School of Life Sciences, Anhui Agricultural University, Hefei, 230036, China.
Department of Software Engineering, University of Gujrat, Lahore, 54000, Pakistan.
BMC Plant Biol. 2021 Sep 9;21(1):413. doi: 10.1186/s12870-021-03191-3.
In plants, basic leucine zipper transcription factors (TFs) play important roles in multiple biological processes such as anthesis, fruit growth & development and stress responses. However, systematic investigation and characterization of bZIP-TFs remain unclear in Chinese white pear. Chinese white pear is a fruit crop that has important nutritional and medicinal values.
In this study, 62 bZIP genes were comprehensively identified from Chinese Pear, and 54 genes were distributed among 17 chromosomes. Frequent whole-genome duplication (WGD) and dispersed duplication (DSD) were the major driving forces underlying the bZIP gene family in Chinese white pear. bZIP-TFs are classified into 13 subfamilies according to the phylogenetic tree. Subsequently, purifying selection plays an important role in the evolution process of PbbZIPs. Synteny analysis of bZIP genes revealed that 196 orthologous gene pairs were identified between Pyrus bretschneideri, Fragaria vesca, Prunus mume, and Prunus persica. Moreover, cis-elements that respond to various stresses and hormones were found on the promoter regions of PbbZIP, which were induced by stimuli. Gene structure (intron/exon) and different compositions of motifs revealed that functional divergence among subfamilies. Expression pattern of PbbZIP genes differential expressed under hormonal treatment abscisic acid, salicylic acid, and methyl jasmonate in pear fruits by real-time qRT-PCR.
Collectively, a systematic analysis of gene structure, motif composition, subcellular localization, synteny analysis, and calculation of synonymous (Ks) and non-synonymous (Ka) was performed in Chinese white pear. Sixty-two bZIP-TFs in Chinese pear were identified, and their expression profiles were comprehensively analyzed under ABA, SA, and MeJa hormones, which respond to multiple abiotic stresses and fruit growth and development. PbbZIP gene occurred through Whole-genome duplication and dispersed duplication events. These results provide a basic framework for further elucidating the biological function characterizations under multiple developmental stages and abiotic stress responses.
在植物中,碱性亮氨酸拉链转录因子(TFs)在开花、果实生长和发育以及应激反应等多种生物学过程中发挥着重要作用。然而,系统的研究和鉴定 bZIP-TFs 在我国白梨中仍然不清楚。我国白梨是一种具有重要营养价值和药用价值的水果作物。
在这项研究中,我们从我国梨中全面鉴定了 62 个 bZIP 基因,其中 54 个基因分布在 17 条染色体上。全基因组复制(WGD)和分散复制(DSD)是我国白梨 bZIP 基因家族的主要驱动力。根据系统发育树,bZIP-TFs 分为 13 个亚家族。随后,净化选择在 PbbZIP 的进化过程中起着重要作用。bZIP 基因的共线性分析表明,在 Pyrus bretschneideri、 Fragaria vesca、Prunus mume 和 Prunus persica 之间鉴定出了 196 对直系同源基因对。此外,在 PbbZIP 的启动子区域发现了响应各种胁迫和激素的顺式元件,这些元件在受到刺激后被诱导。基因结构(内含子/外显子)和不同基序的组成揭示了亚家族之间的功能分化。通过实时 qRT-PCR 分析了 PbbZIP 基因在梨果实中激素处理脱落酸、水杨酸和茉莉酸下的差异表达。
总的来说,我们对我国白梨中的基因结构、基序组成、亚细胞定位、共线性分析以及同义(Ks)和非同义(Ka)的计算进行了系统分析。在我国白梨中鉴定了 62 个 bZIP-TFs,并对其在 ABA、SA 和 MeJa 激素下的表达谱进行了全面分析,这些激素响应多种非生物胁迫和果实生长发育。PbbZIP 基因是通过全基因组复制和分散复制事件产生的。这些结果为进一步阐明在多个发育阶段和非生物胁迫响应下的生物学功能特征提供了一个基本框架。