Biology Reference
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Dworjanyn SA, de Nys R, Steinberg PD (2006) Chemically mediated antifouling in the red alga
Delisea pulchra. Mar Ecol Prog Ser 318:153-163
Eckman JE, Duggins DO, Sewell AT (1989) Ecology of understorey kelp environments I. Effects
of kelps on flow and particle transport near the bottom. J Exp Mar Biol Ecol 129:173-187
Eggert A, Peters AF, K
upper FC (2010) The potential impact of climate change on endophyte
infections in kelp sporophytes. In: Seckbach J (ed) Seaweeds and their role in globally
changing environments. Springer, Berlin, pp 141-154
Ellertsd´ ttir E, Peters AF (1997) High prevalence of infection by endophytic brown algae in
populations of Laminaria spp. (Phaeophyceae). Mar Ecol Prog Ser 146:135-143
Enge S, Nylund GM, Harder T et al (2009) A novel chemical releases the invasive red alga
Bonnemaisonia hamifera from new enemies. Phycologia 48(4):s. 81
Filion-Myklebust C, Norton T (1981) Epidermis shedding in the brown seaweed Ascophyllum
nodosum (L.) Le Jolis and its ecological significance. Mar Biol Lett 2:45-51
Fletcher RL (1995) Epiphytism and fouling in Gracilaria cultivation: an overview. J Appl Phycol
7:325-333
Fralick RA, Mathieson AC (1975) Physiological ecology of
four Polysiphonia species
(Rhodophyta, Ceramiales). Mar Biol 29:29-36
Friedlander M (1992) Gracilaria conferta and its epiphytes: the effect of culture conditions on
growth. Bot Mar 35:423-428
Friedlander M, Ben-Amotz A (1991) The effect of outdoor culture conditions on growth and
epiphytes of Gracilaria conferta. Aquat Bot 39:315-333
Fujita Y (1990) Diseases of cultivated Porphyra in Japan. In: Akatsuka I (ed) Introduction to
applied phycology. SPB Academic, The Hague, pp 177-190
Funano T (1969) Observation on the female gametophytes and the microscopic sporophytes of
Laminaria religiosa Miyabe. Rep Hokkaido Fish Exp Stn 10:43-50
Gachon CM, Strittmatter M, M
upper FC (2009) Detection of differential
host susceptibility to the marine oomycete pathogen Eurychasma dicksonii by real-time PCR:
not all algae are equal. Appl Environ Microbiol 75:322-328
Gachon CM, Sime-Ngando T, Strittmatter M, Chambouvet A, Kim GH (2010) Algal diseases:
spotlight on a black box. Trends Plant Sci 15:633-640
Garbary D, Burke J, Tian L (1991) The Ascophyllum⁄Polysiphonia⁄ Mycosphaerella symbiosis II.
Aspects of the ecology and distribution of Polysiphonia lanosa in Nova Scotia. Bot Mar
34:391-401
Garbary D, Hansen GI, Scagel RF (1982) The marine algae of British Columbia and northern
Washington: division Rhodophyta (red algae), Class Florideophyceae, Orders Acrochaetiales
and Nemaliales. Syesis 15(1(Suppl)):1-102
Garbary DJ, Kim KY, Klinger T, Duggins D (1999a) Preliminary observations on the development
of kelp gametophytes endophytic in red algae. Hydrobiologia 398(399):247-252
Garbary DJ, Kim KY, Duggins D (1999b) Red algae as hosts for endophytic kelp gametophytes.
Mar Biol 135:35-40
Gauna M, Parodi C, Elisa R (2010) Green epi-endophytes in Hymenena falklandica (Rhodophyta)
from the Patagonian coasts of Argentina: preliminary observations. Phycol Res 56:1440-1835
Goecke F, Labes A, Wiese J, Imhoff JF (2010) Chemical interactions between marine macroalgae
and bacteria Mar. Ecol Progr Ser 409:267-300
Goff LJ (1976) Solitary bodies (S-bodies) in the parasitic red algaHarveyella mirabilis
(Choreocolaceae, Cryptonemiales). Protoplasma 89:189-195
Goff LJ (1982) The biology of parasitic red algae. Phycol Res 1:289-370
Goff LJ, Ashen J, Moon D (1997) The evolution of parasites from their hosts: a case study in the
parasitic red algae. Evolution 51:1068-1078
Gonzalez MA, Goff LJ (1989) The red algal epiphytes Microcladia coulteri and M. californica
(Rhodophyceae, Ceramiaceae) II. Basiphyte specificity. J Phycol 25:558-567
uller DG, Kleinteich J, K
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