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首页> 外文期刊>Plant Physiology and Biochemistry >Title: Enhanced salt tolerance and photosynthetic performance: Implication of gamma-amino butyric acid application in salt-exposed lettuce (Lactuca sativa L.) plants
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Title: Enhanced salt tolerance and photosynthetic performance: Implication of gamma-amino butyric acid application in salt-exposed lettuce (Lactuca sativa L.) plants

机译:标题:增强的耐盐性和光合作用:γ-氨基丁酸应用在盐暴露莴苣(Lactuca Sativa L.)植物中的含义

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Gamma-Amino Butyric Acid (GABA) is a substantial component of the free amino acid pool with low concentration in plant tissues. Enhanced GABA content occurs during plant growth and developmental processes like seed germination. GABA level, basically, alters in response to many endogenous and exogenous stimuli. In the current study, GABA effects were studied on germination, photosynthetic performance and oxidative damages in salt-exposed lettuce plants. Three NaCl (0, 40 and 80 mM) and two GABA (0 and 25 mu M) concentrations were applied on lettuce during two different developmental (seed germination and seedlings growth) stages. Negative effects of salinity on germination and plant growth were removed by GABA application. GABA significantly reduced mean germination time (MGT) in salt-exposed lettuce seeds. Although, salinity caused a significant decline in maximum quantum yield of photosystem II (F-v/F-m) during distinct steps of plant growth, GABA application improved Fv/Fm particularly on high salinity level. GABA decreased specific energy fluxes per reaction center (RC) for energy absorption and dissipation, while enhanced-electron transport flux in photosynthetic apparatus of lettuce plants was observed in GABA-supplemented plants. Moreover, decline in non photochemical quenching (NPQ) and quenching coefficients (qP, qL, qN) by salt stress were recovered by GABA application. Elevated electrolyte leakage considerably decreased by GABA exposure on salt-treated plants. Although, proline level increased by NaCl treatments in a concentration dependent manner, combined application of salt with GABA caused a significant reduction in proline content. Catalase; EC 1.11.1.6 (CAT), L-ascorbate peroxidase; EC 1.11.1.11 (APX), and superoxide dismutase; EC 1.15.1.1 (SOD) activities were increased by GABA exposure in salt-supplemented plants that resulted in regulated hydrogen peroxide level. In conclusion, a multifaceted role for GABA is suggested for minimizing detrimental e
机译:γ-氨基丁酸(GABA)是游离氨基酸池的大量成分,植物组织中低浓度。在植物生长和种子萌发等发育过程中发生增强的GABA含量。 GABA水平基本上,反应许多内源和外源刺激的改变。在目前的研究中,研究了GABA效应对盐暴露莴苣植物的萌发,光合性能和氧化损伤。在两种不同的发育(种子萌发和幼苗生长)阶段,将三种NaCl(0,40和80mm)和两个GABA(0和25μm)浓度施加在莴苣上。 GABA应用除去了盐度对萌发和植物生长的负面影响。 GABA在盐暴露莴苣种子中显着降低了平均发芽时间(MgT)。虽然盐度在植物生长的不同步骤中引起了光束II(F-V / F-M)的最大量子产率显着下降,但GABA应用特别是高盐度水平的FV / FM。对于能量吸收和耗散,GABA降低了每个反应中心(RC)的特定能量通量,而在GABA补充植物中观察到莴苣植物的光合植物的增强电子传输通量。此外,通过GABA施用回收通过盐胁迫的非光化学猝灭(NPQ)和猝灭系数(QP,Q1,QN)的下降。在盐处理植物上,GABA暴露的电解质泄漏升高显着降低。虽然,脯氨酸水平以浓度依赖性方式的NaCl处理增加,但盐与GABA的合并施用导致脯氨酸含量显着降低。过氧化氢酶; EC 1.11.1.6(猫),L-抗坏血酸过氧化物酶; EC 1.11.1.11(APX)和超氧化物歧化酶;通过GABA暴露在盐补充植物中增加了EC 1.15.1.1(SOD)活性,导致受调节过氧化氢水平的植物。总之,提出了最小化有害e的GABA对GABA的多方面的作用

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