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Fe limitation decreases transcriptional regulation over the diel cycle in the model diatom Thalassiosira pseudonana

机译:铁的限制降低了模型硅藻Thalassiosira pseudonana中diel循环的转录调控

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摘要

Iron (Fe) is an important growth factor for diatoms and its availability is further restricted by changes in the carbonate chemistry of seawater. We investigated the physiological attributes and transcriptional profiles of the diatom Thalassiosira pseudonana grown on a day: night cycle under different CO2/pH and iron concentrations, that in combination generated available iron (Fe’) concentrations of 1160, 233, 58 and 12 pM. We found the light-dark conditions to be the main driver of transcriptional patterns, followed by Fe’ concentration and CO2 availability, respectively. At the highest Fe’ (1160 pM), 55% of the transcribed genes were differentially expressed between day and night, whereas at the lowest Fe’ (12 pM), only 28% of the transcribed genes displayed comparable patterns. While Fe limitation disrupts the diel expression patterns for genes in most central metabolism pathways, the diel expression of light- signaling molecules and glycolytic genes was relatively robust in response to reduced Fe’. Moreover, we identified a non-canonical splicing of transcripts encoding triose-phosphate isomerase, a key-enzyme of glycolysis, generating transcript isoforms that would encode proteins with and without an active site. Transcripts that encoded an active enzyme maintained a diel expression at low Fe’, while transcripts that encoded the non-active enzyme lost the diel expression. This work illustrates the interplay between nutrient limitation and transcriptional regulation over the diel cycle. Considering that future ocean conditions will reduce the availability of Fe in many parts of the oceans, our work identifies some of the regulatory mechanisms that may shape future ecological communities.
机译:铁(Fe)是硅藻的重要生长因子,其可用性进一步受到海水碳酸盐化学变化的限制。我们研究了一天中生长的硅藻拟藻(Thalassiosira pseudonana)的生理属性和转录谱:在不同的CO2 / pH和铁浓度下的夜间循环,它们共同产生的有效铁(Fe')浓度为1160、233、58和12 pM。我们发现明暗条件是转录模式的主要驱动力,其次分别是Fe'的浓度和CO2的有效性。在最高Fe'(1160 pM)时,白天和夜晚之间转录的基因有55%的差异表达,而在最低Fe'(12 pM)时,只有28%的转录基因显示出可比的模式。 Fe的限制会破坏大多数中枢代谢途径中基因的diel表达模式,但光信号分子和糖酵解基因的diel表达对Fe'的减少反应相对较强。此外,我们确定了编码糖磷酸酶的关键酶磷酸三糖磷酸异构酶的转录物的非规范剪接,产生了可以编码具有和不具有活性位点的蛋白质的转录物同工型。编码活性酶的转录本在低Fe'下保持diel表达,而编码非活性酶的转录本失去diel表达。这项工作说明了营养限制和整个diel周期的转录调控之间的相互作用。考虑到未来的海洋条件会减少许多海洋中铁的可利用性,因此我们的工作确定了一些可能影响未来生态群落的调控机制。

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