Christopher J. Jackson

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2011-2014 School of Biosciences University of Melbourne, Australia 
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"Christopher Jackson"
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Publications

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Russell S, Jackson C, Reyes-Prieto A. (2020) High Sequence Divergence but Limited Architectural Rearrangements in Organelle Genomes of Cyanophora (Glaucophyta) Species. The Journal of Eukaryotic Microbiology
Repetti SI, Jackson CJ, Judd LM, et al. (2020) The inflated mitochondrial genomes of siphonous green algae reflect processes driving expansion of noncoding DNA and proliferation of introns. Peerj. 8: e8273
Figueroa-Martinez F, Jackson C, Reyes-Prieto A. (2019) Plastid Genomes from Diverse Glaucophyte Genera Reveal a Largely Conserved Gene Content and Limited Architectural Diversity. Genome Biology and Evolution. 11: 174-188
Jackson C, Knoll AH, Chan CX, et al. (2018) Plastid phylogenomics with broad taxon sampling further elucidates the distinct evolutionary origins and timing of secondary green plastids. Scientific Reports. 8: 1523
Saunders GW, Jackson C, Salomaki ED. (2017) Phylogenetic analyses of transcriptome data resolve familial assignments for genera of the red-algal Acrochaetiales-Palmariales Complex (Nemaliophycidae). Molecular Phylogenetics and Evolution
Verbruggen H, Marcelino VR, Guiry MD, et al. (2017) Phylogenetic position of the coral symbiont Ostreobium (Ulvophyceae) inferred from chloroplast genome data. Journal of Phycology
Marcelino VR, Cremen MC, Jackson CJ, et al. (2016) Evolutionary dynamics of chloroplast genomes in low light: a case study of the endolithic green alga Ostreobium quekettii. Genome Biology and Evolution
Jackson C, Clayden S, Reyes-Prieto A. (2015) The Glaucophyta: the blue-green plants in a nutshell Acta Societatis Botanicorum Poloniae. 84: 149-165
Jackson CJ, Reyes-Prieto A. (2014) The mitochondrial genomes of the glaucophytes Gloeochaete wittrockiana and Cyanoptyche gloeocystis: multilocus phylogenetics suggests a monophyletic archaeplastida. Genome Biology and Evolution. 6: 2774-85
Chong J, Jackson C, Kim JI, et al. (2014) Molecular markers from different genomic compartments reveal cryptic diversity within glaucophyte species. Molecular Phylogenetics and Evolution. 76: 181-8
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