Oedogonium 光热适应引起的生化变化以及对光合生长和生物质利用的相关影响

IF 4.6 2区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
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引用次数: 0

摘要

淡水丝藻具有废水生物修复和生物产品生产的潜力。本研究调查了生长辐照度(300 ± 25 μmol.m-2.s-1,13:11 暗:光周期或 775 ± 25 μmol.m-2.s-1,8:16 暗:光周期)和温度(15 ± 1 或 25 ± 1 °C)在适应过程中对 Oedogonium 的适应性生物化学和光合作用活性的单独和综合影响,较高和较低水平分别代表澳大利亚墨尔本夏季和冬季的平均室外条件。光保护色素在高辐照度或高温度下都会上调,而当两种胁迫因素同时存在时,叶绿素含量也会降低。保护性适应的上调略微降低了光合效率,而在高温和高辐照度条件下,叶绿素的减少更显著地影响了光合效率。在较高的辐照度和温度下,极性脂质含量从占总脂质含量的约 10% 增加到约 30%,蛋白质含量减少约 10%,淀粉含量增加 30%,这对生物量利用产生了影响。长期适应导致的这些生化成分变化表明,由于自遮光的存在,稳定的浮游丝藻垫可能会出现成分分层。此外,藻垫上层产生的遮光作用有望进一步保护下层的生物量免受光氧化压力的影响。研究结果揭示了季节性生长条件和丝状藻垫深度的变化对藻类组成和生产力的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Biochemical changes due to photothermal acclimation of Oedogonium and associated implications for photosynthetic growth and biomass utilisation

Biochemical changes due to photothermal acclimation of Oedogonium and associated implications for photosynthetic growth and biomass utilisation

Freshwater filamentous algae have potential for wastewater bioremediation and bioproduct generation. This study investigated the separate and combined effects of growth irradiance regime (300 ± 25 μmol.m−2.s−1 with 13:11 dark:light cycle or 775 ± 25 μmol.m−2.s−1 with 8:16 dark:light cycle) and temperature (15 ± 1 or 25 ± 1 °C) during acclimation on the adaptive biochemistry and photosynthetic activity of Oedogonium with the higher and lower levels representing average outdoor conditions in summer and winter in Melbourne, Australia, respectively. Photoprotective pigments were upregulated in response to either high irradiance regime or temperature, while the chlorophyll content was also reduced when both stressors were combined. The upregulation of protective adaptations slightly lowered photosynthetic efficiency, which was more dramatically impaired by the reduced chlorophyll at high temperature and irradiance. The polar lipid content increased from ~10% to ~30% of total lipid content, the protein content decreased by ~10% and the starch content increased by 30% in response to higher irradiance and temperature, with implications for biomass utilisation. These changes in biochemical composition due to long-term acclimation suggests the potential for compositional stratification in stable floating filamentous algae mats due to the presence of self-shading. Further, the shading created by the upper layers in the mat can be expected to provide further protection to the biomass at the lower levels against photooxidative stress. The results reveal the impact of variations on seasonal growth conditions and filamentous mat depth on the composition and productivity of the algae.

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来源期刊
Algal Research-Biomass Biofuels and Bioproducts
Algal Research-Biomass Biofuels and Bioproducts BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
9.40
自引率
7.80%
发文量
332
期刊介绍: Algal Research is an international phycology journal covering all areas of emerging technologies in algae biology, biomass production, cultivation, harvesting, extraction, bioproducts, biorefinery, engineering, and econometrics. Algae is defined to include cyanobacteria, microalgae, and protists and symbionts of interest in biotechnology. The journal publishes original research and reviews for the following scope: algal biology, including but not exclusive to: phylogeny, biodiversity, molecular traits, metabolic regulation, and genetic engineering, algal cultivation, e.g. phototrophic systems, heterotrophic systems, and mixotrophic systems, algal harvesting and extraction systems, biotechnology to convert algal biomass and components into biofuels and bioproducts, e.g., nutraceuticals, pharmaceuticals, animal feed, plastics, etc. algal products and their economic assessment
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