Trifolium alexandrinum
Clover
- Category
- plantae
- Primary role
- crop
- Class
- Magnoliopsida
- Order
- Fabales
- Family
- Fabaceae
- Genus
- Trifolium
Plantae | Tracheophyta | Magnoliopsida | Fabales | Fabaceae | Trifolium
External: GBIF #5358907
0 AI-consensus-verified claims .
No verified claims involving this entity yet.
Genus-level evidence
11 claims where the source named the organism only at the genus or collective level (e.g. Trifolium sp.) and did not determine the species. Listed separately because they apply to the genus, not specifically to Trifolium alexandrinum.
- facilitation · Trifolium spp. → Triticum aestivum · effect: beneficial
“twice as much earthworms were observed in the soil than with a sole crop”
[object Object] (2014) · Agroecological practices for sustainable agriculture. A review · p. 11 #6491970 - facilitation · Trifolium spp. → Poaceae (family) · effect: beneficial
“Mixtures of grasses and legumes in pastures provide a better diet than monocultures”
Rickerl D., Francis C., Gliessman S.R., Nicholls C.I., Altieri M.A., Janke R.R., Dobbs T.L., Flora C.B., Schumacher T.E., Caldwell R.M., Salomonsson L., Lieblein G., Helenius J., Kirschenmann F. (2004) · Agroecosystems Analysis · p. 38 #6492118 - facilitation · Trifolium spp. → Triticum aestivum · effect: beneficial
“legume (frequently clover) and finally wheat”
- facilitation · Avena sativa → Trifolium spp. · effect: beneficial
“Clover seems to establish best around 50% of full sunlight”
Gliessman S.R. (2022) · Agroecology: The Ecology of Sustainable Food Systems, Fourth Edition · p. 71 #6493994 - herbivory · Melanoplus femurrubrum → Trifolium spp. · effect: harmful
“redlegged grasshoppers are very destructive pests of clover, alfalfa, and soybean”
- herbivory · Dasineura leguminicola → Trifolium spp. · effect: harmful
“to avert damage by the clover seed midge, Dasineura leguminicola”
- mutualism · Gigaspora margarita → Trifolium spp. · effect: beneficial
“Mycorrhiza formed between Gigaspora margarita and Trifolium. The arbuscule branches surrounded by the invaginated host membrane”
- mutualism · Trifolium spp. → Triticum spp. · effect: beneficial
“fixation of nitrogen by an under-sown layer of clover”
Fiebrig I.N. (ed.), Tornaghi C., McAllister G., Moeller N., Pedersen M., Sucholas J., Greinwald A., Ukhanova M., Luick R., Fiebrig I.N., van de Vijver M., van Kan C.J., Tilzey M., Stobart A., Prieto Garcia J., Vieweger A., Westaway S., Whistance L., Kümmritz S., Klocke B., Krähmer A., Johnson M., Sarabia L., Solorio F., Galindo F., González P., Sandoval Castro C.A., Torres F., Ku J., Păcurar F., Reif A., Ruşdea E., Nair M.N.B., Punniamurthy N., Venkatasubramanian P., Balasubramani S.P., Kukkupuni S.K., Weins C., Bombardi L., Peralta M.C.C., Bach A.E. (2023) · Medicinal Agroecology: Reviews, Case Studies, and Research Methodologies · p. 101 #6492966 - pest pressure · Ditylenchus dipsaci → Trifolium spp. · effect: harmful
“D. dipsaci is a serious pest of clover, pea, broad bean, celery”
- pest pressure · Elymus repens → Trifolium spp. · effect: harmful
“Quackgrass inhibited several crop types (e.g., clover, alfalfa, and barley)”
Gliessman S.R. (2022) · Agroecology: The Ecology of Sustainable Food Systems, Fourth Edition · p. 103 #6494041 - pest pressure · Elymus repens → Trifolium spp. · effect: harmful
“Quackgrass inhibited several crop types (e.g., clover, alfalfa, and barley)”
Gliessman S.R. (2022) · Agroecology: The Ecology of Sustainable Food Systems, Fourth Edition · p. 103 #6494050
Aggregated via GloBI — not independently verified by AgroEco.
herbivory 1
- GloBI eats Trifolium alexandrinum Lampel, G., & Meier, W. (2003). Hemiptera: Sternorrhyncha—Aphidina Teil 2. In Hemiptera Sternorrhyncha—Aphidina. Centre suisse de cartographie de la faune.
