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Huffine, C. A.

Publications and source records attributed to Huffine, C. A..

2 recordsLinked to original sources

Cyanobacteria form a procarboxysome-like structure in response to high CO2

Fixing 25% of CO2 globally, cyanobacteria are integral to climate change efforts. The cyanobacterial CO2 concentrating mechanism (CCM) features the carboxysome, a bacterial microcompartment which houses their CO2 fixing machinery. The proteinaceous shell of the carboxysome restricts diffusion of CO2, both inward and outward. While necessary for CCM function in air (0.04% CO2), when grown in high CO2 levels (3% CO2) representative of early earth, the shell would harmfully limit CO2 fixation. To understand how carboxysomes change form and function in response to increased CO2 conditions, we used a Grx1-roGFP2 redox sensor and single cell timelapse fluorescence microscopy to track subcellular redox states of Synechococcus sp. PCC 7002 grown in air or 3% CO2. Comparing different levels of compartmentalization, we targeted the cytosol, a shell-less carboxysomal assembly intermediate called the procarboxysome, and the carboxysome. The carboxysome redox state was dynamic and, under 3% CO2, procarboxysome-like structures formed and mirrored cytosolic redox states, indicating that a more permeable shell architecture may be favorable when [CO2] is high. This work represents a step in understanding how cyanobacteria respond to changing CO2 concentrations and the selective forces driving carboxysome evolution.

biochemistry↗

Molecular phylogeny of Puerto Rico Bank dwarf geckos (Squamata: Sphaerodactylidae: Sphaerodactylus)

AO_SCPLOWBSTRACTC_SCPLOWThe genus Sphaerodactylus is a very species-rich assemblage of sphaerodactylid lizards that has undergone a level of speciation in parallel to that of the well-known Anolis lizards. Nevertheless, molecular phylogenetic research on this group consists of a handful of smaller studies of regional focus (e.g., western Puerto Rico, the Lesser Antilles) or large-scale analyses based on relatively limited sequence data. Few medium-scale multi-locus studies exist-- for example, studies that encompass an entire radiation on an island group. Building upon previous work done in Puerto Rican Sphaerodactylus, we performed multi-locus sampling of Sphaerodactylus geckos from across the Puerto Rico Bank. We then used these data for phylogeny estimation with near-complete taxon sampling. We focused on sampling the widespread nominal species S. macrolepis and in so doing, we uncovered a highly divergent and morphologically distinct lineage of Sphaerodactylus macrolepis from Puerto Rico, Culebra, and Vieques islands, which we recognize as S. grandisquamis (Stejneger, 1904) on the basis of molecular and morphological characters. S. grandisquamis co-occurs with S. macrolepis only on Culebra Island but is highly genetically differentiated and morphologically distinct. Sphaerodactylus macrolepis is now restricted to the eastern Puerto Rico Bank, from Culebra east through the Virgin Islands and including the topotypic population on St. Croix. We include additional discussion of the evolutionary history and historical biogeography of the Sphaerodactylus of the Puerto Rican Bank in the context of these new discoveries.

evolutionary biology↗