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Metabolic regulatory oscillations in intertidal green seaweed Ulva lactuca against tidal cycles

机译:潮间带绿色紫菜Ulva lactuca对潮汐循环的代谢调控振荡

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摘要

The survival of wetland plant species largely relies on physiological adaptations essential for submergence and desiccation. Intertidal seaweeds, unlike terrestrial plants, have unique adaptations to submergence and can also sustain desiccation arising from tidal rhythms. This study determined the differential metabolic regulations in the inter-tidal seaweed species Ulva lactuca against the submergence and desiccation. During desiccation, the relative water content of the algal thalli declined with concomitant increase in reactive oxygen species (ROS) and lipid peroxidation. Nevertheless, the trends reversed during recovery on re-submergence and attained homeostasis. Metabolite profiling of U. lactuca revealed desiccation induced balance in energy reserve utilization by adjusting carbohydrate metabolism and switch over to ammonia metabolism. Upon re-submergence, thalli showed an increase in fermentative metabolites, pyruvate-alanine conversion, and the GABA shunt. Prolonged submergence induced substrate level phosphorylation mediated sugar biosynthesis while continuing the alternative carbon flux through fermentative metabolism, an increase in osmoprotectants glycine and betaine, sulfur bearing compounds cysteine and hypotaurine, and phenolic compound coniferaldehyde. The determined metabolic regulations in U. lactuca for submergence tolerance provide insights into potential evolutionarily conserved protective mechanisms across the green lineage and also highlights the possible role of sulfur oxoforms as strong free radical scavengers.
机译:湿地植物物种的生存在很大程度上取决于淹没和干燥必不可少的生理适应性。与陆地植物不同,潮间带海藻对淹没具有独特的适应性,并且还可以维持潮汐引起的干燥。这项研究确定了潮间带海藻物种Ulva lactuca对淹没和干燥的不同代谢规律。在干燥过程中,藻类的相对含水量随着活性氧(ROS)和脂质过氧化作用的增加而下降。然而,在重新淹没并达到体内平衡的过程中,这种趋势发生了逆转。乳酸链球菌的代谢产物分析表明,通过调节碳水化合物代谢并转换为氨代谢,脱水诱导了能量储备利用的平衡。重新淹没后,thalli的发酵代谢产物,丙酮酸-丙氨酸转化率和GABA分流器增加。长时间的浸没诱导了底物水平的磷酸化介导的糖的生物合成,同时继续通过发酵代谢产生替代碳通量,增加了渗透保护剂甘氨酸和甜菜碱,含硫化合物半胱氨酸和次牛磺酸以及酚类化合物松柏醛。 U. lactuca中确定的对淹没耐受性的代谢规律为深入了解整个绿色谱系的潜在进化保守保护机制提供了见识,并突出了硫氧仿形式作为强自由基清除剂的可能作用。

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