首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >UV-A screening in Cladophora sp. lowers internal UV-A availability and photoreactivation as compared to non-UV screening in Ulva intestinalis
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UV-A screening in Cladophora sp. lowers internal UV-A availability and photoreactivation as compared to non-UV screening in Ulva intestinalis

机译:紫外线 - 筛选术中的筛选。 与Ulva Intestinalis的非UV筛选相比,降低内部UV-A可用性和光敏性

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摘要

In the Baltic Sea, two co-occurring green macroalgae Cladophora sp. and Ulva intestinalis grow in the upper eulittoral. Due to regular and high sunlight exposure in their habitat, both species need resistance mechanisms to protect themselves against ultraviolet-B (UV-B)-induced DNA damage. While Cladophora sp. possesses efficient screening of UV-B and ultraviolet-A (UV-A) radiation, U. intestinalis was recently shown to have higher DNA repair by UVA-driven photoreactivation than Cladophora sp. [F. Pescheck and W. Bilger, Mar. Biol., 2018, 165, 132]. In the present study, the hypothesis that the screening of UV-A radiation limits internal UV-A availability for photoreactivation in Cladophora sp. was tested. Both species had identical and much lower fractions of damaged DNA when sampled in situ under direct sunlight as expected based on a photophysical prediction. To quantify the effect of UV-A screening spectrally and physiologically, in vivo UV screening spectra were determined and the UV-A photon flux dependency of photoreactivation was investigated for both species. Identical intrinsic photoreactivation rates were revealed by the applied correction for internal UV-A photon flux density and under irradiation with visible radiation which is not screened by the UV absorbing compounds in Cladophora sp. Natural sunlight was weighted with in vivo action spectra for DNA damage induction and light-dependent repair. The resulting spectrum was further corrected for the apparent UV screening spectra of both species to calculate the species-specific internal ratios of DNA damaging and photoreactivating photons. This photophysical modelling improves the understanding of UV damage and tolerance mechanisms in the two co-occurring green macroalgae under solar irradiation.
机译:在波罗的海,两种共同发生的绿色宏观甘油氏菌。和Ulva intestinalis在上部eultoral中生长。由于其栖息地的常规和高阳光照射,两种物种需要抵抗机制来保护自己免受紫外-b(UV-B)引起的DNA损伤。而cladophora sp。具有高效筛选UV-B和紫外-A(UV-A)辐射,U. intestmalinis最近显示通过UVA驱动的光敏激活比Cladophora Sp具有更高的DNA修复。 [F。 Pescheck和W. Bilger,Mar. Biol.,2018,165,132]。在本研究中,UV-A辐射筛选的假设限制了内部UV-A可用性在Cladophora SP中的光敏性发生性。经过测试。当基于光物理预测的预期,在原位上采样时,两种物种在原位上采样时具有相同的损坏DNA。为了测量UV-A筛选的疗效和生理学上,测定了体内UV筛选光谱,对两个物种研究了光敏激活的UV-A光子通量依赖性。通过对内部UV-A光子通量密度的施加校正和具有可见辐射的照射的施加校正揭示了相同的固有光敏率,其未被Cladophora SP中的UV吸收化合物筛选。在体内动作光谱中加权自然阳光,用于DNA损伤诱导和轻依赖性修复。进一步校正所得频谱,用于两种物种的表观UV筛选光谱,以计算DNA损伤和光敏光子的物种特异性内部比。这种光物理建模在太阳照射下改善了两种共同发生的绿色大草原中紫外线损伤和耐受机制的理解。

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