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转录组分析揭示水稻 MADS13 是胚珠心皮发育途径的重要抑制剂。

Transcriptome analysis reveals rice MADS13 as an important repressor of the carpel development pathway in ovules.

机构信息

Department of Biosciences, University of Milan, Milano, Italy.

Centre for Research in Agricultural Genomics (CRAG), CSIC-IRTA-UAB-UB, Campus UAB, Barcelona, Spain.

出版信息

J Exp Bot. 2021 Feb 2;72(2):398-414. doi: 10.1093/jxb/eraa460.

Abstract

In angiosperms, floral homeotic genes encoding MADS-domain transcription factors regulate the development of floral organs. Specifically, members of the SEPALLATA (SEP) and AGAMOUS (AG) subfamilies form higher-order protein complexes to control floral meristem determinacy and to specify the identity of female reproductive organs. In rice, the AG subfamily gene OsMADS13 is intimately involved in the determination of ovule identity, since knock-out mutant plants develop carpel-like structures in place of ovules, resulting in female sterility. Little is known about the regulatory pathways at the base of rice gynoecium development. To investigate molecular mechanisms acting downstream of OsMADS13, we obtained transcriptomes of immature inflorescences from wild-type and Osmads13 mutant plants. Among a total of 476 differentially expressed genes (DEGs), a substantial overlap with DEGs from the SEP-family Osmads1 mutant was found, suggesting that OsMADS1 and OsMADS13 may act on a common set of target genes. Expression studies and preliminary analyses of two up-regulated genes encoding Zinc-finger transcription factors indicated that our dataset represents a valuable resource for the identification of both OsMADS13 target genes and novel players in rice ovule development. Taken together, our study suggests that OsMADS13 is an important repressor of the carpel pathway during ovule development.

摘要

在被子植物中,花同源基因编码 MADS 结构域转录因子,调控花器官的发育。具体来说,SEPALLATA(SEP)和 AGAMOUS(AG)亚家族的成员形成更高阶的蛋白质复合物,以控制花分生组织的确定性,并指定雌性生殖器官的身份。在水稻中,AG 亚家族基因 OsMADS13 密切参与胚珠身份的决定,因为敲除突变体植物会在胚珠位置发育出心皮样结构,导致雌性不育。关于水稻雌蕊发育的基础调控途径知之甚少。为了研究作用于水稻雌蕊发育下游的分子机制,我们从野生型和 Osmads13 突变体植物的未成熟花序中获得了转录组。在总共 476 个差异表达基因(DEGs)中,与 SEP 家族 Osmads1 突变体的 DEGs 有大量重叠,表明 OsMADS1 和 OsMADS13 可能作用于一组共同的靶基因。对两个上调表达的锌指转录因子编码基因的表达研究和初步分析表明,我们的数据集代表了鉴定 OsMADS13 靶基因和水稻胚珠发育中新的调控因子的有价值资源。综上所述,我们的研究表明,OsMADS13 在胚珠发育过程中是心皮途径的一个重要抑制因子。

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