Li Yongqiang, An Shuang, Cheng Qiangqiang, Zong Yu, Chen Wenrong, Guo Weidong, Zhang Lu
Key Laboratory of Silviculture, Co-Innovation Center of Jiangxi Typical Trees Cultivation and Utilization, College of Forestry, Jiangxi Agricultural University, Nanchang, China.
Zhejiang Provincial Key Laboratory of Biotechnology on Specialty Economic Plants, College of Chemistry and Life Sciences, Zhejiang Normal University, Jinhua, China.
Front Plant Sci. 2021 Jul 9;12:697609. doi: 10.3389/fpls.2021.697609. eCollection 2021.
Plant-specific TEOSINTE BRANCHED 1, CYCLOIDEA, PROLIFERATING CELL FACTORS (TCP) transcription factors have versatile functions in plant growth, development and response to environmental stress. Despite blueberry's value as an important fruit crop, the TCP gene family has not been systematically studied in this plant. The current study identified blueberry TCP genes () using genomic data from the tetraploid blueberry variety 'Draper'; a total of 62 genes were obtained. Using multiple sequence alignment, conserved motif, and gene structure analyses, family members were divided into two subfamilies, of which class II was further divided into two subclasses, CIN and TB1. Synteny analysis showed that genome-wide or segment-based replication played an important role in the expansion of the blueberry TCP gene family. The expression patterns of genes during fruit development, flower bud dormancy release, hormone treatment, and tissue-specific expression were analyzed using RNA-seq and qRT-PCR. The results showed that the TB1 subclass members exhibited a certain level of expression in the shoot, leaf, and bud; these genes were not expressed during fruit development, but transcript levels decreased uniformly during the release of flower bud dormancy by low-temperature accumulation. The further transgenic experiments showed the overexpression of in significantly decreased the seed germination rate in contrast to the wild type. The bud dormancy phenomena as late-flowering, fewer rosettes and main branches were also observed in transgenic plants. Overall, this study provides the first insight into the evolution, expression, and function of genes, including the discovery that negatively regulated bud dormancy release in blueberry. The results will deepen our understanding of the function of in plant growth and development.
植物特有的玉米分枝1、Cycloidea、增殖细胞因子(TCP)转录因子在植物生长、发育及对环境胁迫的响应中具有多种功能。尽管蓝莓作为一种重要的水果作物具有很高的价值,但TCP基因家族在这种植物中尚未得到系统研究。本研究利用四倍体蓝莓品种‘德雷珀’的基因组数据鉴定了蓝莓TCP基因();共获得62个基因。通过多序列比对、保守基序和基因结构分析,将家族成员分为两个亚家族,其中II类进一步分为两个亚类,即CIN和TB1。共线性分析表明,全基因组或基于片段的复制在蓝莓TCP基因家族的扩展中起重要作用。利用RNA测序和定量逆转录聚合酶链反应分析了基因在果实发育、花芽休眠解除、激素处理及组织特异性表达过程中的表达模式。结果表明,TB1亚类成员在茎、叶和芽中表现出一定水平的表达;这些基因在果实发育过程中不表达,但在低温积累解除花芽休眠过程中,转录水平均匀下降。进一步的转基因实验表明,与野生型相比,在中过表达显著降低了种子萌发率。在转基因植物中还观察到了晚花、莲座叶和主枝较少等芽休眠现象。总体而言,本研究首次深入了解了基因的进化、表达和功能,包括发现其对蓝莓芽休眠解除具有负调控作用。这些结果将加深我们对其在植物生长发育中功能的理解。