Crawling under the radar: Two novel Paulinella species expand knowledge about the ecology and evolution of a primary plastid‐containing amoeba lineage

The genus Paulinella represents a rare, independent case of primary endosymbiosis, providing a unique system to study the early stages of organelle evolution. Here, we expand current understanding of primary plastid endosymbiosis through the discovery and characterization of two novel photosynthetic amoebae, Paulinella marae sp. nov. and Paulinella murrayi sp. nov., isolated from a brackish water habitat in North Carolina, United States. Complete chromatophore genomes and mitochondrial data revealed conserved gene content but notable structural variation, including genome rearrangements and inversion events. Phylogenetic analyses uncovered significant discordance between nuclear and organelle datasets, likely driven by substitution saturation, limited taxon sampling, and differing evolutionary signals across loci. Ecological observations over multiple years indicate that both species are in low abundance but consistently present, and when coupled with hobbyist data, support the hypothesis that photosynthetic Paulinella species are globally distributed yet under-sampled. These results increase known species diversity within the clade from four to six and highlight the importance of integrating field-based observations with genomic approaches. Overall, this work advances Paulinella as a model for studying ongoing primary endosymbiosis, lineage divergence, and the ecological strategies of low-abundance microbial eukaryotes.

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Publication Details

Journal
Journal of Phycology
Published
2026-09-04
DOI
https://doi.org/10.1111/jpy.70230
Primary Topic
Protist diversity and phylogeny
Type
article
Field-Weighted Citation Impact
0.00

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article

Crawling under the radar: Two novel Paulinella species expand knowledge about the ecology and evolution of a primary plastid‐containing amoeba lineage

Andrew Willoughby, Julia Van Etten, John A. Burns, Duckhyun Lhee et al.
Journal of Phycology
Protist diversity and phylogeny
article

Crawling under the radar: Two novel Paulinella species expand knowledge about the ecology and evolution of a primary plastid‐containing amoeba lineage

Andrew Willoughby, Julia Van Etten, John A. Burns, Duckhyun Lhee, Debashish Bhattacharya, Robin S. Sleith, Timothy G. Stephens, Hwan Su Yoon, Erin Chille, Sungpil Han
article en

Abstract

The genus Paulinella represents a rare, independent case of primary endosymbiosis, providing a unique system to study the early stages of organelle evolution. Here, we expand current understanding of primary plastid endosymbiosis through the discovery and characterization of two novel photosynthetic amoebae, Paulinella marae sp. nov. and Paulinella murrayi sp. nov., isolated from a brackish water habitat in North Carolina, United States. Complete chromatophore genomes and mitochondrial data revealed conserved gene content but notable structural variation, including genome rearrangements and inversion events. Phylogenetic analyses uncovered significant discordance between nuclear and organelle datasets, likely driven by substitution saturation, limited taxon sampling, and differing evolutionary signals across loci. Ecological observations over multiple years indicate that both species are in low abundance but consistently present, and when coupled with hobbyist data, support the hypothesis that photosynthetic Paulinella species are globally distributed yet under-sampled. These results increase known species diversity within the clade from four to six and highlight the importance of integrating field-based observations with genomic approaches. Overall, this work advances Paulinella as a model for studying ongoing primary endosymbiosis, lineage divergence, and the ecological strategies of low-abundance microbial eukaryotes.

Journal of Phycology
Rutgers, The State University of New Jersey (US), Duke University (US), Bigelow Laboratory for Ocean Sciences (US), University of Maryland, College Park (US), Woods Hole Oceanographic Institution (US), Sungkyunkwan University (KR)
National Science Foundation, National Aeronautics and Space Administration, U.S. Department of Agriculture, National Research Foundation, Ministry of Oceans and Fisheries, National Research Foundation of Korea, Korea Institute of Marine Science and Technology promotion, National Institute of Food and Agriculture
Life in Land
Openalex Percentile: Top 17%
Protist diversity and phylogeny
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