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MADS盒基因FveSEP3在森林草莓的花器官发生和果实发育中起重要作用。

The MADS-box gene FveSEP3 plays essential roles in flower organogenesis and fruit development in woodland strawberry.

作者信息

Pi Mengting, Hu Shaoqiang, Cheng Laichao, Zhong Ruhan, Cai Zhuoying, Liu Zhongchi, Yao Jia-Long, Kang Chunying

机构信息

Key Laboratory of Horticultural Plant Biology (Ministry of Education), Hubei Hongshan Laboratory, Huazhong Agricultural University, Wuhan, China.

Department of Cell Biology and Molecular Genetics, University of Maryland, College Park, MD, USA.

出版信息

Hortic Res. 2021 Dec 1;8(1):247. doi: 10.1038/s41438-021-00673-1.

Abstract

Flower and fruit development are two key steps for plant reproduction. The ABCE model for flower development has been well established in model plant species; however, the functions of ABCE genes in fruit crops are less understood. In this work, we identified an EMS mutant named R27 in woodland strawberry (Fragaria vesca), showing the conversion of petals, stamens, and carpels to sepaloid organs in a semidominant inheritance fashion. Mapping by sequencing revealed that the class E gene homolog FveSEP3 (FvH4_4g23530) possessed the causative mutation in R27 due to a G to E amino acid change in the conserved MADS domain. Additional fvesep3 mutants generated by CRISPR/Cas9 displayed similar phenotypes to fvesep3-R27. Overexpressing wild-type or mutated FveSEP3 in Arabidopsis suggested that the mutation in R27 might cause a dominant-negative effect. Further analyses indicated that FveSEP3 physically interacted with each of the ABCE proteins in strawberry. Moreover, both R27 and fvesep3 mutants exhibited parthenocarpic fruit growth and delayed fruit ripening. Transcriptome analysis revealed that both common and specific differentially expressed genes were identified in young fruit at 6-7 days post anthesis (DPA) of fvesep3 and pollinated wild type when compared to unpollinated wild type, especially those in the auxin pathway, a key hormone regulating fruit set in strawberry. Together, we provided compelling evidence that FveSEP3 plays predominant E functions compared to other E gene homologs in flower development and that FveSEP3 represses fruit growth in the absence of pollination and promotes fruit ripening in strawberry.

摘要

花和果实发育是植物繁殖的两个关键步骤。花发育的ABCE模型已在模式植物物种中得到充分确立;然而,ABCE基因在果树作物中的功能尚鲜为人知。在这项研究中,我们在森林草莓(Fragaria vesca)中鉴定出一个名为R27的甲基磺酸乙酯(EMS)突变体,其花瓣、雄蕊和心皮以半显性遗传方式转化为萼片状器官。测序定位显示,E类基因同源物FveSEP3(FvH4_4g23530)在R27中存在致病突变,这是由于保守MADS结构域中的一个氨基酸由甘氨酸(G)变为谷氨酸(E)所致。通过CRISPR/Cas9技术产生的其他fvesep3突变体表现出与fvesep3-R27相似的表型。在拟南芥中过表达野生型或突变型FveSEP3表明,R27中的突变可能导致显性负效应。进一步分析表明,FveSEP3在草莓中与ABCE蛋白中的每一个都存在物理相互作用。此外,R27和fvesep3突变体均表现出单性结实的果实生长和果实成熟延迟。转录组分析显示,与未授粉的野生型相比,在fvesep3和授粉野生型花后6 - 7天(DPA)的幼果中均鉴定出了共同和特异性的差异表达基因,尤其是生长素途径中的那些基因,生长素是调节草莓坐果的关键激素。总之,我们提供了有力证据,表明在花发育过程中,与其他E类基因同源物相比,FveSEP3发挥着主要的E功能,并且FveSEP3在未授粉时抑制草莓果实生长,而在授粉后促进果实成熟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b250/8632884/2c64481ec132/41438_2021_673_Fig1_HTML.jpg

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