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首页> 外文期刊>Plant Systematics and Evolution >Gamma-amino butyric acid, glutamate dehydrogenase and glutamate decarboxylase levels in phylogenetically divergent plants.
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Gamma-amino butyric acid, glutamate dehydrogenase and glutamate decarboxylase levels in phylogenetically divergent plants.

机译:系统发育分歧植物中的γ-氨基丁酸,谷氨酸脱氢酶和谷氨酸脱羧酶水平。

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摘要

Gamma-amino butyric acid (GABA) is a nonprotein amino acid found in a wide range of organisms including plants. Several studies have shown that GABA plays different roles in plant metabolism including carbon-nitrogen metabolism, energy balance, signaling and development. It has been suggested that the occurrence of GABA and the enzymes related to GABA biosynthesis in prokaryotes and eukaryotes may be important in evolution and diversification. However, studies of GABA biosynthesis and GABA levels in an evolutionary context are restricted to sequenced plant genomes. In this study we aimed to compare the activities of GDH and GAD enzymes and total nitrogen, and the contents of total soluble protein, succinate, glutamate, proline and GABA in plants from different phylogenetic levels including Ulva lactuca, Pseudevernia furfuracea, Nephrolepsis exaltata, Ginkgo biloba, Pinus pinea, Magnolia grandiflora, Nymphaea alba, Urtica dioica, Portulaca oleraceae, Malva sylvestris, Rosa canina, Lavandula stoechas, Washingtonia filifera, Avena barbata and Iris kaempferi. The activities of GAD and GDH enzymes differed according to the species and were not always parallel to GABA levels. The discrepancy in the contents of succinate and GABA between higher and primitive plants was also prominent. Glutamate levels were high with a few exceptions and proline contents were at similar low values as compared to other amino acids. Our results support the hypothesis that the GABA shunt plays a key role in carbon and nitrogen partitioning via linking amino acid metabolism and the tricarboxylic acid cycle which is essential for higher plant species.
机译:γ-氨基丁酸(GABA)是一种广泛存在于包括植物在内的生物中的非蛋白质氨基酸。多项研究表明,GABA在植物代谢中扮演着不同的角色,包括碳氮代谢,能量平衡,信号传导和发育。有人认为,原核生物和真核生物中GABA和与GABA生物合成有关的酶的发生可能在进化和多样化中很重要。但是,在进化背景下对GABA生物合成和GABA水平的研究仅限于测序的植物基因组。在这项研究中,我们旨在比较不同系统发育水平的植物(包括Ulva lactuca,Pseudevernia furfuracea,Nephrolepsis exaltata,Ginkgo)中GDH和GAD酶的活性以及总氮,以及总可溶性蛋白,琥珀酸,谷氨酸,脯氨酸和GABA的含量。 biloba,松树,大木兰,白睡莲,荨麻二叶虫,马齿Port科,锦葵属,罗莎犬科,薰衣草stoechas,华盛顿草,艾维娜·巴巴塔和鸢尾花。 GAD和GDH酶的活性因物种而异,并不总是与GABA水平平行。高等植物和原始植物之间琥珀酸和GABA含量的差异也很明显。与其他氨基酸相比,谷氨酸盐含量较高,脯氨酸含量较低。我们的研究结果支持以下假设:GABA分流通过连接氨基酸代谢和三羧酸循环(对高等植物至关重要)而在碳和氮分配中起关键作用。

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