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首页> 外文期刊>Plant and Cell Physiology >Inhibition of a Basal Transcription Factor 3-Like Gene Osj10gBTF3 in Rice Results in Significant Plant Miniaturization and Typical Pollen Abortion
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Inhibition of a Basal Transcription Factor 3-Like Gene Osj10gBTF3 in Rice Results in Significant Plant Miniaturization and Typical Pollen Abortion

机译:水稻中基础转录因子3-like基因Osj10gBTF3的抑制导致植物显着小型化和典型的花粉败育

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BTF3, which was originally recognized as a basal transcription factor, has been known to be involved in transcription initiation, translational regulation and protein localization in many eukaryotic organisms. However, its function remains largely unknown in plant species. In the present study, we analyzed a BTF3-related sequence in Oryza sativa L. subsp. japonica, which shares the conserved domain of a nascent polypeptide-associated complex with human BTF3, and was referred to as Osj10gBTF3. The expression of Osj10gBTF3 was primarily constitutive and generally modulated by salt, high temperature and exogenous phytohormone stress. The Osj10gBTF3::EGFP (enhanced green fluorescence protein) fusion protein was localized in both the nucleus and cytoplasmic membrane system. Inhibition of Osj10gBTF3 led to significant morphological changes in all detected tissues and organs, with a reduced size of between 25% and 52%. Furthermore, the pollen that developed was completely sterile, which was correlated with the altered expression of two Rf (fertility restorer)-like genes that encode pentatricopeptide repeat-containing proteins OsPPR676 and OsPPR920, translational initiation factors OseIF3e and OseIF3h, and the heat shock protein OsHSP82. These findings were verified through a yeast two-hybrid assay using a Nipponbare callus cDNA library as bait followed by the reverse transcription–PCR analysis of total leaf or anther RNAs. Our demonstration of the important role of Osj10gBTF3 in rice growth and development provides new insights showing that more complex regulatory functions are associated with BTF3 in plants.
机译:BTF3,最初被认为是基础转录因子,已知在许多真核生物中参与转录起始,翻译调控和蛋白质定位。然而,其功能在植物物种中仍然是未知的。在本研究中,我们分析了稻米亚种中BTF3相关序列。粳稻,与人BTF3共享与新生多肽相关的复合物的保守结构域,被称为Osj10gBTF3。 Osj10gBTF3的表达主要是组成型的,通常受盐,高温和外源植物激素胁迫的调节。 Osj10gBTF3 :: EGFP(增强型绿色荧光蛋白)融合蛋白位于细胞核和细胞质膜系统中。 Osj10gBTF3的抑制导致所有检测到的组织和器官的形态发生显着变化,大小减小了25%至52%。此外,形成的花粉是完全不育的,这与两个Rf(生育力恢复)样基因的表达变化有关,这些基因编码含有五肽重复序列的蛋白质OsPPR676和OsPPR920,翻译起始因子OseIF3e和OseIF3h以及热激蛋白OsHSP82。这些发现通过酵母双杂交测定法得到证实,其中使用日本晴愈伤组织cDNA文库作为诱饵,然后对总叶或花药RNA进行逆转录– PCR分析。我们对Osj10gBTF3在水稻生长和发育中的重要作用的证明提供了新的见解,表明更复杂的调节功能与植物中的BTF3相关。

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