首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >AEC resistant rice mutants induced by gamma-ray irradiation may include both elevated lysine production and increased activity of stress related enzymes
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AEC resistant rice mutants induced by gamma-ray irradiation may include both elevated lysine production and increased activity of stress related enzymes

机译:伽马射线辐照诱导的抗AEC水稻突变体可能包括赖氨酸产生增加和胁迫相关酶的活性增加

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To increase the contents of specific free amino acids in the rice (Oryza sativa L.) cultivar "Donganbyeo", mutant cell lines resistant to growth inhibition by S-(2-aminoethyl)-cysteine (AEC) were selected from calli irradiated with gamma-rays through embryo culture. In the four AEC resistant M-3 lines, LR3-69, LR5-132, LR7-2 and LR9-48, the amino acids contents were 26, 7, 29 and 37%, respectively, greater than in the "Donganbyeo". The most significant amino acid increases in the resistant lines were in lysine and tryptophan levels. The lysine levels of the four resistant lines were 2.66, 1.58, 2.37 and 2.29 times, higher than in the "Donganbyeo". Total proteins extracted and resolved by SDS-PAGE. showed few differences in the protein profiles of the control and mutant lines. In glutelins, SDS-PAGE protein patterns showed two typical mutant protein bands at 24 kDa. The SDS-PAGE profiles of mutant prolamines revealed two distinct bands of different intensities, at ca. 22 and 18 kDa. AEC may inhibit cell growth irreversibly by competing with lysine for incorporation into protein. This incorporation presumably leads to an altered protein conformation and function, and accounts for the cytotoxic effects of AEC. Therefore, AEC creates stresses in vivo much like other environmental stresses. Changes in gene expression in response to AEC were analyzed by 2-dimensional gel electrophoresis (2-DE). The number of new protein spots found in resistant mutants of LR3-69, LR5-132 and LR9-48 were 4, 11 and 16, respectively. De novo synthesized and enhanced proteins in these mutant lines after induction with AEC were 13, 11 and 9, and 7, 12 and 13 spots, respectively. The five proteins (L1, L2, L5, L6 and L7) were identified as a 33 kDa oxygen-evolving protein of photosystem 11, ribulose-1,5-bisphosphate carboxylase (Rubisco) large subunit, ascorbate peroxidase (APX), glutamine synthetase (GS) and Cu/Zn superoxide dismutase (Cu/Zn SOD). Based on the 2-DE results, the AEC stress-mediated responses of two antioxidant enzymes, SOD and APX, were examined. Compared with a 50.3% increase in the control, increases in the rates of SOD activity of LR3-69, LR7-2 and LR9-48 were 136.5, 177.1 and 184.8%, respectively. After AEC treatment, the APX activity level in the control increased by 5.4%, whereas those of the mutant lines, LR3-69, LR5-132, LR7-2 and LR9-48, increased to 1.6, 1.4, 2.4 and 4.0 times that of the untreated control, respectively.
机译:为了增加水稻“ Donganbyeo”品种中特定游离氨基酸的含量,从γ射线辐照的愈伤组织中选择了具有抗S-(2-氨基乙基)-半胱氨酸(AEC)生长抑制作用的突变细胞系。通过胚胎培养发出光线。在四个抗AEC的M-3系LR3-69,LR5-132,LR7-2和LR9-48中,氨基酸含量分别比“ Donganbyeo”中高26%,7%,29%和37%。抗性系中最显着的氨基酸增加是赖氨酸和色氨酸水平。四个抗性品系的赖氨酸水平分别是“东安比欧”的2.66、1.58、2.37和2.29倍。通过SDS-PAGE提取和分离总蛋白质。在对照和突变株系的蛋白质谱中显示出很少的差异。在谷蛋白中,SDS-PAGE蛋白模式在24 kDa处显示两个典型的突变蛋白带。突变的谷醇溶蛋白的SDS-PAGE图谱显示了两个不同的强度不同的条带,大约在。 22和18 kDa。通过与赖氨酸竞争掺入蛋白质,AEC可能不可逆地抑制细胞生长。这种掺入可能导致蛋白质构象和功能改变,并解释了AEC的细胞毒性作用。因此,AEC会像其他环境压力一样在体内产生压力。通过二维凝胶电泳(2-DE)分析响应AEC的基因表达变化。在LR3-69,LR5-132和LR9-48的抗性突变体中发现的新蛋白质斑点数量分别为4、11和16。在用AEC诱导后,这些突变体中从头合成和增强的蛋白质分别为13、11和9、7、12和13个斑点。五个蛋白(L1,L2,L5,L6和L7)被鉴定为光系统11的33 kDa释氧蛋白,核糖-1,5-双磷酸羧化酶(Rubisco)大亚基,抗坏血酸过氧化物酶(APX),谷氨酰胺合成酶(GS)和Cu / Zn超氧化物歧化酶(Cu / Zn SOD)。根据2-DE结果,检查了两种抗氧化剂SOD和APX的AEC胁迫介导的响应。与对照组的50.3%相比,LR3-69,LR7-2和LR9-48的SOD活性增加率分别为136.5%,177.1%和184.8%。 AEC处理后,对照组的APX活性水平提高了5.4%,而突变株LR3-69,LR5-132,LR7-2和LR9-48的活性分别提高了后者的1.6、1.4、2.4和4.0倍未经处理的对照。

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