TY - JOUR
T1 - The MetaInvert soil invertebrate genome resource provides insights into below-ground biodiversity and evolution
AU - Collins, Gemma
AU - Schneider, Clement
AU - Bostjancic, Ljudevit Luka
AU - Burkhardt, Ulrich
AU - Christian, Axel
AU - Decker, Peter
AU - Ebersberger, Ingo
AU - Hohberg, Karin
AU - Lecompte, Odile
AU - Merges, Dominik
AU - Muelbaier, Hannah
AU - Romahn, Juliane
AU - Roembke, Jorg
AU - Rutz, Christelle
AU - Schmelz, Rudiger
AU - Schmidt, Alexandra
AU - Theissinger, Kathrin
AU - Veres, Robert
AU - Lehmitz, Ricarda
AU - Pfenninger, Markus
AU - Balint, Miklos
PY - 2023
Y1 - 2023
N2 - Soil invertebrates are among the least understood metazoans on Earth. Thus far, the lack of taxonomically broad and dense genomic resources has made it hard to thoroughly investigate their evolution and ecology. With MetaInvert we provide draft genome assemblies for 232 soil invertebrate species, representing 14 common groups and 94 families. We show that this data substantially extends the taxonomic scope of DNA- or RNA-based taxonomic identification. Moreover, we confirm that theories of genome evolution cannot be generalised across evolutionarily distinct invertebrate groups. The soil invertebrate genomes presented here will support the management of soil biodiversity through molecular monitoring of community composition and function, and the discovery of evolutionary adaptations to the challenges of soil conditions.The MetaInvert database provides draft genome assemblies for 232 soil invertebrate species, representing 14 common groups and 94 families, that will aid in the discovery and management of soil biodiversity.
AB - Soil invertebrates are among the least understood metazoans on Earth. Thus far, the lack of taxonomically broad and dense genomic resources has made it hard to thoroughly investigate their evolution and ecology. With MetaInvert we provide draft genome assemblies for 232 soil invertebrate species, representing 14 common groups and 94 families. We show that this data substantially extends the taxonomic scope of DNA- or RNA-based taxonomic identification. Moreover, we confirm that theories of genome evolution cannot be generalised across evolutionarily distinct invertebrate groups. The soil invertebrate genomes presented here will support the management of soil biodiversity through molecular monitoring of community composition and function, and the discovery of evolutionary adaptations to the challenges of soil conditions.The MetaInvert database provides draft genome assemblies for 232 soil invertebrate species, representing 14 common groups and 94 families, that will aid in the discovery and management of soil biodiversity.
UR - https://res.slu.se/id/publ/127686
U2 - 10.1038/s42003-023-05621-4
DO - 10.1038/s42003-023-05621-4
M3 - Journal article
C2 - 38066075
SN - 2399-3642
VL - 6
JO - Communications Biology
JF - Communications Biology
IS - 1
M1 - 1241
ER -