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Dynamics in carbohydrate composition of Phaeocystis pouchetii colonies during spring blooms in mesocosms

机译:中膜春季开花过程中袋囊袋囊菌落碳水化合物组成的动态

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The colony-forming microalgae Phaeocystis produces two major pools of carbohydrates: mucopolysaccharides in the colony matrix and intracellular storage glucan. Both have different functions and separate degradation pathways in the ecosystem, so a partial precipitation method was developed to distinguish the dynamics of the two pools. Changes in concentration in response to variation in nutrients and irradiance were followed during a spring bloom of Phaeocystis pouchetii colonies in mesocosms near Bergen, Norway. Upon nutrient limitation, the carbohydrate to carbon ratio of the colonies increased from 15% during the growth phase, to more than 50% during the decline phase. During the growth phase of the bloom, the carbohydrate concentration and composition were influenced by irradiance: glucan concentrations showed strong diel dynamics and increased with higher light levels, whereas mucopolysaccharide concentrations were unaffected. During the exponential growth phase, glucan contributed 6-11% to P. pouchetii carbon, depending on the time of the day. During the decline of the bloom, the glucan contribution increased up to 60%. We provide further evidence for the concept that the Phaeocystis colony matrix is built with a relatively small but constant amount of carbohydrates, compared to the large quantities of glucan produced during Phaeocystis spring blooms. Since a major part of Phaeocystis primary production is recycled in the water column by bacteria, this vast glucan injection is a potential determinant of the magnitude and composition of the microbial community following a bloom.
机译:集落形成微藻类囊藻产生两个主要的碳水化合物库:集落基质中的粘多糖和细胞内储存的葡聚糖。两者在生态系统中具有不同的功能和单独的降解途径,因此开发了一种局部降水方法来区分这两个库的动态。在挪威卑尔根附近中胚层的Phaeocystis pouchetii菌落春季开花期间,跟踪响应于营养物和辐照度变化的浓度变化。在营养限制后,菌落的碳水化合物与碳的比率从生长阶段的15%增加到下降阶段的50%以上。在水华的生长​​期中,碳水化合物的浓度和组成受辐照度的影响:葡聚糖的浓度表现出很强的diel动力学,并随着较高的光照水平而增加,而粘多糖的浓度则不受影响。在指数生长期,葡聚糖对P. pouchetii碳的贡献为6-11%,具体取决于一天中的时间。在开花下降期间,葡聚糖的贡献增加了高达60%。我们为这一概念提供了进一步的证据,与在藻囊春季开花期间产生的大量葡聚糖相比,藻囊菌落的基质是用相对少量但恒定量的碳水化合物构建的。由于Phaeocystis的主要产物的大部分通过细菌在水柱中循环利用,因此这种大量的葡聚糖注射是开花后微生物群落数量和组成的潜在决定因素。

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