The Universal Tree of Life, which is based on phylogenetic analysis of the RNA sequence from the small ribosomal subunit, was a breakthrough in understanding the relatedness among all living organisms. The result has had a major impact on taxonomy by separating life into three domains: Eukarya, Bacteria, and Archaea. Indeed, microbiologists have used the 16S ribosomal RNA (rRNA) of the small ribosomal subunit to construct the hierarchical classification of Bacteria and Archaea from the level of domain to genus. However, the 16S rRNA of the Bacteria and Archaea and the corresponding 18S rRNA of the Eukarya are too highly conserved to be useful phylogenetically at the species level. For this reason, I propose that biologists adopt a phylogenomic species concept that utilizes both phylogenetic analyses of less highly conserved genes and proteins as well as genomic analyses for the circumscription of species. If biologists adopt a phylogenomic concept for species, the classification of all living organisms from domain to species could be completed. Furthermore, this universal species concept could help provide a more equitable circumscription among all species, as well as aid in the unification of biologists and biology.
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http://dx.doi.org/10.1007/s10295-009-0642-8 | DOI Listing |
Chemistry
January 2025
Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Leninsky Prospekt 47, 119991, Moscow, RUSSIAN FEDERATION.
Palladium catalysts form a cornerstone of modern chemistry with upmost scientific and industrial impact. Bulk palladium metal itself is chemically inert, and a sequence of chemical transformations has to be utilized to convert the metal into Pd pre-catalyst covered by ligands. However, the "cocktail" of catalysis concept discovered recently has shown that Pd systems can efficiently operate in catalysis without the necessity of a complicated and expensive pre-installed ligand environment.
View Article and Find Full Text PDFJ Adv Res
January 2025
The Center for Biomedical Research, Department of Respiratory and Critical Care Medicine, NHC Key Laboratory of Respiratory Diseases, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China. Electronic address:
Background: The balance of redox states is crucial for maintaining physiological homeostasis. For decades, the focus has been mainly on the concept of oxidative stress, which is involved in the mechanism of almost all diseases. However, robust evidence has highlighted that reductive stress, the other side of the redox spectrum, plays a pivotal role in the development of various diseases, particularly those related to metabolism and cardiovascular health.
View Article and Find Full Text PDFBMC Ecol Evol
January 2025
Museum of Nature - Hamburg, Leibniz Institute for the Analysis of Biodiversity Change, Hamburg, Germany.
The Sydney funnel-web spider Atrax robustus O. Pickard-Cambridge, 1877 is an iconic Australian species and considered among the most dangerously venomous spiders for humans. Originally described in 1877 from a single specimen collected in "New Holland", this spider has a complex taxonomic history.
View Article and Find Full Text PDFSci Total Environ
January 2025
International Joint Research Centre for Persistent Toxic Substances (IJRC-PTS), College of Environmental Science and Engineering, Dalian Maritime University, Dalian 116026, PR China. Electronic address:
Although the concept of bioaccumulation for novel brominated flame retardants (NBFRs) is clear, the process and interfering factors of bioaccumulation are still not fully understood. The present study comprehensively evaluated the occurrence, transfer and interfering factors of NBFRs in a marine food web to provide new thought and perspective for the bioaccumulation of these compounds. The occurrence of 17 NBFRs were determined from 8 water, 8 sediment and 303 organism samples collected from Dalian Bay, China.
View Article and Find Full Text PDFPhytomedicine
January 2025
Cancer Center, Faculty of Health Sciences, University of Macau, Macau (SAR), China. MOE Frontiers Science Center for Precision Oncology, University of Macau, Macau (SAR), PR China. Electronic address:
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