Genome-wide identification of the C2H2-Zinc finger gene family and functional validation of CsZFP7 in citrus nucellar embryogenesis.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
ACS Applied Bio Materials Pub Date : 2023-12-01 Epub Date: 2023-05-29 DOI:10.1007/s00497-023-00470-x
Hui-Hui Jia, Yuan-Tao Xu, Zhu-Jun Yin, Mei Qing, Kai-Dong Xie, Wen-Wu Guo, Xiao-Meng Wu
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引用次数: 1

Abstract

Key message: Genome-wide identification of C2H2-ZF gene family in the poly- and mono-embryonic citrus species and validation of the positive role of CsZFP7 in sporophytic apomixis. The C2H2 zinc finger (C2H2-ZF) gene family is involved in plant vegetative and reproductive development. Although a large number of C2H2 zinc-finger proteins (C2H2-ZFPs) have been well characterized in some horticultural plants, little is known about the C2H2-ZFPs and their function in citrus. In this work, we performed a genome-wide sequence analysis and identified 97 and 101 putative C2H2-ZF gene family members in the genomes of sweet orange (C. sinensis, poly-embryonic) and pummelo (C. grandis, mono-embryonic), respectively. Phylogenetic analysis categorized citrus C2H2-ZF gene family into four clades, and their possible functions were inferred. According to the numerous regulatory elements on promoter, citrus C2H2-ZFPs can be divided into five different regulatory function types that indicate functional differentiation. RNA-seq data revealed 20 differentially expressed C2H2-ZF genes between poly-embryonic and mono-embryonic ovules at two stages of citrus nucellar embryogenesis, among them CsZFP52 specifically expressed in mono-embryonic pummelo ovules, while CsZFP7, 37, 44, 45, 67 and 68 specifically expressed in poly-embryonic sweet orange ovules. RT-qPCR further validated that CsZFP7 specifically expressed at higher levels in poly-embryonic ovules, and down-regulation of CsZFP7 in the poly-embryonic mini citrus (Fortunella hindsii) increased rate of mono-embryonic seeds compared with the wild type, indicating the regulatory potential of CsZFP7 in nucellar embryogenesis of citrus. This work provided a comprehensive analysis of C2H2-ZF gene family in citrus, including genome organization and gene structure, phylogenetic relationships, gene duplications, possible cis-elements on promoter regions and expression profiles, especially in the poly- and mono-embryogenic ovules, and suggested that CsZFP7 is involved in nucellar embryogenesis.

Abstract Image

C2H2锌指基因家族的全基因组鉴定和CsZFP7在柑橘珠心胚胎发生中的功能验证。
关键信息:在多胚和单胚柑橘中鉴定C2H2-ZF基因家族,并验证CsZFP7在孢子体无融合生殖中的积极作用。C2H2锌指(C2H2-ZF)基因家族参与植物的营养和生殖发育。尽管大量的C2H2锌指蛋白(C2H2ZFPs)在一些园艺植物中已经得到了很好的表征,但对C2H2ZFP及其在柑橘中的功能知之甚少。在这项工作中,我们进行了全基因组序列分析,分别在甜橙(C.sinensis,多胚)和柚子(C.grandis,单胚)的基因组中鉴定了97个和101个推定的C2H2-ZF基因家族成员。系统发育分析将柑橘C2H2-ZF基因家族划分为四个分支,并推测其可能的功能。根据启动子上的众多调控元件,柑橘C2H2ZFPs可分为五种不同的调控功能类型,表明其功能分化。RNA-seq数据显示,在柑橘珠心胚胎发生的两个阶段,多胚和单胚胚珠之间有20个差异表达的C2H2-ZF基因,其中CsZFP52在单胚柚子胚珠中特异性表达,而CsZFP7、37、44、45、67和68在多胚甜橙胚珠中特异地表达。RT-qPCR进一步验证了CsZFP7在多胚胚珠中以更高的水平特异性表达,并且与野生型相比,CsZFP7在多胚迷你柑橘(Fortunella hindsii)中的下调增加了单胚种子的速率,表明CsZFP7在柑橘珠心胚胎发生中的调节潜力。本工作对柑橘C2H2-ZF基因家族进行了全面的分析,包括基因组组织和基因结构、系统发育关系、基因重复、启动子区可能的顺式元件和表达谱,特别是在多胚性和单胚性胚珠中,并表明CsZFP7参与珠心胚胎发生。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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