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Temperature Effects on the Growth Rates and Photosynthetic Activities of Symbiodinium Cells

机译:温度对共生素细胞生长速率和光合活性的影响

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Coral bleaching is caused by environmental stress and susceptibility to bleaching stress varies among types of coral. The physiological properties of the algal symbionts (Symbiodinium spp.), especially extent of damage to PSII and its repair capacity, contribute importantly to this variability in stress susceptibility. The objective of the present study was to investigate the relationship between the growth rates and photosynthetic activities of six cultured strains of Symbiodinium spp. (clades A, B, C, D, and F) at elevated temperature (33 °C). We also observed the recovery of photodamaged-PSII in the presence or absence of a chloroplast protein synthesis inhibitor (lincomycin). The growth rates and photochemical efficiencies of PSII (Fv/Fm) decreased in parallel at high temperature in thermally sensitive strains, B-K100 (clade B followed by culture name) and A-Y106, but not in a thermally tolerant strain, F-K102 and D-K111. In strains A-KB8 and C-Y103, growth declined markedly at high temperature, but Fv/Fm decreased only slightly. These strains may reallocate energy from growth to the repair of damaged photosynthetic machineries or protection pathways. Alternatively, since recoveries of photo-damaged PSII at 33 °C were modest in strains A-KB8 and C-Y103, thermal stressing of other metabolic pathways may have reduced growth rates in these two strains. This possibility should be explored in future research efforts.
机译:珊瑚白化是由环境压力引起的,对白化压力的敏感性因珊瑚类型而异。藻类共生体(Symbiodinium spp。)的生理特性,尤其是对PSII的破坏程度及其修复能力,对应激敏感性的这种变化起着重要作用。本研究的目的是研究6种共生菌属菌株的生长速率与光合活性之间的关系。 (A,B,C,D和F包层)在高温(33°C)下。我们还观察到在存在或不存在叶绿体蛋白合成抑制剂(林可霉素)的情况下光损伤的PSII的恢复。在热敏感菌株B-K100中,PSII(F v / F m )的生长速率和光化学效率平行降低,B-K100(B种,其后称培养物名称) )和A-Y106,但不是耐热应变F-K102和D-K111。在高温下,菌株A-KB8和C-Y103的生长明显下降,但F v / F m 仅略有下降。这些菌株可能从生长中重新分配能量,以修复受损的光合作用机制或保护途径。或者,由于菌株A-KB8和C-Y103在33°C下光损伤PSII的回收率不高,因此其他代谢途径的热应激可能会降低这两个菌株的生长速率。在将来的研究工作中应探索这种可能性。

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