mycorrhizal 9
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
pathogen pressure 4
- GloBI hasHost Trifolium alexandrinum https://mycoportal.org/portal/collections/individual/index.php?occid=11749140
- GloBI hasHost Trifolium alexandrinum https://mycoportal.org/portal/collections/individual/index.php?occid=1253354
- GloBI hasHost Trifolium alexandrinum https://mycoportal.org/portal/collections/individual/index.php?occid=4630699
- GloBI hasHost Trifolium alexandrinum https://mycoportal.org/portal/collections/individual/index.php?occid=4629393
pollination 6
- GloBI interactsWith Trifolium alexandrinum Digital Bee Collections Network, 2014 (and updates). Version: 2016-03-08. National Science Foundation grant DBI 0956388
- GloBI pollinates Trifolium alexandrinum Lanuza et al. (2025), EuPPollNet: A European Database of Plant-Pollinator Networks. Global Ecol Biogeogr, 34: e70000. https://doi.org/10.1111/geb.70000. Accessed at <https://github.com/ElPea9/EuPPollNet/archive/df446ce3a2b0b0753777531aee32b965e41ebd7b.zip> on 23 May 2026.
- GloBI interactsWith Trifolium alexandrinum Digital Bee Collections Network, 2014 (and updates). Version: 2016-03-08. National Science Foundation grant DBI 0956388
- GloBI interactsWith Trifolium alexandrinum Tri-Trophic Thematic Collection Network, 2014 (and updates). Version: 2016-03-08. http://tcn.amnh.org/. National Science Foundation grant(s) EF#1115081, EF#1115103, EF#1115080, EF#1115144, EF#1115191, EF#1115104, EF#1115115
- GloBI interactsWith Trifolium alexandrinum 4e0197c1-c3b4-4988-a396-ad3f1517b8fa
- GloBI interactsWith Trifolium alexandrinum 8b3b5bf4-1ac8-4a7d-b7a5-fe5dbe759726
crop interaction 20
- GloBI interactsWith Trifolium alexandrinum Digital Bee Collections Network, 2014 (and updates). Version: 2016-03-08. National Science Foundation grant DBI 0956388
- GloBI pollinates Trifolium alexandrinum Lanuza et al. (2025), EuPPollNet: A European Database of Plant-Pollinator Networks. Global Ecol Biogeogr, 34: e70000. https://doi.org/10.1111/geb.70000. Accessed at <https://github.com/ElPea9/EuPPollNet/archive/df446ce3a2b0b0753777531aee32b965e41ebd7b.zip> on 23 May 2026.
- GloBI hasHost Trifolium alexandrinum https://mycoportal.org/portal/collections/individual/index.php?occid=11749140
- GloBI hasHost Trifolium alexandrinum https://mycoportal.org/portal/collections/individual/index.php?occid=1253354
- GloBI interactsWith Trifolium alexandrinum Digital Bee Collections Network, 2014 (and updates). Version: 2016-03-08. National Science Foundation grant DBI 0956388
- GloBI eats Trifolium alexandrinum Lampel, G., & Meier, W. (2003). Hemiptera: Sternorrhyncha—Aphidina Teil 2. In Hemiptera Sternorrhyncha—Aphidina. Centre suisse de cartographie de la faune.
- GloBI interactsWith Trifolium alexandrinum Tri-Trophic Thematic Collection Network, 2014 (and updates). Version: 2016-03-08. http://tcn.amnh.org/. National Science Foundation grant(s) EF#1115081, EF#1115103, EF#1115080, EF#1115144, EF#1115191, EF#1115104, EF#1115115
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI interactsWith Trifolium alexandrinum 4e0197c1-c3b4-4988-a396-ad3f1517b8fa
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum https://mycoportal.org/portal/collections/individual/index.php?occid=4630699
- GloBI hasHost Trifolium alexandrinum https://mycoportal.org/portal/collections/individual/index.php?occid=4629393
- GloBI interactsWith Trifolium alexandrinum 8b3b5bf4-1ac8-4a7d-b7a5-fe5dbe759726
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI
- GloBI hasHost Trifolium alexandrinum S. Pehim Limbu, S.L. Stürmer, G. Zahn, C.A. Aguilar-Trigueros, N. Rogers, & V.B. Chaudhary, Climate-linked biogeography of mycorrhizal fungal spore traits, Proc. Natl. Acad. Sci. U.S.A. 122 (29) e2505059122, https://doi.org/10.1073/pnas.2505059122 (2025). Accessed at <https://github.com/globalbioticinteractions/limbu2025/archive/461a5f43a0ceadec056ca19816e9209ea8b317b1.zip> on 23 May 2026. DOI