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绿色裸藻类系统发育研究进展

姜小蝶 李水仙 王能灿 朱为菊 王全喜 庞婉婷

水生生物学报2026,Vol.50Issue(9):204-216,13.
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水生生物学报2026,Vol.50Issue(9):204-216,13.DOI:10.3724/1000-3207.2026.2026.0092

绿色裸藻类系统发育研究进展

RESEARCH ADVANCES ON THE PHYLOGENY OF GREEN EUGLENOIDS

姜小蝶 1李水仙 1王能灿 1朱为菊 1王全喜 2庞婉婷2

作者信息

  • 1. 琼台师范学院理学院,热带生物多样性与资源利用实验室,海口 571127
  • 2. 上海师范大学生命科学学院,上海 200234
  • 折叠

摘要

Abstract

Green euglenoids are a freshwater group with photosynthetic autotrophic ability in the phylum Euglenophyta,with over 1000 species reported globally.They possess both ecological indicator value(as typical indicator organisms for eutrophic water bodies)and economic value(with high-protein and high-nutrition characteristics,and are widely used in food,feed,and fertilizers).Before the 20th century,their classification mainly relied on classic morphological indicators.However,the morphological similarity of single-celled algae and the unique euglenoid movement made species identification difficult,leading to frequent duplicate reports of the same species and considerable confusion in the classification system.Since the 21st century,phylogenetic studies based on molecular markers have promoted the reconstruction of the classification system.Molecular evidence clearly shows that green euglenoids form a mono-phyletic group.Due to the polyphyly issue,the genus Euglena has been split into new taxonomic units,whereas the genera Phacus and Lepocinclis have been established as the family Phacaceae.However,the introduction of molecular data has also ledto a disconnection between morphology and phylogenetic results.For important groups such as Trache-lomonas and Strombomonas,although molecular studies support their independence,data coverage remains extremely low(molecular data exist for only 25 species of Trachelomonas and 10 species).The lack of morphological transitional species further hinders the analysis of phylogenetic relationships.The morphological definition of Lepocinclis has become blurred due to the transfer of Euglena species,and the iconic characteristic of cell flattening in Phacus has been broken due to the addition of non-flattened species.Recent breakthroughs in omics technologies have filled long-stand-ing data gaps across multiple key evolutionary lineages of this clade.Accumulated evidence from existing studies has confirmed that green euglenoid chloroplasts trace their origin to a single secondary endosymbiotic event involving green algae,resolved the evolutionary trajectories of organelle genomes within this clade,and provided whole-genome level validation for the shopping bag hypothesis,which posits multiple independent plastid acquisitions by the ancestor of green euglenoids.Furthermore,the first high-quality,chromosome-level de novo genome assembly of euglenoids has recently been completed,breaking the long-standing technical bottleneck that has historically hampered progress in this field.Collectively,these advances establish an unprecedented molecular foundation for the taxonomic delimitation and evolutionary history reconstruction of green euglenoids.Research on green euglenoids in China began with the first report by Wang Jiaji in 1925.In 1999,the Flora Algarum Sinicarum Aquae Dulcis systematically recorded 9 genera and 318 species.In recent years,one new species of Trachelomonas and 9 newly recorded species of Euglena in China have been reported by combining morphological and molecular methods,providing basic data for biogeographical research.Future research should integrate morphological and molecular biological methods,establish a classification standard that takes into account both morphological distinguishability and genetic consistency,expand the sampling scope to improve the representativeness of phylogenetic analysis,and leverage the advantages of China's freshwater ecosystem to support further studies.The unique mesokaryotic structure,three-membrane chloroplasts,and non-simpli-fied genome characteristics of green euglenoids serve as a key model for the study of eukaryotic evolution.

关键词

系统发育/形态学界定/分子系统学/富营养化/内共生/绿色裸藻类

Key words

Phylogeny/Morphology/Molecular systematics/Eutrophication/Endosymbiosis/Green euglenoids

分类

农业科技

引用本文复制引用

姜小蝶,李水仙,王能灿,朱为菊,王全喜,庞婉婷..绿色裸藻类系统发育研究进展[J].水生生物学报,2026,50(9):204-216,13.

基金项目

国家自然科学基金(32400177) (32400177)

海南省自然科学基金(325QN345) (325QN345)

琼台师范学院校级课题(QTKY202407)资助[Supported by the National Natural Science Foundation of China(32400177) (QTKY202407)

Natural Science Foundation of Hainan Province(325QN345) (325QN345)

Qiongtai Normal University Institutional Project(QTKY202407)] (QTKY202407)

水生生物学报

1000-3207

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