Labortory of Walnut Research Center, College of Forestry, Northwest A & F University, Yangling, 712100, Shaanxi, China.
Key Laboratory of Economic Plant Resources Development and Utilization in Shaanxi Province, College of Forestry, Northwest A & F University, Yangling, 712100, Shaanxi, China.
BMC Genomics. 2022 Sep 8;23(1):640. doi: 10.1186/s12864-022-08856-3.
Walnut is an important economic tree species while confronting with global environmental stress, resulting in decline in quality and yield. Therefore, it is urgent to elucidate the molecular mechanism for the regulation of walnut response to adversity. The protein phosphatase 2C (PP2C) gene family participates in cellular processes in eukaryotes through reversible phosphorylation of proteins and signal transduction regulation. However, the stress response function of PP2C genes was far to be clarified. Therefore, to understand the stress response mechanism of walnut tree, in this study, a total of 41 PP2C genes with complete ORFs were identified from Juglans regia, whose basic bio-information and expression patterns in response to multiple stresses and ABA were confirmed. The results showed that the ORFs of JrPP2Cs were 495 ~ 3231 bp in length, the predicted JrPP2C proteins contained 164 to 1076 amino acids and the molecular weights were 18,581.96 ~ 118,853.34 Da, the pI was 4.55 ~ 9.58. These JrPP2C genes were unevenly distributed on 14 chromosomes, among which Chr11 and Chr13 contained the most genes. Phylogenetic analysis found that these JrPP2C proteins were classed into 9 subfamilies, among which group F covered most JrPP2Cs. The JrPP2Cs in the same subfamily exhibited similarities in the composition of conserved domains, amino acid sequences of motifs and exon/intron organization in DNA sequences. Each JrPP2C includes 4 ~ 10 motifs and each motif contained 15 ~ 37 amino acids. Among the motifs, motif1, motif2, motif3 and motif8 were most abundant. Most of the JrPP2C genes diversely response to osmotic, cadmium, and Colletotrichum gloeosporioide stress as well as ABA treatments, among which JrPP2C28, JrPP2C17, JrPP2C09, JrPP2C36 were more obvious and deserves further attention. All these results indicated that JrPP2C genes play potential vital roles in plant response to multiple stimulus, and are possibly involved in ABA-dependent signaling pathway.
核桃是一种重要的经济树种,而全球环境压力正导致其质量和产量下降。因此,阐明核桃对逆境的响应的分子机制迫在眉睫。蛋白磷酸酶 2C(PP2C)基因家族通过蛋白质的可逆磷酸化和信号转导调节参与真核生物的细胞过程。然而,PP2C 基因的应激反应功能还远未阐明。因此,为了了解核桃树的应激响应机制,本研究从核桃中鉴定了 41 个具有完整开放阅读框的 PP2C 基因,证实了其在多种胁迫和 ABA 下的基本生物信息和表达模式。结果表明,JrPP2C 的 ORFs 长度为 4953231bp,预测的 JrPP2C 蛋白含有 1641076 个氨基酸,分子量为 18581.96118853.34Da,等电点为 4.559.58。这些 JrPP2C 基因不均匀地分布在 14 条染色体上,其中 Chr11 和 Chr13 包含的基因最多。系统进化分析发现,这些 JrPP2C 蛋白分为 9 个亚家族,其中亚家族 F 包含最多的 JrPP2C。同一亚家族的 JrPP2C 在保守结构域组成、基序氨基酸序列和 DNA 序列中外显子/内含子组织方面具有相似性。每个 JrPP2C 包含 410 个基序,每个基序包含 1537 个氨基酸。在这些基序中,基序 1、基序 2、基序 3 和基序 8 最为丰富。大多数 JrPP2C 基因对渗透、镉和炭疽病菌胁迫以及 ABA 处理表现出不同的反应,其中 JrPP2C28、JrPP2C17、JrPP2C09、JrPP2C36 更为明显,值得进一步关注。所有这些结果表明,JrPP2C 基因在植物对多种刺激的响应中发挥着潜在的重要作用,并且可能参与 ABA 依赖性信号通路。