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Internal ID UUID64405a591394c455084941
Scientific name Acmispon strigosus
Authority (Nutt.) Brouillet
First published in J. Bot. Res. Inst. Texas2: 392 (2008)

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Synonyms Top

Scientific name Authority First published in
Lotus strigosus var. hirtellus Ottley Univ. Calif. Publ. Bot.10: 214 (1923)
Anisolotus hirtellus (Greene) A.Heller Muhlenbergia8: 60 (1912)
Lotus hirtellus Greene Pittonia2: 142 (1890)
Ottleya strigosa (Nutt.) D.D.Sokoloff Feddes Repert.110: 95 (1999)
Anisolotus nudiflorus (Nutt.) A.Heller Muhlenbergia7: 139 (1911 publ. 1912)
Anisolotus rubellus (Nutt.) A.Heller Muhlenbergia7: 139 (1911 publ. 1912)
Anisolotus strigosus (Nutt.) A.Heller Muhlenbergia3: 101 (1907)
Hosackia nudiflora Nutt. J.Torrey & A.Gray, Fl. N. Amer.1: 326 (1838)
Hosackia rubella Nutt. J.Torrey & A.Gray, Fl. N. Amer.1: 326 (1838)
Hosackia strigosa Nutt. J.Torrey & A.Gray, Fl. N. Amer.1: 326 (1838)
Lotus nudiflorus (Nutt.) Greene Pittonia2: 141 (1890)
Lotus rubellus (Nutt.) Greene Pittonia2: 141 (1890)
Lotus strigosus (Nutt.) Greene Pittonia2: 141 (1890)
Lotus strigosus var. nudiflorus (Nutt.) Jeps. Fl. W. Calif.: 302 (1901)
Hosackia strigosa var. hirtella H.M.Hall Univ. Calif. Publ. Bot.4: 199 (1912)
Hosackia hirtella (Greene) Brand Bot. Jahrb. Syst.25: 228 (1898)
Acmispon strigosus var. hirtellus (Greene) D.W.Taylor Fl. Yosemite Sierra: 373 (2010)
Hosackia maritima Torr. Rep. U.S. Mex. Bound. 2(1): 55 (1859)

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Database ID/link to page
World Flora Online wfo-0001285184
Tropicos 50326498
KEW urn:lsid:ipni.org:names:77221636-1
The Plant List tro-50326498
Open Tree Of Life 7055626
NCBI Taxonomy 1240363
IPNI 60448555-2
iNaturalist 75281
GBIF 3907972
Calflora (Californian flora) 11305
Wikipedia Acmispon_strigosus

Genomes (via NCBI) Top

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Accession Assembly
Name Level Submitter Released Coverage Size
GCA_030819835.1 drAcmStri1.0.hap2 Scaffold UCLA 2023-08-18 45 486.71 Mb

Scientific Literature Top

Below are displayed the latest 15 articles published in PMC (PubMed Central®) and other sources (DOI number only)!
If you wish to see all the related articles click here.
Title Authors Publication Released IDs
The role of microbial interactions on rhizobial fitness Granada Agudelo M, Ruiz B, Capela D, Remigi P Front Plant Sci 09-Oct-2023
PMCID:PMC10591227
doi:10.3389/fpls.2023.1277262
PMID:37877089
Hosts winnow symbionts with multiple layers of absolute and conditional discrimination mechanisms Montoya AP, Wendlandt CE, Benedict AB, Roberts M, Piovia-Scott J, Griffitts JS, Porter SS Proc Biol Sci 04-Jan-2023
PMCID:PMC9811631
doi:10.1098/rspb.2022.2153
PMID:36598018
MGEs as the MVPs of Partner Quality Variation in Legume-Rhizobium Symbiosis Heath KD, Batstone RT, Cerón Romero M, McMullen JG II mBio 27-Jun-2022
PMCID:PMC9426554
doi:10.1128/mbio.00888-22
PMID:35758609
Pangenome Evolution Reconciles Robustness and Instability of Rhizobial Symbiosis Weisberg AJ, Rahman A, Backus D, Tyavanagimatt P, Chang JH, Sachs JL mBio 13-Apr-2022
PMCID:PMC9239051
doi:10.1128/mbio.00074-22
PMID:35416699
Seed Menus: An integrated decision‐support framework for native plant restoration in the Mojave Desert Shryock DF, DeFalco LA, Esque TC Ecol Evol 12-Apr-2022
PMCID:PMC9005930
doi:10.1002/ece3.8805
PMID:35432931
The study of host–microbiome (co)evolution across levels of selection Koskella B, Bergelson J Philos Trans R Soc Lond B Biol Sci 10-Aug-2020
PMCID:PMC7435161
doi:10.1098/rstb.2019.0604
PMID:32772660
The impact of the rhizobia–legume symbiosis on host root system architecture Concha C, Doerner P J Exp Bot 27-Apr-2020
PMCID:PMC7316968
doi:10.1093/jxb/eraa198
PMID:32337556
Plant microbiome analysis after Metarhizium amendment reveals increases in abundance of plant growth-promoting organisms and maintenance of disease-suppressive soil Barelli L, Waller AS, Behie SW, Bidochka MJ PLoS One 10-Apr-2020
PMCID:PMC7147777
doi:10.1371/journal.pone.0231150
PMID:32275687
The Non-Legume Parasponia andersonii Mediates the Fitness of Nitrogen-Fixing Rhizobial Symbionts Under High Nitrogen Conditions Dupin SE, Geurts R, Kiers ET Front Plant Sci 07-Feb-2020
PMCID:PMC7019102
doi:10.3389/fpls.2019.01779
PMID:32117343
Recurrent mutualism breakdown events in a legume rhizobia metapopulation Gano-Cohen KA, Wendlandt CE, Al Moussawi K, Stokes PJ, Quides KW, Weisberg AJ, Chang JH, Sachs JL Proc Biol Sci 29-Jan-2020
PMCID:PMC7015337
doi:10.1098/rspb.2019.2549
PMID:31992172
Legumes Modulate Allocation to Rhizobial Nitrogen Fixation in Response to Factorial Light and Nitrogen Manipulation Friel CA, Friesen ML Front Plant Sci 05-Nov-2019
PMCID:PMC6848274
doi:10.3389/fpls.2019.01316
PMID:31749816
Dynamic genomic architecture of mutualistic cooperation in a wild population of Mesorhizobium Porter SS, Faber-Hammond J, Montoya AP, Friesen ML, Sackos C ISME J 14-Sep-2018
PMCID:PMC6331556
doi:10.1038/s41396-018-0266-y
PMID:30218020
Phylogeny and Phylogeography of Rhizobial Symbionts Nodulating Legumes of the Tribe Genisteae Stępkowski T, Banasiewicz J, Granada CE, Andrews M, Passaglia LM Genes (Basel) 14-Mar-2018
PMCID:PMC5867884
doi:10.3390/genes9030163
PMID:29538303
Lotus japonicus alters in planta fitness of Mesorhizobium loti dependent on symbiotic nitrogen fixation Quides KW, Stomackin GM, Lee HH, Chang JH, Sachs JL PLoS One 28-Sep-2017
PMCID:PMC5619806
doi:10.1371/journal.pone.0185568
PMID:28957401
Predicting drought tolerance from slope aspect preference in restored plant communities Kimball S, E. Lulow M, R. Balazs K, Huxman TE Ecol Evol 30-Mar-2017
PMCID:PMC5415533
doi:10.1002/ece3.2881
PMID:28480011

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