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丙环唑诱导的油菜素甾醇缺乏通过抑制森林草莓雌配子体发育降低雌性育性。

Propiconazole-induced brassinosteroid deficiency reduces female fertility by inhibiting female gametophyte development in woodland strawberry.

作者信息

Ishii Hikari, Ishikawa Ami, Yumoto Emi, Kurokura Takeshi, Asahina Masashi, Shimada Yukihisa, Nakamura Ayako

机构信息

Yokohama City University, Kihara Institute for Biological Research, Maioka 641-12, Totsuka, Yokohama, Kanagawa, 244-0813, Japan.

Advanced Instrumental Analysis Center, Teikyo University, 1-1 Toyosatodai, Utsunomiya, Tochigi, 321-8505, Japan.

出版信息

Plant Cell Rep. 2023 Mar;42(3):587-598. doi: 10.1007/s00299-023-02981-3. Epub 2023 Jan 11.

Abstract

In woodland strawberry, a brassinosteroid biosynthesis inhibitor propiconazole induced typical brassinosteroid-deficient phenotypes and decreased female fertility due to attenuated female gametophyte development. Brassinosteroids (BRs) play roles in various aspects of plant development. We investigated the physiological roles of BRs in the woodland strawberry, Fragaria vesca. BR-level-dependent phenotypes were observed using a BR biosynthetic inhibitor, propiconazole (PCZ), and the most active natural BR, brassinolide (BL). Endogenous BL and castasterone, the active BRs, were below detectable levels in PCZ-treated woodland strawberry. The plants were typical BR-deficient phenotypes, and all phenotypes were restored by treatment with BL. These observations indicate that PCZ is an effective inhibitor of BR in woodland strawberry. Only one gene for each major step of BR biosynthesis in Arabidopsis is encoded in the woodland strawberry genome. BR biosynthetic genes are highly expressed during the early stage of fruit development. Emasculated flowers treated with BL failed to develop fruit, implying that BR is not involved in parthenocarpic fruit development. Similar to BR-deficient and BR-insensitive Arabidopsis mutants, female fertility was lower in PCZ-treated plants than in mock-treated plants due to failed attraction of the pollen tube to the ovule. In PCZ-treated plants, expression of FveMYB98, the homologous gene for Arabidopsis MYB98 (a marker for synergid cells), was downregulated. Ovules were smaller in PCZ-treated plants than in mock-treated plants, and histological analysis implied that the development of more than half of female gametophytes was arrested at the early stage in PCZ-treated plants. Our findings explain how BRs function during female gametophyte development in woodland strawberry.

摘要

在森林草莓中,一种油菜素甾醇生物合成抑制剂丙环唑诱导出典型的油菜素甾醇缺乏表型,并由于雌配子体发育减弱而降低了雌性育性。油菜素甾醇(BRs)在植物发育的各个方面都发挥作用。我们研究了BRs在森林草莓(草莓属)中的生理作用。使用BR生物合成抑制剂丙环唑(PCZ)和活性最强的天然BR油菜素内酯(BL)观察了BR水平依赖性表型。在经PCZ处理的森林草莓中,内源性BL和活性BR甾酮低于可检测水平。这些植株呈现典型的BR缺乏表型,并且所有表型都通过BL处理得以恢复。这些观察结果表明PCZ是森林草莓中BR的有效抑制剂。森林草莓基因组中仅编码拟南芥中BR生物合成每个主要步骤的一个基因。BR生物合成基因在果实发育早期高度表达。用BL处理的去雄花未能发育成果实,这意味着BR不参与单性结实果实的发育。与BR缺乏和BR不敏感的拟南芥突变体相似,由于花粉管未能吸引到胚珠,经PCZ处理的植株的雌性育性低于模拟处理的植株。在经PCZ处理的植株中,拟南芥MYB98(助细胞标记)的同源基因FveMYB98的表达下调。经PCZ处理的植株中的胚珠比模拟处理的植株中的胚珠小,组织学分析表明,在经PCZ处理的植株中,超过一半的雌配子体发育在早期就停止了。我们的研究结果解释了BRs在森林草莓雌配子体发育过程中的作用方式。

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