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油菜素内酯和BZR1在仙人掌单性结实突变体中上调。

Brassinolide and BZR1 are up-regulated in a parthenocarpic mutant of prickly pear.

作者信息

Ramakrishnan Rameshkumar, Zurgil Udi, Tarkowská Danuše, Novák Ondřej, Strnad Miroslav, Tel-Zur Noemi, Sitrit Yaron

机构信息

French Associates Institute for Agriculture and Biotechnology of Drylands, The Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Sede-Boqer Campus, 84990, Negev, Israel.

Laboratory of Growth Regulators, Faculty of Sciences, Palacký University and Institute of Experimental Botany AS CR, Šlechtitelů 27, 783 71, Olomouc, Czech Republic.

出版信息

Plant Cell Rep. 2025 May 23;44(6):131. doi: 10.1007/s00299-025-03514-w.

Abstract

Parthenocarpic fruit development in prickly pear involves up-regulation of the transcription factor BZR1 and increased levels of brassinolide in developing ovules. We explored the complex process of parthenocarpic fruit development in prickly pear Opuntia ficus-indica (Cactaceae) by comparing the fruits of the parthenocarpic Beer Sheva1 (BS1) mutant and revertant non-parthenocarpic fruits. The mutant plants produce flowers with enlarged ovules that develop into degenerated seed-like stony structures. Pollen tubes fail to penetrate the ovule, resulting in the formation of lignified and hard seed coat brown in colour. Some new stems on BS1 plants bear normal revertant flowers containing small and viable fertilized ovules. BS1 thus provides a unique model for elucidating the regulatory mechanisms underlying parthenocarpy in prickly pear. Our working hypothesis was that parthenocarpy is induced by elevated levels of brassinolide in the ovules of BS1. By comparing transcriptomes, we identified 7717 differentially expressed genes between BS1 and the revertant among them brassinosteroid-related genes. Quantification of the brassinosteroids confirmed higher brassinolide levels and up-regulation of the brassinosteroid positive regulator BRASSINAZOLE RESISTANT1 (BZR1) in BS1 ovules compared to revertant ovules displaying normal seed development. Thereby, implicating the involvement of brassinolide in ovule development, fruit phenology, and parthenocarpy. The early flowering and fruit ripening observed in BS1 support our hypothesis that brassinolide promotes parthenocarpic fruit development and ripening.

摘要

仙人掌科植物梨果仙人掌的单性结实果实发育涉及转录因子BZR1的上调以及发育中的胚珠中油菜素内酯水平的增加。我们通过比较单性结实的贝尔谢巴1(BS1)突变体的果实和回复的非单性结实果实,探索了梨果仙人掌单性结实果实发育的复杂过程。突变植株产生的花朵具有增大的胚珠,这些胚珠发育成退化的种子状石质结构。花粉管无法穿透胚珠,导致形成木质化且坚硬的褐色种皮。BS1植株上的一些新茎带有正常的回复花,其中包含小的且可育的受精胚珠。因此,BS1为阐明梨果仙人掌单性结实的调控机制提供了一个独特的模型。我们的工作假设是,单性结实是由BS1胚珠中油菜素内酯水平升高诱导的。通过比较转录组,我们在BS1和回复体之间鉴定出7717个差异表达基因,其中包括油菜素内酯相关基因。对油菜素内酯的定量分析证实,与显示正常种子发育的回复体胚珠相比,BS1胚珠中的油菜素内酯水平更高,且油菜素内酯正调控因子BRASSINAZOLE RESISTANT1(BZR1)上调。从而表明油菜素内酯参与胚珠发育、果实物候和单性结实。在BS1中观察到的早花和果实成熟支持了我们的假设,即油菜素内酯促进单性结实果实的发育和成熟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/891c/12102005/24e491516b10/299_2025_3514_Fig1_HTML.jpg

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