Department of Biology, Science Faculty, Ege University, Bornova 35100, Izmir, Turkey.
J Plant Physiol. 2012 Mar 15;169(5):452-8. doi: 10.1016/j.jplph.2011.11.006. Epub 2011 Dec 19.
Plants accumulate high levels of Gamma amino butyric acid (GABA) in response to different environmental stresses and GABA metabolism has different functions such as osmotic and pH regulation, bypass of tricarboxylic acid cycle, and C:N balance. The cytoplasmic male sterile (CMS) II mutant of Nicotiana sylvestris has a deletion in the mitochondrial gene nad7 which encodes the NAD7 subunit of complex I which causes increased leaf respiration, impaired photosynthesis, slower growth and increased amino acid levels. In this study we aimed to elucidate the role of GABA and GABA metabolism in different genotypes of the same plant system under salt stress (100mM NaCl) in short (24h) and long (7, 14 and 21 days) terms. We have investigated the differences in leaf fresh and dry weights, relative water content, photosynthetic efficiency (F(v)/F(m)), glutamate dehydrogenase (GDH, EC 1.4.1.4) and glutamate decarboxylase (GAD, EC 4.1.1.15) enzyme activities, GABA content and GAD gene expression profiles. GDH activity showed variations in CMSII and wild type (WT) plants in the first 24h. GAD gene expression profiles were in good agreement with the GAD enzyme activity levels in CMSII and WT plants after 24h. In long-term salinity, GAD activities increased in WT but, decreased in CMSII. GABA accumulation in WT and CMSII plants in short and long term was induced by salt stress. Variations in GDH and GAD activities in relation to GABA levels were discussed and GABA metabolism has been proposed to be involved in better performance of CMSII plants under long term salinity.
植物在应对不同环境胁迫时会积累大量的γ-氨基丁酸(GABA),GABA 代谢具有不同的功能,如渗透和 pH 调节、三羧酸循环旁路和 C:N 平衡。Nicotiana sylvestris 的细胞质雄性不育(CMS)II 突变体中线粒体基因 nad7 缺失,该基因编码复合体 I 的 NAD7 亚基,导致叶片呼吸增加、光合作用受损、生长缓慢和氨基酸水平升高。在这项研究中,我们旨在阐明在盐胁迫(100mM NaCl)下,同一植物系统的不同基因型中 GABA 和 GABA 代谢的作用,包括短期(24 小时)和长期(7、14 和 21 天)。我们研究了叶片鲜重和干重、相对含水量、光合效率(Fv/Fm)、谷氨酸脱氢酶(GDH,EC 1.4.1.4)和谷氨酸脱羧酶(GAD,EC 4.1.1.15)酶活性、GABA 含量和 GAD 基因表达谱的差异。在最初的 24 小时内,CMSII 和野生型(WT)植物的 GDH 活性发生了变化。在 24 小时后,GAD 基因表达谱与 CMSII 和 WT 植物的 GAD 酶活性水平非常吻合。在长期盐胁迫下,WT 植物的 GAD 活性增加,但 CMSII 植物的 GAD 活性下降。WT 和 CMSII 植物在短期和长期盐胁迫下 GABA 的积累均被诱导。讨论了 GDH 和 GAD 活性与 GABA 水平的变化关系,并提出 GABA 代谢可能参与 CMSII 植物在长期盐胁迫下的更好表现。