Articles citing this article

The Citing articles tool gives a list of articles citing the current article.
The citing articles come from EDP Sciences database, as well as other publishers participating in CrossRef Cited-by Linking Program. You can set up your personal account to receive an email alert each time this article is cited by a new article (see the menu on the right-hand side of the abstract page).

Cited article:

Floral nectar: Fifty years of new ecological perspectives beyond pollinator reward

Marta Barberis, Massimo Nepi and Marta Galloni
Perspectives in Plant Ecology, Evolution and Systematics 62 125764 (2024)
https://doi.org/10.1016/j.ppees.2023.125764

Structure and function of the bacterial and fungal gut microbiota of Neotropical butterflies

Alison Ravenscraft, Michelle Berry, Tobin Hammer, Kabir Peay and Carol Boggs
Ecological Monographs 89 (2) (2019)
https://doi.org/10.1002/ecm.1346

Thymol Affects Congruency Between Olfactory and Gustatory Stimuli in Bees

Clara Chapuy, Lisa Ribbens, Michel Renou, Matthieu Dacher and Catherine Armengaud
Scientific Reports 9 (1) (2019)
https://doi.org/10.1038/s41598-019-43614-8

Functional divergence of bitter taste receptors in a nectar-feeding bird

Yi Wang, Hengwu Jiao, Peihua Jiang and Huabin Zhao
Biology Letters 15 (9) 20190461 (2019)
https://doi.org/10.1098/rsbl.2019.0461

Responsiveness to Sugar Solutions in the Moth Agrotis ipsilon: Parameters Affecting Proboscis Extension

Camille Hostachy, Philippe Couzi, Melissa Hanafi-Portier, et al.
Frontiers in Physiology 10 (2019)
https://doi.org/10.3389/fphys.2019.01423

Sex-Dependent Variation of Pumpkin (Cucurbita maxima cv. Big Max) Nectar and Nectaries as Determined by Proteomics and Metabolomics

Elizabeth C. Chatt, Patrick von Aderkas, Clay J. Carter, et al.
Frontiers in Plant Science 9 (2018)
https://doi.org/10.3389/fpls.2018.00860

The major nectar protein of Brassica rapa is a non-specific lipid transfer protein, BrLTP2.1, with strong antifungal activity

Anthony J Schmitt, Andrew E Sathoff, Catherine Holl, et al.
Journal of Experimental Botany (2018)
https://doi.org/10.1093/jxb/ery319

Specialist nectar-yeasts decline with urbanization in Berlin

Jeannine Wehner, Moritz Mittelbach, Matthias C. Rillig and Erik Verbruggen
Scientific Reports 7 (1) (2017)
https://doi.org/10.1038/srep45315

Variation in nectar volume and sugar content in male flowers of Musa cultivars grown in Rwanda and their non-effect on the numbers of visiting key diurnal insect vectors of banana Xanthomonas wilt

Rutikanga Alexandre, Tusiime Geofrey, Night Getrude, Ocimati Walter and Blomme Guy
African Journal of Agricultural Research 11 (8) 607 (2016)
https://doi.org/10.5897/AJAR2015.10476

NMR-Based Metabolic Profiling of Anigozanthos Floral Nectar

Dirk Hölscher, Silke Brand, Michael Wenzler and Bernd Schneider
Journal of Natural Products 71 (2) 251 (2008)
https://doi.org/10.1021/np0705514

Analyses of Avocado (Persea americana) Nectar Properties and their Perception by Honey bees (Apis mellifera)

O. Afik, A. Dag, Z. Kerem and S. Shafir
Journal of Chemical Ecology 32 (9) 1949 (2006)
https://doi.org/10.1007/s10886-006-9120-1

Limited ability of Palestine Sunbirds Nectarinia osea to cope with pyridine alkaloids in nectar of Tree Tobacco Nicotiana glauca

H. TADMOR‐MELAMED, S. MARKMAN, A. ARIELI, M. DISTL, M. WINK and I. IZHAKI
Functional Ecology 18 (6) 844 (2004)
https://doi.org/10.1111/j.0269-8463.2004.00929.x

Floral Nectary Fine Structure and Development in Glycine max L. (Fabaceae)

Harry T. Horner, Rosaria A. Healy, Teresa Cervantes‐Martinez and Reid G. Palmer
International Journal of Plant Sciences 164 (5) 675 (2003)
https://doi.org/10.1086/377060

Attraction, deterrence or intoxication of bees (Apis mellifera) by plant allelochemicals

Andreas Detzel and Michael Wink
Chemoecology 4 (1) 8 (1993)
https://doi.org/10.1007/BF01245891

Production et composition des nectars extra—floraux de Stigmaphyllon convolvulifolium et de Passiflora glandulosa. Comparaison avec la teneur en métabolites primaires du phloème. Premiers résultats

Laurence Pascal
Acta Botanica Gallica 140 (2) 117 (1993)
https://doi.org/10.1080/12538078.1993.10515577

Importance of foliar nectaries in the physiology of tree of heaven (Ailanthus glandulosa Desf., Simaroubaceae)

Gérard Bory and Danielle Clair-Maczulajtys
Bulletin de la Société Botanique de France. Lettres Botaniques 137 (2-3) 139 (1990)
https://doi.org/10.1080/01811797.1990.10824875

Sugar secretion from the nectary ofStrelitzia: an ultrastructural and physiological study

E. C. Kronestedt and A. W. Robards
Protoplasma 137 (2-3) 168 (1987)
https://doi.org/10.1007/BF01281152

The extrafloral nectaries of cowpea (Vigna unguiculata (L.) Walp.) II. Nectar composition, origin of nectar solutes, and nectary functioning

J. S. Pate, M. B. Peoples, P. J. Storer and C. A. Atkins
Planta 166 (1) 28 (1985)
https://doi.org/10.1007/BF00397382

The extrafloral nectaries of cowpea (Vigna unguiculata (L.) Walp): I. Morphology, anatomy and fine structure

J. Kuo and J. S. Pate
Planta 166 (1) 15 (1985)
https://doi.org/10.1007/BF00397381

Photosynthate Unloading From Seed Coats of Phaseolus vulgaris L. General Characteristics and Facilitated Transfer

J.W. Patrick
Zeitschrift für Pflanzenphysiologie 111 (1) 9 (1983)
https://doi.org/10.1016/S0044-328X(83)80068-3

The Nectaries of Aptenia cordifolia Ultrastructure, Translocation of 14C-labelled Sugars, and a Possible Pathway of Secretion

M. Meyberg and U. Kristen
Zeitschrift für Pflanzenphysiologie 104 (2) 139 (1981)
https://doi.org/10.1016/S0044-328X(81)80019-0

Membrane potential changes during transport of hexoses in Lemna gibba G1

A. Novacky, C. I. Ullrich-Eberius and U. L�ttge
Planta 138 (3) 263 (1978)
https://doi.org/10.1007/BF00386821