Nanopatterns on silica scales of Mallomonas (Chrysophyceae, Stramenopiles): Unraveling UV resistance potential and diverse response to UVA and UVB radiation

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-09-16 DOI:10.1111/jpy.13496
Yvonne Nemcova, Petr Knotek, Iva Jadrná, Ivana Černajová, Pavel Škaloud
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Abstract

Mallomonas thrive primarily in freshwaters and dominate plankton communities, especially in oligotrophic waters. The cells have a siliceous cell covering of regularly arranged scales. Despite their ecological importance, the intricate structure and evolutionary significance of their silica scales are still unexplored. We investigated the nanopatterns on the scales and hypothesized that they may play a role in UV shielding. UVA and UVB exposure experiments were performed with 20 Mallomonas species, categorized into four groups based on the nanopattern of the scales (plain-scaled, meshed, striated, and papilliferous group); a fifth group consisted of the species that have extremely thick, robust scales regardless of the nanopattern. We revealed that thick scales were associated with enhanced UVB resistance, suggesting a protective role. No significant differences in UVA response were observed among the groups, except for the meshed group, which showed lower resistance, likely due to the less regular pattern on the shield. In conclusion, the scale case, composed of sufficiently silicified scales, provides effective UV protection in freshwater environments, regardless of the particular nanopattern. In increased UVB radiation, the thickness of the scales plays role. Contrary to expectations, cell size and phylogeny do not strongly predict UV resistance. The study highlights the diverse UV responses of Mallomonas, but further studies are needed to understand the role of scales/nanopatterns in the ecological adaptations of the species.

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绿藻(菊形目,石莲花科)硅鳞片上的纳米图案:揭示抗紫外线潜力以及对 UVA 和 UVB 辐射的不同反应。
野单胞菌主要在淡水中生长,在浮游生物群落中占主导地位,尤其是在低营养水域。它们的细胞有一层由规则排列的鳞片组成的硅质细胞膜。尽管它们在生态学上非常重要,但其硅质鳞片的复杂结构和进化意义仍有待探索。我们研究了鳞片上的纳米图案,并假设它们可能在紫外线屏蔽中发挥作用。根据鳞片的纳米图案,我们将20种毛霉分为四组(平鳞组、网状组、条纹组和乳头状组);第五组包括无论鳞片的纳米图案如何,鳞片都非常厚而坚固的物种。我们发现,厚鳞片与紫外线吸收能力增强有关,这表明鳞片具有保护作用。各组之间对 UVA 的反应没有明显差异,只有网状组的抗性较低,这可能是由于防护罩上的图案不太规则。总之,无论采用哪种特定的纳米图案,由充分硅化的鳞片组成的鳞片箱都能在淡水环境中提供有效的紫外线防护。在紫外线辐射增加的情况下,鳞片的厚度起了作用。与预期相反,细胞大小和系统发育并不能有力地预测抗紫外线能力。这项研究强调了野单胞菌对紫外线的不同反应,但要了解鳞片/纳米图案在物种生态适应中的作用,还需要进一步的研究。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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