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TRIMETHYLGUANOSINE SYNTHASE1 突变使拟南芥的雌性生殖细胞发育去分化。

TRIMETHYLGUANOSINE SYNTHASE1 mutations decanalize female germline development in Arabidopsis.

机构信息

Instituto de Investigaciones en Ciencias Agrarias de Rosario, CONICET-Universidad Nacional de Rosario, S2125ZAA, Zavalla, Argentina.

DIADE, Univ Montpellier, IRD, CIRAD, 34394, Montpellier, France.

出版信息

New Phytol. 2023 Oct;240(2):597-612. doi: 10.1111/nph.19179. Epub 2023 Aug 7.

DOI:10.1111/nph.19179
PMID:37548040
Abstract

Here, we report the characterization of a plant RNA methyltransferase, orthologous to yeast trimethylguanosine synthase1 (Tgs1p) and whose downregulation was associated with apomixis in Paspalum grasses. Using phylogenetic analyses and yeast complementation, we determined that land plant genomes all encode a conserved, specific TGS1 protein. Next, we studied the role of TGS1 in female reproduction using reporter lines and loss-of-function mutants in Arabidopsis thaliana. pAtTGS1:AtTGS1 reporters showed a dynamic expression pattern. They were highly active in the placenta and ovule primordia at emergence but, subsequently, showed weak signals in the nucellus. Although expressed throughout gametophyte development, activity became restricted to the female gamete and was also detected after fertilization during embryogenesis. TGS1 depletion altered the specification of the precursor cells that give rise to the female gametophytic generation and to the sporophyte, resulting in the formation of a functional aposporous-like lineage. Our results indicate that TGS1 participates in the mechanisms restricting cell fate acquisition to a single cell at critical transitions throughout the female reproductive lineage and, thus, expand our current knowledge of the mechanisms governing female reproductive fate in plants.

摘要

在这里,我们报告了一种植物 RNA 甲基转移酶的特征,该酶与酵母三甲基鸟苷合酶 1(Tgs1p)同源,其下调与帕斯帕尔姆草属植物的无融合生殖有关。通过系统发育分析和酵母互补,我们确定陆地植物基因组都编码保守的、特定的 TGS1 蛋白。接下来,我们使用报告系和拟南芥中的功能丧失突变体研究了 TGS1 在雌性生殖中的作用。pAtTGS1:AtTGS1 报告显示出动态的表达模式。它们在胎盘和胚珠原基出现时高度活跃,但随后在珠心表现出较弱的信号。尽管在配子体发育过程中表达,但活性仅限于雌性配子体,并且在胚胎发生期间受精后也能检测到。TGS1 的缺失改变了产生雌性配子体世代和孢子体的前体细胞的特化,导致形成功能性的无融合生殖样谱系。我们的结果表明,TGS1 参与了限制细胞命运获取的机制,在雌性生殖系的关键转变中,每个细胞只获得一个细胞命运,从而扩展了我们对植物雌性生殖命运调控机制的现有认识。

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New Phytol. 2023 Oct;240(2):597-612. doi: 10.1111/nph.19179. Epub 2023 Aug 7.
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Widespread application of apomixis in agriculture requires further study of natural apomicts.无融合生殖在农业中的广泛应用需要对天然无融合生殖体进行进一步研究。
iScience. 2024 Aug 14;27(9):110720. doi: 10.1016/j.isci.2024.110720. eCollection 2024 Sep 20.