Hypogymnia vittata
(Ach.) Parrique
Family:
Parmeliaceae
[
Ceratophyllum vittatum
(Ach.) M. Choisy,
more
Hypogymnia vittata f. vittata
(Ach.) Parrique,
Imbricaria vittata
(Ach.) Arnold,
Menegazzia vittata
(Ach.) Gyeln.,
Menegazzia vittata var. douglasicola
Gyeln.,
Menegazzia vittata var. vittata
(Ach.) Gyeln.,
Parmelia ceratophylla var. vittata
(Ach.) Schaer.,
Parmelia physodes var. vittata
Ach.,
Parmelia vittata
(Ach.) Röhl.,
Parmelia vittata f. euvittata
Maas Geest.,
Parmelia vittata f. latilobata
Gyeln.,
Parmelia vittata f. stricta
(Hillmann) Asahina,
Parmelia vittata f. vittata
(Ach.) Röhl.,
Parmelia vittata var. alpestris
Zahlbr.,
Parmelia vittata var. alpina
Gyeln.,
Parmelia vittata var. chalybaea
J. Steiner,
Parmelia vittata var. collina
Gyeln. & Fóriss,
Parmelia vittata var. douglasicola
(Gyeln.) Zahlbr.,
Parmelia vittata var. hypotrypanea
Nyl.,
Parmelia vittata var. radiata
Gyeln.,
Parmelia vittata var. subarticulata
J.D. Zhao, L.W. Hsu & Z.M. Sun,
Parmelia vittata var. vittata
(Ach.) Röhl.
]
Stephen Sharnoff
LIAS
Resources
Botanische Staatssammlung München
Life habit:
lichenized (mutualistic with algal photobionts)
thallus:
foliose (foliaceous), leaf-like [th] upper surface: grey(ish) | green(ish) grey [th marginal and upper surface] specific structures: absent | present [th margin] cilia, cilioid structures: absent [th upper surface] isidia, isidioid structures: absent [th upper surface] soredia, soralia, soralioid structures: absent | present [th] morphol substructures (eg areoles, lobes, branches) width [mm]: (median) 2.0 [th lower surface] specific structures: absent
ascomata:
absent
secondary metabolites:
present
secondary metabolites:
atranorin | physodic acid
primary photobiont:
present
secondary photobionts
(eg in cephalodia): absent
primary photobiont:
chlorophytaceous trebouxiaceous, chlorococcoid.
substrate:
bark, cork, plant surface trunks, branches, twigs.
Open Interactive Map
Troy McMullin
Lucy Taylor
Troy McMullin
Troy McMullin
Stephen Sharnoff
Click to Display
100 Initial Images
- - - - -
View All Images
This project made possible by National Science Foundation Awards:
#1115116