Journal Article10.1073/pnas.2305495120
Pumping iron: A multi-omics analysis of two extremophilic algae reveals iron economy management
Lital Davidi,Sean D. Gallaher,Eyal Ben‐David,Samuel O. Purvine,Thomas Fillmore,Carrie Nicora,Rory J. Craig,Stefan Schmollinger,Sanja Roje,Crysten E. Blaby‐Haas,Robert P. Auber,Jennifer H. Wisecaver,Sabeeha Merchant +12 more
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TL;DR: High-quality genome and transcriptome assemblies of two extremophilic algae reveal unique iron economy management strategies, including multiple iron-uptake proteins, ferredoxin functions as a large iron reservoir, and proteomic changes that optimize photosynthesis under low-iron conditions.
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Abstract: Marine algae are responsible for half of the world's primary productivity, but this critical carbon sink is often constrained by insufficient iron. One species of marine algae, Dunaliella tertiolecta, is remarkable for its ability to maintain photosynthesis and thrive in low-iron environments. A related species, Dunaliella salina Bardawil, shares this attribute but is an extremophile found in hypersaline environments. To elucidate how algae manage their iron requirements, we produced high-quality genome assemblies and transcriptomes for both species to serve as a foundation for a comparative multiomics analysis. We identified a host of iron-uptake proteins in both species, including a massive expansion of transferrins and a unique family of siderophore-iron-uptake proteins. Complementing these multiple iron-uptake routes, ferredoxin functions as a large iron reservoir that can be released by induction of flavodoxin. Proteomic analysis revealed reduced investment in the photosynthetic apparatus coupled with remodeling of antenna proteins by dramatic iron-deficiency induction of TIDI1, which is closely related but identifiably distinct from the chlorophyll binding protein, LHCA3. These combinatorial iron scavenging and sparing strategies make Dunaliella unique among photosynthetic organisms.
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Structural Diversity in Eukaryotic Photosynthetic Light Harvesting.
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TL;DR: This review compares and contrast recently observed cryo-electron microscopy structures across photosynthetic eukaryotes to identify structural motifs that underlie various light-harvesting strategies, and discusses subtle monomer changes that result in macroscale reorganization of LHC oligomers.
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Elevated accumulation of lutein and zeaxanthin in a novel high-biomass strain Dunaliella sp. ZP-1 through EMS mutagenesis
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TL;DR: High-biomass Dunaliella sp. ZP-1 exhibits improved lutein and zeaxanthin production through EMS mutagenesis.
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Leaky ribosomal scanning enables tunable translation of bicistronic ORFs in green algae.
Marco Dueñas,Rory J. Craig,Sean D. Gallaher,Jeffrey L. Moseley,Sabeeha Merchant +4 more
- 25 Jul 2024
TL;DR: A combination of bioinformatic analysis and in vivo gene manipulation supports leaky ribosomal scanning as the primary mechanism for translation of multiple ORFs from bicistronic transcripts.
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