{"database":"biostudies-literature","file_versions":[],"scores":null,"additional":{"submitter":["Luo L"],"funding":["Natural Science Project of Guizhou University","Science and Technology Project of Guizhou Province","Natural Science Project of Guizhou University (Special Post)","Qianxinan Branch of Guizhou Tobacco Company","National Natural Science Foundation of China","Anshun Branch of Guizhou Tobacco Company"],"pagination":["e0105324"],"full_dataset_link":["https://www.ebi.ac.uk/biostudies/studies/S-EPMC11448085"],"repository":["biostudies-literature"],"omics_type":["Unknown"],"volume":["12(10)"],"pubmed_abstract":["<i>Cordyceps militaris</i> infects insects and forms sclerotia within the insect remains, establishing insect-microbe complexes. Here, <i>C</i>. <i>militaris</i> sclerotia samples from a single location in China over a 5-year period were subjected to high-throughput DNA sequencing, and the core microbes (which were stably enriched in the sclerotia over the 5 years) were identified. Next, seven bacterial strains were isolated from the <i>C. militaris</i> sclerotia, their biochemical characteristics were assessed, and they were co-cultured with <i>C. militaris</i> to study their effects on <i>C. militaris</i> metabolite production and biomass. Furthermore, the effects of NH<sub>4</sub>, NO<sub>3</sub>, and peptone media on <i>C. militaris</i> were compared. The results showed that <i>Rhodoco"],"journal":["Microbiology spectrum"],"pubmed_title":["Core microbes in <i>Cordyceps militaris</i> sclerotia and their nitrogen metabolism-related ecological functions."],"pmcid":["PMC11448085"],"funding_grant_id":["32060038","2020XM14","Zhou Yan Si [2022] No 6 2022-04","Gui Da Te Gang He Zi [2022] 51","Qian Ke He Foundation [2020] 1Z009"],"pubmed_authors":["Zou X","Guan J","Luo L","Yao M","Fei G","Qu J","Dai F","Zhou Y","Xu Z","Xue Y"],"additional_accession":[]},"is_claimable":false,"name":"Core microbes in <i>Cordyceps militaris</i> sclerotia and their nitrogen metabolism-related ecological functions.","description":"<i>Cordyceps militaris</i> infects insects and forms sclerotia within the insect remains, establishing insect-microbe complexes. Here, <i>C</i>. <i>militaris</i> sclerotia samples from a single location in China over a 5-year period were subjected to high-throughput DNA sequencing, and the core microbes (which were stably enriched in the sclerotia over the 5 years) were identified. Next, seven bacterial strains were isolated from the <i>C. militaris</i> sclerotia, their biochemical characteristics were assessed, and they were co-cultured with <i>C. militaris</i> to study their effects on <i>C. militaris</i> metabolite production and biomass. Furthermore, the effects of NH<sub>4</sub>, NO<sub>3</sub>, and peptone media on <i>C. militaris</i> were compared. The results showed that <i>Rhodoco","dates":{"release":"2024-01-01T00:00:00Z","publication":"2024 Oct","modification":"2026-06-16T03:11:14.659Z","creation":"2025-04-04T12:54:08.884Z"},"accession":"S-EPMC11448085","cross_references":{"pubmed":["39162541"],"doi":["10.1128/spectrum.01053-24"]}}