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Heterogeneity of buoyancy in response to light between two buoyant types of cyanobacterium Microcystis.

机译:两种浮力类型的蓝藻微囊藻之间的响应光的浮力异质性。

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Previous investigations suggested that buoyancy state in response to light differed between individuals within natural populations of cyanobacteria. To understand the mechanisms of heterogeneity of buoyancy in different species/strains in relation to light, two types of colonial Microcystis in different buoyancy behavior were selected and used to compare their photosynthetic activity, gas vesicle volume, ballast mass, and migration at varying light regime. The photosynthesis-irradiance curve and Fv/Fm examination indicated that negatively buoyant strains were more adapted at high irradiance than buoyant ones. Transcription levels of gvp gene and gas vesicle volume decreased in buoyant strains, but increased in negatively buoyant ones at high irradiance. The results indicated that the combination effect of decrease in gas vesicle buoyancy and increase in carbohydrate contributed to the downward migration of buoyant strains, while the significant increase of gas vesicles provided sufficient buoyancy to negate ballast mass, resulting in the upward migration of negatively buoyant ones at high irradiance. In addition, either sinking or floating velocities were elevated in buoyant and negatively buoyant strains, coincidently with the colony enlargement of all strains at high irradiance, respectively. These findings suggest that this heterogeneity was associated with the interplay between gas vesicles, ballast, and colony size. The fact that different species/strains of Microcystis respond diversely to light depending on their physiological conditions presents a good example to understand heterogeneity of buoyancy in the field, and the presence of heterogeneity of buoyancy may be implicated in the dominancy and persistence of Microcystis bloom in ever-changing environment.Digital Object Identifier http://dx.doi.org/10.1007/s10750-011-0894-y
机译:先前的研究表明,在自然蓝藻种群中,个体对光的浮力状态有所不同。为了了解不同物种/菌株与光相关的浮力异质性的机制,选择了两种类型的具有不同浮力行为的殖民地微囊藻,并比较了它们的光合活性,气体囊泡体积,压载质量,以及在不同光照条件下的迁移。光合作用-辐照度曲线和 F v / F m 检查表明,负浮力菌株在高温下更适应辐照度比浮力大。浮力菌株中 gvp 基因的转录水平和气体囊泡体积降低,但在高辐照度时,负浮力菌株的转录水平增加。结果表明,气体囊泡浮力的降低和碳水化合物的增加的共同作用促使浮力菌株向下迁移,而气体囊泡的明显增加提供了足以抵消压载质量的浮力,从而导致负浮力的向上迁移。在高辐照度下。另外,在浮力和负浮力菌株中下沉或漂浮速度都升高,分别与在高辐照度下所有菌株的菌落增大相一致。这些发现表明,这种异质性与气体囊泡,压载物和菌落大小之间的相互作用有关。微囊藻的不同物种/菌株根据其生理条件对光做出不同反应的事实为了解该领域的浮力异质性提供了一个很好的例子,并且可能暗示了浮力异质性的存在。在不断变化的环境中,微囊藻的优势地位和持久性。数字对象标识符http://dx.doi.org/10.1007/s10750-011-0894-y

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