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在甜瓜卷须中表达的植物特异性转录因子 TCP 和 YABBY 的相互作用。

Interaction between plant-specific transcription factors TCP and YABBY expressed in the tendrils of the melon Cucumis melo.

机构信息

Department of Bioscience in Daily Life, Nihon University College of Bioresource Sciences, Kanagawa, 252-0880, Japan.

Department of Agri-Science, Nihon University College of Bioresource Sciences, Kanagawa, 252-0880, Japan.

出版信息

Sci Rep. 2024 Oct 1;14(1):22818. doi: 10.1038/s41598-024-74175-0.

Abstract

Plant tendrils are specialized organs that can twine around other structures to facilitate climbing. They occur in a variety of plant families and have diverse ontogenic origins. In cucurbits, tendrils originate from lateral shoots. Fine mapping verified that the tendril-less ctl mutation of the melon Cucumis melo corresponds to a frameshift mutation in the CmTCP1 gene, which encodes a TCP transcription factor. A yeast two-hybrid screen for CmTCP1/CTL-interacting proteins identified a member of the plant-specific YABBY transcription factor family, which was named CmYAB1. Each of the N- and C-terminal regions of CmTCP1 interacted with CmYAB1. The ctl mutation impaired the interaction between CmTCP1 and CmYAB1. Both proteins interacted in vitro and were localized to the nucleus in plant cells. In situ expression analysis revealed the coexistence of the CmTCP1 and CmYAB1 mRNAs in the abaxial domains of developing tendrils. An RNA-seq analysis of the seven YABBY genes in the melon genome revealed relatively high expression ratios of CmYAB1 in tendrils compared with those in leaves. These results suggest a novel function of the YABBY protein through its interaction with a TCP protein in the development of cucurbit tendrils.

摘要

植物卷须是一种特殊的器官,可以缠绕在其他结构上,以促进攀爬。它们存在于各种植物科中,具有不同的发生起源。在葫芦科中,卷须起源于侧芽。精细定位验证了甜瓜 Cucumis melo 的无卷须 ctl 突变对应于编码 TCP 转录因子的 CmTCP1 基因的移码突变。酵母双杂交筛选 CmTCP1/CTL 相互作用蛋白鉴定了一个植物特异性 YABBY 转录因子家族的成员,该成员被命名为 CmYAB1。CmTCP1 的 N-和 C-末端区域都与 CmYAB1 相互作用。ctl 突变损害了 CmTCP1 和 CmYAB1 之间的相互作用。两种蛋白质在体外相互作用,并在植物细胞的核中定位。原位表达分析显示,在发育中的卷须的下表皮域中,CmTCP1 和 CmYAB1 的 mRNAs 共存。对甜瓜基因组中的七个 YABBY 基因进行 RNA-seq 分析表明,与叶片相比,CmYAB1 在卷须中的表达比值相对较高。这些结果表明 YABBY 蛋白通过与 TCP 蛋白相互作用在葫芦科卷须的发育中具有新的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47ee/11445500/1222ceb60e1a/41598_2024_74175_Fig1_HTML.jpg

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