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Physiological and Biochemical Response of the Photosynthetic Apparatus of Two Marine Diatoms to Fe Stress.

机译:两种海洋硅藻光合设备对铁胁迫的生理生化响应。

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摘要

Flavodoxin is a small electron-transfer protein capable of replacing ferredoxin during periods of Fe deficiency. When evaluating the suitability of flavodoxin as a diagnostic indicator for Fe limitation of phytoplankton growth, we examined its expression in two marine diatoms we cultured using trace-metal-buffered medium. Thalassio-sira weissflogii and Phaeodactylum tricornutum were cultured in ethylenediaminetetraacetic acid-buffered Sargasso Sea water containing from 10 to 1000 nM added Fe. Trace-metal-buffered cultures of each diatom maintained high growth rates across the entire range of Fe additions. Similarly, declines in chlorophyll/cell and in the ratio of photosystem II variable-to-maximum fluorescence were negligible (P. tricornutum) to moderate (T. weissflogii; 54% decline in chlorophyll/cell and 22% decrease in variable-to-maximum fluorescence). Moreover, only minor variations in photosynthetic parameters were observed across the range of additions. In contrast, flavodoxin was expressed to high levels in low-Fe cultures. Despite the inverse relationship between flavodoxin expression and Fe content of the medium, its expression was seemingly independent of any of the indicators of cell physiology that were assayed. It appears that flavodoxin is expressed as an early-stage response to Fe stress and that its accumulation need not be intimately connected to limitations imposed by Fe on the growth rate of these diatoms.
机译:黄素毒素是一种小型的电子转移蛋白,能够在铁缺乏时替代铁氧还蛋白。当评估黄素毒素作为浮游植物生长的铁限制铁的诊断指标的适用性时,我们检查了其在我们使用痕量金属缓冲液培养的两个海洋硅藻中的表达。 Thalassio-sira weissflogii和Phaeodactylum tricornutum在乙二胺四乙酸缓冲的Sargasso海水中培养,海水中含有10至1000 nM的铁。每个硅藻的痕量金属缓冲培养物在整个Fe添加范围内均保持高生长速率。同样,叶绿素/细胞的下降以及光系统II的可变荧光与最大荧光之比的下降(微角山茱。)至中度(T. weissflogii)可忽略不计;叶绿素/细胞下降54%,可变光通量下降22%。最大荧光)。此外,在添加范围内仅观察到光合作用参数的微小变化。相反,黄素毒素在低铁培养物中高水平表达。尽管黄酮毒素表达与培养基中Fe含量成反比关系,但其表达似乎与所测定的细胞生理学指标无关。看来黄酮毒素被表达为对铁胁迫的早期反应,并且其积累不必与铁对这些硅藻的生长速率施加的限制密切相关。

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