Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Transcriptome response of diatom Skeletonema marinoi to lower temperature

View through CrossRef
AbstractTemperature is an important environmental factor for phytoplankton. Phytoplankton growth, metabolism, biodiversity, productivity, and distribution are influenced by temperature-driven nutrient stratification and mixing, as well as species’ optimal growth temperatures. There have been a number of studies focused on physiological and biochemical mechanisms of environmental–biological interactions in diatoms, yet the underlying transcriptional regulators remain limited. Here, we performed an RNA-seq-based gene expression analysis to explore the Skeletonema marinoi (isolated from Jiaozhou Bay of Qingdao, 36.13°N, 120.16°E on July 5th, 2013) cellular responses induced by low temperature (12 °C). Digital gene expression profiling of S. marinoi generated 20,319 unigenes, of which 573 differentially expressed genes appeared in the low-temperature treatment group. According to GO and KEGG enrichment analysis, different genes were involved in ten metabolic and biosynthesis pathways: ribosome, lipid, porphyrin, and chlorophyll metabolism showed strong transcriptional cold tolerances. The regulation of genes related to translation processes (e.g., pentatricopeptide repeat), fatty acid metabolism (e.g., acyl-CoA synthetase), and photosynthesis (e.g., porphyrin enzymes) provides new molecular-level insight into cold stress responses in eukaryotic marine phytoplankton. Our study suggests that this Skeletonema species could be a potential candidate for understanding the fate of thermo-sensitive diatom communities and oceanic ecosystems facing climate change.
Title: Transcriptome response of diatom Skeletonema marinoi to lower temperature
Description:
AbstractTemperature is an important environmental factor for phytoplankton.
Phytoplankton growth, metabolism, biodiversity, productivity, and distribution are influenced by temperature-driven nutrient stratification and mixing, as well as species’ optimal growth temperatures.
There have been a number of studies focused on physiological and biochemical mechanisms of environmental–biological interactions in diatoms, yet the underlying transcriptional regulators remain limited.
Here, we performed an RNA-seq-based gene expression analysis to explore the Skeletonema marinoi (isolated from Jiaozhou Bay of Qingdao, 36.
13°N, 120.
16°E on July 5th, 2013) cellular responses induced by low temperature (12 °C).
Digital gene expression profiling of S.
marinoi generated 20,319 unigenes, of which 573 differentially expressed genes appeared in the low-temperature treatment group.
According to GO and KEGG enrichment analysis, different genes were involved in ten metabolic and biosynthesis pathways: ribosome, lipid, porphyrin, and chlorophyll metabolism showed strong transcriptional cold tolerances.
The regulation of genes related to translation processes (e.
g.
, pentatricopeptide repeat), fatty acid metabolism (e.
g.
, acyl-CoA synthetase), and photosynthesis (e.
g.
, porphyrin enzymes) provides new molecular-level insight into cold stress responses in eukaryotic marine phytoplankton.
Our study suggests that this Skeletonema species could be a potential candidate for understanding the fate of thermo-sensitive diatom communities and oceanic ecosystems facing climate change.

Related Results

Application of a Diatom Transfer Function to Quantitative Paleoclimatic Reconstruction — A Case Study of Yunlong Lake, Southwest China
Application of a Diatom Transfer Function to Quantitative Paleoclimatic Reconstruction — A Case Study of Yunlong Lake, Southwest China
Although diatom records from lake sediments have been used for quantitative paleoclimatic reconstruction, their validity and sensitivity have rarely been tested rigorously. At Yunl...
Insights into the Light Response of Skeletonema marinoi: Involvement of Ovothiol
Insights into the Light Response of Skeletonema marinoi: Involvement of Ovothiol
Diatoms are one of the most widespread groups of microalgae on Earth. They possess extraordinary metabolic capabilities, including a great ability to adapt to different light condi...
Deceptive ecological status of urban streams and rivers—evidence from diatom indices
Deceptive ecological status of urban streams and rivers—evidence from diatom indices
AbstractUrbanization directly affects the ecological status of streams and rivers: Their beds and drainage basins are often heavily transformed and their habitat conditions disturb...
Interactive effects of metal and metalloids on diatom motility and protoplasmic conditions
Interactive effects of metal and metalloids on diatom motility and protoplasmic conditions
Abstract Metal and metalloid contamination in the waterbodies and its undesirable effect on the residing diatom communities is a problem of global concern. In the present s...
Antioxidant and Photoprotection Networking in the Coastal Diatom Skeletonema marinoi
Antioxidant and Photoprotection Networking in the Coastal Diatom Skeletonema marinoi
Little is known on the antioxidant activity modulation in microalgae, even less in diatoms. Antioxidant molecule concentrations and their modulation in microalgae has received litt...

Back to Top