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通过对无油樟MADS盒转录因子进行全基因组调查和表达分析洞察其花发育遗传学

Insights into genetics of floral development in Amborella trichopoda Baill. through genome-wide survey and expression analysis of MADS-Box transcription factors.

作者信息

Parajuli Sanam, Adhikari Bibek, Nepal Madhav P

机构信息

Department of Biology and Microbiology, South Dakota State University, Brookings, SD, 57007, USA.

出版信息

Sci Rep. 2025 Feb 12;15(1):5297. doi: 10.1038/s41598-025-88880-x.

Abstract

The ABCDE model is a well-known general model of floral development in angiosperms with perfect flowers, with some modifications in different plant taxa. The Fading Borders Model was proposed to better explain floral patterning in basal angiosperms that typically possess spirally arranged floral organs. The MADS-Box gene family is central to these models and has greatly expanded in higher plants which is associated with increasing complexity in floral structures. Amborella trichopoda is a basal angiosperm with simpler floral features, and the genetic and functional roles of MADS-Box genes in floral development remain poorly understood in the species. The major objectives of this study were to perform a genome-wide identification and characterization of MADS-Box genes in A. trichopoda, and to analyze their expression in floral buds and mature flowers. We identified 42 members of the MADS-Box gene family in A. trichopoda with a Hidden Markov Model (HMM)-based genome-wide survey. Among them, 27 were classified into Type II or MIKC group. Based on our classification and orthology analysis, a direct ortholog APETALA1 (AP1), an A-class floral MADS-Box gene was absent in A. trichopoda. Gene expression analysis indicated that MIKC-type genes were differentially expressed between male and female flowers with B-function orthologs: APETALA3 (AP3) and PISTILLATA (PI) in the species having differential expression between the two sexes, and E-function orthologs being upregulated in female flowers. Based on these findings, we propose a modification in the Fading Borders Model in A. trichopoda with a modified A-function, B- and E-function orthologs' expression being sex-specific, and C- and D-function genes having roles similar to that in the classical ABCDE model. These results provide new insights into the genetics underlying floral patterning in the basal angiosperm.

摘要

ABCDE模型是被子植物中具有完全花的花发育的著名通用模型,在不同植物类群中存在一些修改。为了更好地解释基部被子植物中通常具有螺旋状排列花器官的花形态发生,提出了渐消边界模型。MADS盒基因家族是这些模型的核心,并且在高等植物中大幅扩展,这与花结构的复杂性增加有关。无油樟是一种具有较简单花特征的基部被子植物,MADS盒基因在该物种花发育中的遗传和功能作用仍知之甚少。本研究的主要目的是对无油樟中的MADS盒基因进行全基因组鉴定和表征,并分析它们在花芽和成熟花中的表达。我们通过基于隐马尔可夫模型(HMM)的全基因组调查,在无油樟中鉴定出42个MADS盒基因家族成员。其中,27个被归类为II型或MIKC组。基于我们的分类和直系同源分析,无油樟中不存在A类花MADS盒基因APETALA1(AP1)的直系同源基因。基因表达分析表明,MIKC型基因在雄花和雌花之间差异表达,具有B功能直系同源基因:在该物种中,APETALA3(AP3)和PISTILLATA(PI)在两性之间差异表达,E功能直系同源基因在雌花中上调。基于这些发现,我们提出对无油樟的渐消边界模型进行修改,其中修改后的A功能、B和E功能直系同源基因的表达具有性别特异性,C和D功能基因的作用与经典ABCDE模型中的相似。这些结果为基部被子植物花形态发生的遗传学提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5626/11822109/5f23898872bc/41598_2025_88880_Fig1_HTML.jpg

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