首页> 外文期刊>Plant Biotechnology Journal >Genetic manipulation of the IMG alt=[gamma] src='http://onlinelibrarystatic.wiley.com/undisplayable_characters/0003b3.gif'-aminobutyric acid (GABA) shunt in rice: overexpression of truncated glutamate decarboxylase (GAD2) and knockdown of IMG alt=[gamm
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Genetic manipulation of the IMG alt=[gamma] src='http://onlinelibrarystatic.wiley.com/undisplayable_characters/0003b3.gif'-aminobutyric acid (GABA) shunt in rice: overexpression of truncated glutamate decarboxylase (GAD2) and knockdown of IMG alt=[gamm

机译:alt =γsrc=“http://onlineLibrarystatic.wiley.com/undisplayable_characters/0003b3.gif”> - aminobuticator(gaba)分流在水稻中:截短的谷氨酸脱羧酶(gad2)的过度表达抑制 alt = [gamm的敲低

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Gamma-aminobutyric acid (GABA) is a non-protein amino acid commonly present in all organisms. Because cellular levels of GABA in plants are mainly regulated by synthesis (glutamate decarboxylase, GAD) and catabolism (GABA-transaminase, GABA-T), we attempted seed-specific manipulation of the GABA shunt to achieve stable GABA accumulation in rice. A truncated GAD2 sequence, one of five GAD genes, controlled by the glutelin (GluB-1) or rice embryo globulin promoters (REG) and GABA-T-based trigger sequences in RNA interference (RNAi) cassettes controlled by one of these promoters as well, was introduced into rice (cv. Koshihikari) to establish stable transgenic lines under herbicide selection using pyriminobac. TSUB1/SUB and TSUB2/SUB generations of rice lines displayed high GABA concentrations (2–100 mg/100 g grain). In analyses of two selected lines from the TSUB3/SUB generation, there was a strong correlation between GABA level and the expression of truncated GAD2, whereas the inhibitory effect of GABA-T expression was relatively weak. In these two lines both with two T-DNA copies, their starch, amylose, and protein levels were slightly lower than non-transformed cv. Koshihikari. Free amino acid analysis of mature kernels of these lines demonstrated elevated levels of GABA (75–350 mg/100 g polished rice) and also high levels of several amino acids, such as Ala, Ser, and Val. Because these lines of seeds could sustain their GABA content after harvest (up to 6 months), the strategy in this study could lead to the accumulation GABA and for these to be sustained in the edible parts.
机译:γ-氨基丁酸(GABA)是常见于所有生物中的非蛋白质氨基酸。因为植物中GABA的细胞水平主要由合成(谷氨酸脱羧酶,GAD)和分解代谢(GABA-转氨酶,GABA-T)调节,所以我们尝试了对GABA分流的种子特异性操纵以实现水稻中稳定的GABA积累。一个截短的GAD2序列,五种GAD基因中的一种,由谷蛋白(Glub-1)或水稻胚胎球蛋白启动子(RNA胚胎球蛋白启动子(RNA-T基触发序列)和基于RNA干扰(RNAi)盒的触发序列,由这些启动子控制为嗯,被引入水稻(CV.Koshihikari),在使用吡米诺贝克的除草剂选择下建立稳定的转基因素。 T 1 和t 2 几代稻米显示出高GABA浓度(2-100mg / 100g晶粒)。在来自T 3 生成的两条所选线的分析中,GABA水平与截短的GAD2的表达之间存在强相关性,而GABA-T表达的抑制作用相对较弱。在这两条线中,两条T-DNA拷贝,它们的淀粉,直链淀粉和蛋白质水平略低于未转化的CV。 Koshihikari。这些系列成熟核的游离氨基酸分析显示了GABA(75-350mg / 100g抛光米)的升高水平,以及高水平的几种氨基酸,例如ALA,Ser和Val。由于这些种子线可以在收获(最长6个月)后可以维持他们的GABA含量,这项研究中的策略可能导致积累的GABA和这些持续物质在可食用部分中持续。

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