首页> 外文OA文献 >Analysis of the Rice Mitochondrial Carrier Family Reveals Anaerobic Accumulation of a Basic Amino Acid Carrier Involved in Arginine Metabolism during Seed Germination1[W][OA]
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Analysis of the Rice Mitochondrial Carrier Family Reveals Anaerobic Accumulation of a Basic Amino Acid Carrier Involved in Arginine Metabolism during Seed Germination1[W][OA]

机译:水稻线粒体载体家族分析揭示了种子萌发过程中涉及精氨酸代谢的基本氨基酸载体的无氧积累[W] [OA]

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摘要

Given the substantial changes in mitochondrial gene expression, the mitochondrial proteome, and respiratory function during rice (Oryza sativa) germination under anaerobic and aerobic conditions, we have attempted to identify changes in mitochondrial membrane transport capacity during these processes. We have assembled a preliminary rice mitochondrial carrier gene family of 50 members, defined its orthology to carriers of known function, and observed significant changes in microarray expression data for these rice genes during germination under aerobic and anaerobic conditions and across rice development. To determine if these transcript changes reflect alteration of the carrier profile itself and to determine which members of the family encode the major mitochondrial carrier proteins, we analyzed mitochondrial integral membrane protein preparations using sodium dodecyl sulfate-polyacrylamide gel electrophoresis and peptide mass spectrometry, identifying seven distinct carrier proteins. We have used mass spectrometry-based quantitative approaches to compare the abundance of these carriers between mitochondria from dry seeds and those from aerobic- or anaerobic-germinated seeds. We highlight an anaerobic-enhanced basic amino acid carrier and show concomitant increases in mitochondrial arginase and the abundance of arginine and ornithine in anaerobic-germinated seeds, consistent with an anaerobic role of this mitochondria carrier. The potential role of this carrier in facilitating mitochondrial involvement in arginine metabolism and the plant urea cycle during the growth of rice coleoptiles and early seed nitrate assimilation under anaerobic conditions are discussed.
机译:鉴于在厌氧和有氧条件下水稻(Oryza sativa)萌发过程中线粒体基因表达,线粒体蛋白质组和呼吸功能发生了重大变化,我们试图确定这些过程中线粒体膜转运能力的变化。我们已经组装了一个由50个成员组成的初步水稻线粒体载体基因家族,将其正交定义为已知功能的载体,并观察了这些水稻基因在有氧和无氧条件下萌发期间以及整个水稻发育过程中微阵列表达数据的显着变化。为了确定这些转录物变化是否反映了载体谱本身的变化,并确定该家族的哪些成员编码主要的线粒体载体蛋白,我们使用十二烷基硫酸钠-聚丙烯酰胺凝胶电泳和肽质谱法分析了线粒体整合膜蛋白制剂,确定了七个不同的载体蛋白。我们已经使用基于质谱的定量方法来比较干燥种子的线粒体和需氧或厌氧发芽种子的线粒体中这些载体的丰度。我们突出显示了厌氧增强的碱性氨基酸载体,并显示了在厌氧萌发的种子中线粒体精氨酸酶的增加以及精氨酸和鸟氨酸的丰度,与这种线粒体载体的厌氧作用相一致。讨论了这种载体在厌氧条件下水稻胚芽鞘的生长和早期种子硝酸盐同化过程中促进线粒体参与精氨酸代谢和植物尿素循环的潜在作用。

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