2014 年,已获得枣的全基因组序列和 30000 多个蛋白质。植物中丝裂原活化蛋白激酶级联反应是普遍的信号转导模块,在各种生物和非生物胁迫下迅速激活。迄今为止,还没有对枣全基因组水平的 MAPK 和 MAPKK 基因家族进行全面分析。
通过一系列生物信息学分析,从枣基因组数据库中鉴定出十个 MAPK 和五个 MAPKK 基因,并与拟南芥的同源基因进行比较。系统发育分析表明,ZjMAPKs 分为四个已知的组,包括 A、B、C 和 D。ZjMAPKs 含有 5 个 TEY 磷酸化位点的成员和 5 个含有 TDY 基序的成员。ZjMAPKK 家族随后分为 A、B 和 D 三组。还预测了 ZjMAPKs 和 ZjMAPKKs 的基因结构、保守基序、功能注释和染色体分布。ZjMAPKs 和 ZjMAPKKs 分布在枣的九个假染色体上。随后,通过反转录 PCR 和定量实时 PCR 对 ZjMAPK 和 ZjMAPKK 基因的表达进行了分析。大多数 ZjMAPK 和 ZjMAPKK 基因在所有测试的器官/组织中表达,转录水平差异较大,表明它们可能是组成型表达的。此外,ZjMKK5 在枣芽早期发育阶段特异性表达,表明其在生殖器官发育中起一定作用。大多数 ZjMAPK 和 ZjMAPKK 基因的转录表达在植物生长调节剂、黑暗处理和植原体感染的响应中受到下调。
我们从枣的基因组数据库中鉴定出十个 ZjMAPK 和五个 ZjMAPKK 基因,研究结果表明 ZjMPKs 和 ZjMKKs 具有不同的表达模式,表明它们在响应各种处理时可能发挥不同的作用。研究结果为进一步阐明枣 MAPKs 和 MAPKKs 的生理功能和生物学作用提供了有价值的信息。