Ma Jikai, Wei Lingmin, Li Jiayu, Li Huogen
College of Forestry, Nanjing Forestry University, Nanjing 210037, China.
Co-Innovation Center for Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing 210037, China.
Genes (Basel). 2018 Nov 27;9(12):577. doi: 10.3390/genes9120577.
The leaf, a photosynthetic organ that plays an indispensable role in plant development and growth, has a certain ability to adapt to the environment and exhibits tremendous diversity among angiosperms. , an ancestral angiosperm species, is very popular in landscaping. The leaf of this species has two lobes and resembles a Qing Dynasty Chinese robe; thus, leaf shape is the most valuable ornamental trait of the tree. In this work, to determine the candidate genes associated with leaf development in , scanning electron microscopy (SEM) was employed to distinguish the developmental stages of tender leaves. Four stages were clearly separated, and transcriptome sequencing was performed for two special leaf stages. Altogether, there were 48.23 G clean reads in the libraries of the two leaf developmental stages, and 48,107 assembled unigenes were annotated with five databases. Among four libraries, 3118 differentially expressed genes (DEGs) were enriched in expression profiles. We selected ten DEGs associated with leaf development and validated their expression patterns via quantitative real-time PCR (qRT-PCR) assays. Most validation results were closely correlated with the RNA-sequencing data. Taken together, we examined the dynamic process of leaf development and indicated that several transcription factors and phytohormone metabolism genes may participate in leaf shape development. The transcriptome data analysis presented in this work aims to provide basic insights into the mechanisms mediating leaf development, and the results serve as a reference for the genetic breeding of ornamental traits in .
叶片作为一种在植物发育和生长中发挥不可或缺作用的光合器官,具有一定的环境适应能力,并且在被子植物中呈现出极大的多样性。[某祖先被子植物物种名称]在园林景观中非常受欢迎。该物种的叶片有两个裂片,类似清朝的中式长袍;因此,叶形是这种树最具价值的观赏性状。在这项研究中,为了确定与[物种名称]叶片发育相关的候选基因,采用扫描电子显微镜(SEM)来区分嫩叶的发育阶段。四个阶段被清晰地分开,并对两个特殊的叶片阶段进行了转录组测序。在这两个叶片发育阶段的文库中,总共获得了48.23 G的clean reads,并且有48,107个组装的单基因通过五个数据库进行了注释。在四个文库中,3118个差异表达基因(DEGs)在表达谱中得到富集。我们选择了十个与叶片发育相关的DEGs,并通过定量实时PCR(qRT-PCR)分析验证了它们的表达模式。大多数验证结果与RNA测序数据密切相关。综上所述,我们研究了叶片发育的动态过程,并表明一些转录因子和植物激素代谢基因可能参与叶形发育。这项工作中呈现的转录组数据分析旨在为介导叶片发育的机制提供基本见解,其结果可为[物种名称]观赏性状的遗传育种提供参考。