Schrumpf Annika, Lengerer Andreas, Schmid Nicola, Kazda Marian
Institute for Systematic Botany and Ecology, Ulm University, Ulm, Germany.
Front Plant Sci. 2021 Nov 5;12:765089. doi: 10.3389/fpls.2021.765089. eCollection 2021.
The metabolism of submerged plants is commonly characterized by oxygen development. The turnover rates of carbon dioxide and other inorganic carbon species, however, are assessed only at distinct points in time after incubation or calculated through shifts in pH and total alkalinity. A novel three parameter measurement system was developed in order to improve this issue and to gain a better understanding of the metabolism of aquatic plants. It allows the simultaneous and continuous assessment of oxygen concentration, partial pressure of carbon dioxide and pH with optical sensors without the need of taking water samples. Plants or plant parts can be enclosed in a chamber, while the surrounding water is either flushed through or circulated within the system. The method was evaluated in regards to measurement time and possible stress reactions during measurement. Its applicability was confirmed with and . The measurement system will enable deeper insights into the metabolism and response of aquatic plants to changing environmental conditions, especially related to carbon fixation.
沉水植物的新陈代谢通常以氧气产生为特征。然而,二氧化碳和其他无机碳物种的周转率仅在培养后的特定时间点进行评估,或者通过pH值和总碱度的变化来计算。为了改善这一问题并更好地了解水生植物的新陈代谢,开发了一种新颖的三参数测量系统。它允许使用光学传感器同时连续评估氧气浓度、二氧化碳分压和pH值,而无需采集水样。植物或植物部分可以封闭在一个腔室中,而周围的水可以通过系统冲洗或循环。该方法在测量时间和测量过程中可能的应激反应方面进行了评估。其适用性通过……得到了证实。该测量系统将能够更深入地了解水生植物的新陈代谢以及对不断变化的环境条件的反应,特别是与碳固定相关的反应。