Root Primordium Defective 1 Encodes an Essential PORR Protein Required for the Splicing of Mitochondria-Encoded Group II Introns and for Respiratory Complex I Biogenesis.

IF 3.9 2区 生物学 Q2 CELL BIOLOGY Plant and Cell Physiology Pub Date : 2024-05-14 DOI:10.1093/pcp/pcad101
Rana Edris, Laure D Sultan, Corinne Best, Ron Mizrahi, Ofir Weinstein, Stav Chen, Nina A Kamennaya, Nir Keren, Hagit Zer, Hongliang Zhu, Oren Ostersetzer-Biran
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Abstract

Cellular respiration involves complex organellar metabolic activities that are pivotal for plant growth and development. Mitochondria contain their own genetic system (mitogenome, mtDNA), which encodes key elements of the respiratory machinery. Plant mtDNAs are notably larger than their counterparts in Animalia, with complex genome organization and gene expression characteristics. The maturation of the plant mitochondrial transcripts involves extensive RNA editing, trimming and splicing events. These essential processing steps rely on the activities of numerous nuclear-encoded cofactors, which may also play key regulatory roles in mitochondrial biogenesis and function and hence in plant physiology. Proteins that harbor the plant organelle RNA recognition (PORR) domain are represented in a small gene family in plants. Several PORR members, including WTF1, WTF9 and LEFKOTHEA, are known to act in the splicing of organellar group II introns in angiosperms. The AT4G33495 gene locus encodes an essential PORR protein in Arabidopsis, termed ROOT PRIMORDIUM DEFECTIVE 1 (RPD1). A null mutation of At.RPD1 causes arrest in early embryogenesis, while the missense mutant lines, rpd1.1 and rpd1.2, exhibit a strong impairment in root development and retarded growth phenotypes, especially under high-temperature conditions. Here, we further show that RPD1 functions in the splicing of introns that reside in the coding regions of various complex I (CI) subunits (i.e. nad2, nad4, nad5 and nad7), as well as in the maturation of the ribosomal rps3 pre-RNA in Arabidopsis mitochondria. The altered growth and developmental phenotypes and modified respiration activities are tightly correlated with respiratory chain CI defects in rpd1 mutants.

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根原基缺陷 1 编码线粒体编码的 II 组内含子剪接和呼吸复合体 I 生物发生所需的重要 PORR 蛋白。
细胞呼吸涉及复杂的细胞器代谢活动,对植物的生长和发育至关重要。线粒体含有自己的遗传系统(有丝分裂基因组,mtDNA),它编码呼吸机制的关键元素。植物的 mtDNA 比动物的 mtDNA 大得多,具有复杂的基因组组织和基因表达特征。植物线粒体转录本的成熟涉及大量的 RNA 编辑、修剪和剪接过程。这些重要的处理步骤依赖于大量核编码辅助因子的活动,这些辅助因子也可能在线粒体的生物发生和功能以及植物生理学中发挥关键的调控作用。携带植物细胞器 RNA 识别(PORR)结构域的蛋白质在植物中表现为一个小的基因家族。已知包括 WTF1、WTF9 和 LEFKOTHEA 在内的几个 PORR 成员参与了被子植物中细胞器组 II 内含子的剪接。AT4G33495 基因位点编码拟南芥中一种重要的 PORR 蛋白,称为 ROOT PRIMORDIUM DEFECTIVE 1(RPD1)。At.RPD1 基因的无效突变会导致早期胚胎发生的停滞,而错义突变株 rpd1.1 和 rpd1.2 则表现出根发育的严重障碍和生长迟缓的表型,尤其是在高温条件下。在这里,我们进一步证明了 RPD1 在拟南芥线粒体中多种复合体 I(CI)亚基(即 nad2、nad4、nad5 和 nad7)编码区内的内含子剪接以及核糖体 rps3 pre-RNA 成熟过程中的功能。生长和发育表型的改变以及呼吸活动的改变与 rpd1 突变体的呼吸链 CI 缺陷密切相关。
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来源期刊
Plant and Cell Physiology
Plant and Cell Physiology 生物-细胞生物学
CiteScore
8.40
自引率
4.10%
发文量
166
审稿时长
1.7 months
期刊介绍: Plant & Cell Physiology (PCP) was established in 1959 and is the official journal of the Japanese Society of Plant Physiologists (JSPP). The title reflects the journal''s original interest and scope to encompass research not just at the whole-organism level but also at the cellular and subcellular levels. Amongst the broad range of topics covered by this international journal, readers will find the very best original research on plant physiology, biochemistry, cell biology, molecular genetics, epigenetics, biotechnology, bioinformatics and –omics; as well as how plants respond to and interact with their environment (abiotic and biotic factors), and the biology of photosynthetic microorganisms.
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