Results 81 to 90 of about 1,841 (169)

Epipactis leptochila (godfery) godfery subsp. Umbrae (fam. Orchidaceae) nuovo taxon della Puglia [PDF]

open access: yes, 2014
IT>Nel corso di una escursione floristica effettuata nella Foresta Umbra (Gargano) nella metà di luglio 2013, abbiamo avuto modo di osservare alcuni esemplari di Epipactis non ancora fioriti che per la fioritura particolarmente tardiva e l’aspetto delle ...
Kreutz, K   +4 more
core   +1 more source

New records and noteworthy data of plants, algae and fungi in SE Europe and adjacent regions, 19 [PDF]

open access: yesBotanica Serbica
This paper presents new records and noteworthy data on the following taxa in SE Europe and adjacent regions: mycorrhizal fungus Russula sapinea, parasitic fungus Podosphaera polemonii, saprotrophic fungi Ophiognomonia melanostyla and Plagiostoma ...
Marko S. Sabovljević   +22 more
doaj   +1 more source

Subterranean morphology underpins the degree of mycoheterotrophy, mycorrhizal associations, and plant vigor in a green orchid Oreorchis patens

open access: yesThe Plant Journal, Volume 121, Issue 4, February 2025.
Significance Statement The evolution of full heterotrophy from photosynthetic ancestors is a longstanding question in evolutionary ecology. Our study demonstrates that coralloid rhizomes in a photosynthetic orchid promote greater mycoheterotrophic carbon acquisition, leading to more vigorous flowering scapes and increased flower production.
Kenji Suetsugu, Hidehito Okada
wiley   +1 more source

Floristic notes from the southwestern part of the Lubuskie Province. Part 3

open access: yesFragmenta Floristica et Geobotanica Polonica
This paper presents data on the distribution of 212 rare, protected, and threatened vascular plant taxa in the southwestern part of the Lubuskie Province (western Poland). Fieldwork was conducted in 2025. The location of the sites is given in the network
Piotr Kobierski   +2 more
doaj   +1 more source

Ultrastructural changes during megasporogenesis in Epipactis (Orchidaceae)

open access: yesActa Societatis Botanicorum Poloniae, 2014
Plastids were temporarily localized within the micropylar portion of the early first prophase Epipactis meiocyte. Some of these plastids were observed in close proximity to the nuclear envelope.
Józef Bednara   +2 more
doaj   +1 more source

Mycorrhizal specialization toward each distinct Oliveonia fungus in two closely related photosynthetic Dactylostalix orchids

open access: yesFunctional Ecology, Volume 39, Issue 1, Page 199-208, January 2025.
Read the free Plain Language Summary for this article on the Journal blog. Abstract Although rhizoctonias from Ceratobasidiaceae, Tulasnellaceae and Serendipitaceae are typical orchid mycobionts, orchid mycorrhizal fungi exhibit vast taxonomic and ecological diversity.
Kenji Suetsugu, Hidehito Okada
wiley   +1 more source

You are what you get from your fungi: nitrogen stable isotope patterns in Epipactis species

open access: yes, 2016
Background and Aims: Partially mycoheterotrophic plants are enriched in 13C and 15N compared to autotrophic plants. Here, it is hypothesized that the type of mycorrhizal fungi found in orchid roots is responsible for variation in 15N enrichment of leaf ...
Schiebold, JM-I   +11 more
core   +1 more source

Annonce : le genre Epipactis

open access: yes, 2003
Annonce : le genre Epipactis. In: Bulletin mensuel de la Société linnéenne de Lyon, 72ᵉ année, n°10, décembre 2003.

core   +1 more source

IN-SITU CONSERVATION OF EPIPACTIS PALUSTRIS (L.) CRANTZ IN THE REPUBLIC OF MOLDOVA [PDF]

open access: yesJournal of Plant Development
The given paper provides recent data on the rare species, Epipactis palustris (L.) Crantz, (family Orchidaceae) from the “Codrii” Scientific Reserve, Republic of Moldova, including the current state of the taxon population, the degree of threat, the ...
Olga IONIŢĂ, Natalia JARDAN
doaj   +1 more source

Stable Isotope Signatures Illuminate Diverse Nutritional Strategies in Rhizoctonias and Their Orchid Partners

open access: yesPlant, Cell &Environment, Volume 48, Issue 1, Page 792-804, January 2025.
ABSTRACT Understanding the nutritional ecology of orchids, particularly those in symbiosis with rhizoctonias, presents a complex challenge. This complexity arises partly from the absence of macroscopic fruit bodies in rhizoctonias, which impedes the acquisition of their stable isotope data.
Kenji Suetsugu   +2 more
wiley   +1 more source

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