2018
DOI: 10.1038/s41598-018-26331-6
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Raphidocelis subcapitata (=Pseudokirchneriella subcapitata) provides an insight into genome evolution and environmental adaptations in the Sphaeropleales

Abstract: The Sphaeropleales are a dominant group of green algae, which contain species important to freshwater ecosystems and those that have potential applied usages. In particular, Raphidocelis subcapitata is widely used worldwide for bioassays in toxicological risk assessments. However, there are few comparative genome analyses of the Sphaeropleales. To reveal genome evolution in the Sphaeropleales based on well-resolved phylogenetic relationships, nuclear, mitochondrial, and plastid genomes were sequenced in this s… Show more

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Cited by 60 publications
(42 citation statements)
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“…C. zofingiensis, which was placed in Chlorella, Muriella, and Mychonastes before its current placement into Chromochloris (Fucikova and Lewis, 2012), is an ;4-mm unicellular, haploid, coccoid alga with a mitochondrial network and a single starch-containing chloroplast (Roth et al, 2017). In contrast to C. reinhardtii, C. zofingiensis can grow with Glc as its sole carbon source, and has an expanded number of hexose transporter genes, suggesting the ability to acclimate to a wide variety of environmental conditions (Suzuki et al, 2018). Under specific conditions such as heterotrophy, nitrogen deprivation, or high light, C. zofingiensis accumulates high amounts of the valuable secondary ketocarotenoid astaxanthin and biofuel precursors (Breuer et al, 2012;Liu et al, 2014;Mulders et al, 2014;Huang et al, 2016;Zhang et al, 2016;Roth et al, 2017).…”
Section: Introductionmentioning
confidence: 99%
“…C. zofingiensis, which was placed in Chlorella, Muriella, and Mychonastes before its current placement into Chromochloris (Fucikova and Lewis, 2012), is an ;4-mm unicellular, haploid, coccoid alga with a mitochondrial network and a single starch-containing chloroplast (Roth et al, 2017). In contrast to C. reinhardtii, C. zofingiensis can grow with Glc as its sole carbon source, and has an expanded number of hexose transporter genes, suggesting the ability to acclimate to a wide variety of environmental conditions (Suzuki et al, 2018). Under specific conditions such as heterotrophy, nitrogen deprivation, or high light, C. zofingiensis accumulates high amounts of the valuable secondary ketocarotenoid astaxanthin and biofuel precursors (Breuer et al, 2012;Liu et al, 2014;Mulders et al, 2014;Huang et al, 2016;Zhang et al, 2016;Roth et al, 2017).…”
Section: Introductionmentioning
confidence: 99%
“…Cells were collected by gentle centrifugation. DNA was extracted as described in Suzuki et al 48 . The paired-end library was constructed using a TruSeq DNA PCR-free Kit (lllumina Inc., San Diego, CA, USA), according to the manufacturer's protocol.…”
Section: Methods For Genome and Transcriptome Analysismentioning
confidence: 99%
“…(Colbourne et al 2005;Orsini et al 2016), Hyalella azteca (Christie et al 2018;Poynton et al 2018), Chironomus spp. (Herrero et al 2017;Mantilla et al 2018) • phytoplankton-e.g., Raphidocelis subcapitata (Suzuki et al 2018) Below, we present a summary of 'Omic tools and data sets available for fish, invertebrates, and algal species associated with the Bay−Delta.…”
Section: 'Omic Tools and Data Sets Of Direct Relevance To The Bay−deltamentioning
confidence: 99%
“…Numerous phytoplankton species have been used in freshwater and marine algal toxicity tests. One of the ecotoxicological standards for which 'Omic data exists (Suzuki et al 2018) is Raphidocelis subcapitata (= Selenastrum capricornutum; = Pseudokirchneriella subcapitata). Advances in 'Omic technologies, as detailed above, now provide the capacity with which to obtain genomic information from a multitude of species for which there has been no prior genomic data.…”
Section: Phytoplakton Speciesmentioning
confidence: 99%