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鉴定出一种诱导多能性的小分子化合物PLU,其可诱导愈伤组织形成 热休克蛋白90介导的生长素信号激活。

Identification of a pluripotency-inducing small compound, PLU, that induces callus formation Heat Shock Protein 90-mediated activation of auxin signaling.

作者信息

Nakashima Yuki, Kobayashi Yuka, Murao Mizuki, Kato Rika, Endo Hitoshi, Higo Asuka, Iwasaki Rie, Kojima Mikiko, Takebayashi Yumiko, Sato Ayato, Nomoto Mika, Sakakibara Hitoshi, Tada Yasuomi, Itami Kenichiro, Kimura Seisuke, Hagihara Shinya, Torii Keiko U, Uchida Naoyuki

机构信息

Center for Gene Research, Nagoya University, Nagoya, Japan.

Graduate School of Science, Nagoya University, Nagoya, Japan.

出版信息

Front Plant Sci. 2023 Mar 8;14:1099587. doi: 10.3389/fpls.2023.1099587. eCollection 2023.

Abstract

Plants retain the ability to generate a pluripotent tissue called callus by dedifferentiating somatic cells. A pluripotent callus can also be artificially induced by culturing explants with hormone mixtures of auxin and cytokinin, and an entire body can then be regenerated from the callus. Here we identified a pluripotency-inducing small compound, PLU, that induces the formation of callus with tissue regeneration potency without the external application of either auxin or cytokinin. The PLU-induced callus expressed several marker genes related to pluripotency acquisition lateral root initiation processes. PLU-induced callus formation required activation of the auxin signaling pathway though the amount of active auxin was reduced by PLU treatment. RNA-seq analysis and subsequent experiments revealed that Heat Shock Protein 90 (HSP90) mediates a significant part of the PLU-initiated early events. We also showed that HSP90-dependent induction of , an auxin receptor gene, is required for the callus formation by PLU. Collectively, this study provides a new tool for manipulating and investigating the induction of plant pluripotency from a different angle from the conventional method with the external application of hormone mixtures.

摘要

植物通过使体细胞去分化,保留了产生一种称为愈伤组织的多能组织的能力。通过用生长素和细胞分裂素的激素混合物培养外植体,也可以人工诱导出多能愈伤组织,然后可以从愈伤组织再生出完整植株。在这里,我们鉴定出一种诱导多能性的小分子化合物PLU,它能在不外加生长素或细胞分裂素的情况下,诱导形成具有组织再生能力的愈伤组织。PLU诱导的愈伤组织表达了几个与多能性获得和侧根起始过程相关的标记基因。尽管PLU处理降低了活性生长素的量,但PLU诱导的愈伤组织形成需要生长素信号通路的激活。RNA测序分析及后续实验表明,热休克蛋白90(HSP90)介导了PLU引发的早期事件的很大一部分。我们还表明,PLU诱导愈伤组织形成需要HSP90依赖性诱导生长素受体基因。总的来说,这项研究提供了一种新工具,可从与传统激素混合物外源应用方法不同的角度来操纵和研究植物多能性的诱导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00b4/10030974/2217221ca53b/fpls-14-1099587-g001.jpg

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