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Potential gap in understanding cyanoHABs: Light-dependent morphological variations in colonial cyanobacterium Microcystis

机译:理解蓝藻 HAB 的潜在差距:菌落蓝藻微囊藻的光依赖性形态变化

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? 2024 Elsevier B.V.Colony formation is a crucial characteristic of Microcystis, a cyanobacterium known for causing cyanobacterial harmful algal blooms (cyanoHABs). It has been observed that as Microcystis colonies grow larger, they often become less densely packed, which correlates with a decrease in light penetration. The objective of this study was to investigate the effects of light limitation on the morphological variations in Microcystis, particularly in relation to the crowded cellular environment. The results indicated that when there was sufficient light (transmittance = 100 ) to support a growth rate of 0.11±0.01 day?1, a significant increase in colony size was found, from 466±15 μm to 1030±111 μm. However, under light limitation (transmittance = 50 – 1 ) where the growth rate was lower than 0, there was no significant improvement in colony size. Microcystis in the light limitation groups exhibited a loose cell arrangement and even the presence of holes or pores within the colony, confirming the negative correlation between colony size and cell arrangement. This pattern is driven by regional differences in growth within the colony, as internal cells have a significantly lower frequency of division compared to peripheral cells, due to intra-colony self-shading (ICSS). The research demonstrates that Microcystis can adjust its cell arrangement to avoid excessive self-shading, which has implications for predicting and controlling cyanoHABs. These findings also contribute to the understanding of cyanobacterial variations and can potentially inform future research on the diverse phycosphere.
机译:?2024 Elsevier BV 菌落形成是微囊藻的一个关键特征,微囊藻是一种以引起蓝藻有害藻华 (cyanoHAB) 而闻名的蓝藻。据观察,随着微囊藻菌落变大,它们通常会变得不那么密集,这与光穿透力的降低有关。本研究的目的是研究光照限制对微囊藻形态变化的影响,特别是与拥挤的细胞环境有关的影响。结果表明,当有足够的光线(透射率 = 100%)来支持 0.11±0.01 天的生长速率时?1,发现菌落大小显着增加,从 466±15 μm 增加到 1030±111 μm。然而,在生长速率低于 0 的光照限制(透射率 = 50 % – 1 %)下,菌落大小没有显着改善。光限制组中的微囊藻表现出松散的细胞排列,甚至在集落内存在孔或孔,证实了集落大小与细胞排列之间的负相关。这种模式是由菌落内生长的区域差异驱动的,因为由于菌落内自阴影 (ICSS),与外周细胞相比,内部细胞的分裂频率显着降低。研究表明,微囊藻可以调整其细胞排列以避免过度的自着色,这对预测和控制 cyanoHAB 具有重要意义。这些发现也有助于理解蓝藻变异,并可能为未来对不同藻圈的研究提供信息。

著录项

  • 来源
    《Harmful Algae》 |2024年第4期|1.1-1.10|共10页
  • 作者单位

    Key Laboratory of Yangtze River Water Environment Ministry of Education College of Environmental Science and Engineering Tongji UniversityKey Laboratory of Yangtze River Water Environment Ministry of Education College of Environmental Science and Engineering Tongji UniversityKey Laboratory of Yangtze River Water Environment Ministry of Education College of Environmental Science and Engineering Tongji University||College of Environment Hohai University;

    |Shanghai Institute of Pollution Control a;

    Key Laboratory of Yangtze River Water Environment Ministry of Education College of Environmental Science and Engineering Tongji University||Shanghai Institute of Pollution Control and Ecological Security;

    National Engineering Research Center of Water Resources Efficient Utilization and Engineering Safety Hohai UniversityCollege of Environment Hohai UniversitySchool of Materials Engineering Changzhou Vocational Institute of Industry Technology;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 水生生物学;
  • 关键词

    Cell arrangement; Colony formation; Crowded cellular environment; CyanoHABs; Self-shading;

    机译:电池片排列;菌落形成;拥挤的蜂窝环境;氰基有害藻华;自着色;

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