Department of Biology, University of Ege, Izmir, Turkey.
Plant Signal Behav. 2021 May 4;16(5):1899672. doi: 10.1080/15592324.2021.1899672. Epub 2021 Mar 11.
When synchronized with the light/dark cycle the circadian rhythm is termed a diurnal rhythm and this organizes an organism's daily life cycle in relation to the metabolic shifts during the day/night cycles. This is a complex task, particularly under stress conditions. Accurate maintenance of the diurnal rhythm becomes an issue under environmental extremes, such as drought due to the impairment of metabolism, redox balance, and structural integrity. In plants, the non-proteinogenic amino acid GABA accumulates to high levels in response to several stress factors but this is not always dependent on the activation of its biosynthesis. Here we propose a regulatory role to GABA during the diurnal rhythm in plants which is similar to its function in animals where it adjusts the circadian rhythm. Here we investigated whether GABA-biosynthesis was affected by drought stress during the diurnal cycle. For this, we took samples from leaves of plants subjected to PEG-mediated drought stress (-0.73 MPa) during the day and night cycle during a 24 hour period. Glutamate, GABA, and proline contents, along with GDH, GAD enzyme activities and transcript profiles were analyzed. Overall, we conclude that the oscillations in GABA biosynthesis during day and night cycle have an impact on drought stress responses which needs to be elucidated by further analysis.
当与光/暗周期同步时,昼夜节律被称为日节律,这使生物体的日常生活周期与白天/夜间周期的代谢变化相关联。这是一项复杂的任务,特别是在应激条件下。在环境极端条件下,准确维持日节律成为一个问题,例如由于代谢、氧化还原平衡和结构完整性受损而导致的干旱。在植物中,非蛋白氨基酸 GABA 会在几种应激因素的作用下积累到高水平,但这并不总是依赖于其生物合成的激活。在这里,我们提出了 GABA 在植物日节律中的调节作用,这类似于它在动物中的功能,即调节生物钟节律。在这里,我们研究了 GABA 生物合成是否会受到昼夜周期中干旱胁迫的影响。为此,我们在 24 小时的时间内,从白天和夜间 PEG 介导的干旱胁迫(-0.73 MPa)下的植物叶片中取样。分析了谷氨酸、GABA 和脯氨酸含量以及 GDH、GAD 酶活性和转录谱。总的来说,我们得出结论,昼夜周期中 GABA 生物合成的波动对日节律和干旱胁迫反应有影响,需要进一步分析来阐明。