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首页> 外文期刊>Aquaculture >Effects of reduced carbon supply and sunlight on photosynthetic and antioxidant activities of Gracilariopsis lemaneiformis, and subsequent changes of these activities under recovery conditions with different salinities
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Effects of reduced carbon supply and sunlight on photosynthetic and antioxidant activities of Gracilariopsis lemaneiformis, and subsequent changes of these activities under recovery conditions with different salinities

机译:碳供应和阳光降低对Gracilariopsis Lemaneifienis光合作用和抗氧化活性的影响,以及不同盐度在恢复条件下这些活动的随后变化

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摘要

Gracilariopsis lemaneiformis usually suffers reduced carbon supply and irradiance due to increasing density. Moreover, salinity also frequent changes at cultivation field. G. lemaneiformis thalli were cultured under ambient carbon (390 mu atm) and decreased carbon (20 mu atm) supply, with ambient sunlight and decreased sunlight conditions, and subsequent cultivation of the above four thalli under ambient carbon and sunlight with ambient (32) and low (21) salinity. The study aimed to investigate how the decreased carbon supply and sunlight conditions affected the photosynthesis and antioxidant activity, and the effects of salinity on their changes of these algae under the recovery conditions. Decreased carbon in culture reduced the maximal quantum yield of photosystem II (F-v/F-m) and non-photochemical quenching (NPQ). The F-v/F-m NPQ, superoxide dismutase (SOD) and catalase (CAT) activity in the thalli grown at ambient sunlight condition were greater than the thalli grown at decreased sunlight. However, reduced carbon and lowered light had no synergistic inhibitory effect on photosynthetic and antioxidant activities of the algae. After the thalli were continuous cultured, the photosynthetic activity and antioxidant enzyme activity were similar between the two salinities. The results indicated that the effects of decreased carbon and sunlight on the photosynthetic and antioxidant activities of G. lemaneiformis were reversible and their recovery was also achieved under low salinity. Therefore, we suggest that it was a possible new model for G. lemaneiformis maricultivation that some algal fragments were leaved in polyethylene rope as "seeds" for the next batch of G. lemaneiformis during the algal harvest.
机译:Gracilariopsis lemaneiformis通常由于密度增加而遭受降低的碳供应和辐照度。此外,盐度也经常在栽培领域发生变化。 G.Lemaneiformis Thalli在环境碳(390μmatm)下培养,减少碳(20μmatm)供应,环境阳光和阳光条件下降,随后在环境碳和阳光下培养上述四个Thalli(32)和低(21)盐度。该研究旨在调查如何降低的碳源和阳光条件影响光合作用和抗氧化活性,以及​​盐度在回收条件下对这些藻类的变化的影响。培养中的碳减少降低了光系统II(F-V / F-M)和非光化学猝灭(NPQ)的最大量子产率。在环境阳光条件下的Zhalli中生长的F-V / F-M NPQ,超氧化物歧化酶(SOD)和过氧化氢酶(猫)活性大于在下降阳光下的塔尔生长。然而,降低的碳和降低的光对藻类的光合和抗氧化活性没有协同抑制作用。在连续培养之后,两种盐度之间的光合活性和抗氧化酶活性相似。结果表明,碳和阳光下降对G.Lemaneiformis的光合作用和抗氧化活性的影响是可逆的,并且在低盐度下也实现了它们的恢复。因此,我们认为,它是G.Lemaneiformis撒布的新模型,即在藻类收获期间,在聚乙烯绳中携带一些藻类片段作为“种子”。

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