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Beer S & Eshel A. (1985). Determining phycoerythrin & phycocyanin concentrations in aqueous crude extracts of red algae. Australian Journal of Marine & Freshwater Research, 36, 785 - 792.

Bell, E. C. (1992). Consequences of morphological variation in an intertidal macroalga: physical constraints on growth & survival of Mastocarpus papillatus Kützing. Journal of Experimental Marine Biology & Ecology 191, 29-55.

Bell, E. C. (1993). Photosynthetic response to temperature & desiccation of the intertidal alga Mastocarpus papillatus. Marine Biology, 117, 337-346.

Bell, E. C. (1995). Environmental & morphological influences on thallus temperature & desiccation of the intertidal alga Mastocarpus papillatus Kützing. Journal of Experimental Marine Biology & Ecology, 191, 29-55.

Burritt, D. J., Larkindale, J., & Hurd, C. L. (2002). Antioxidant metabolism in the intertidal red seaweed Stictosiphonia arbuscula following

desiccation. Planta, 215, 829-838.

Campbell, A. H., Harder, T., Nielsen, S., Kjelleberg, S., & Steinberg, P. D.

(2011). Climate change & disease: Bleaching of a chemically defended seaweed. Global Change Biology, 17, 2958-2970.

Davison, I. R., & Pearson, G. A. (1996). Stress tolerance in intertidal seaweeds. Journal of Phycology, 32, 197-211.

Dudgeon, S. R., Kubler, J. E., Vadas, R. L., & Davison, I. R. (1995).

Physiological responses to environmental variation in intertidal red algae: Does thallus morphology matter? Marine Ecology Progress Series, 117, 193-206.

29

Flores-Molina, M. R., Thomas, D., Lovazzano, C., Núñez, A., Zapata, J., Kumar, M., Correa, J. A., & Contreras-Porcia, L. (2014). Desiccation stress in intertidal seaweeds: Effects on morphology, antioxidant responses & photosynthetic performance. Aquatic Botany, 113, 90-99.

藤田大介, 湯口能生夫. (1995). 富山県朝日町宮崎沿岸の海藻. 富山県水産試 験場研究報告, 6, 1-15.

福原英司 (1959). 干満線間海藻の白化現象について. 北水誌月報/北海道立中 央水産試験場. 16, 5, 10-12.

Häder, D. P., & Figueroa, F. L. (1997). Photoecophysiology of Marine Macroalgae. Photochemistry & Photobiology, 66, 1-14.

Harley, C. D. G., & Paine, R. T. (2009). Contingencies & compounded rare perturbations dictate sudden distributional shifts during periods of gradual climate change. Proceedings of the National Academy of Sciences of the United States of America, 106, 172-176.

早川雄飛. (2016). 紅藻スギノリの生理生態学的研究. 東京海洋大学修士論文.

Hunt, L. J. H., & Denny, M. W. (2008). Desiccation protection & disruption:

A trade-off for an intertidal marine alga. Journal of Phycology, 44, 1164-1170.

Hurd, C. L., & Dring, M. J. (1991). Desiccation & phosphate uptake by intertidal fucoid algae in relation tozonation. British Phycological Journal, 26, 327-333.

Irving, A. D., Connell, S. D., & Elsdon, T. S. (2004). Effects of kelp canopies on bleaching & photosynthetic activity of encrusting coralline algae.

Journal of Experimental Marine Biology & Ecology, 310, 1-12.

Jeffrey, S. W., & Humphrey, G. F. (1975). New spectrophotometric equations for determining chlorophylls a, b, c1 & c2 in higher plants, algae &

natural phytoplankton. Biochemie Und Physiologie Der Pflanzen, 167, 191-194.

30

Ji, Y., & Tanaka, J. (2002). Effect of desiccation on the photosynthesis of seaweeds from the intertidal zone in Honshu, Japan. Phycological Research, 50, 145-153.

景山大輔(2015). 館山市坂田地先における潮間帯の白化の季節変化, 東京海洋 大学応用藻類学研究室卒業論文

神谷充伸(2012). 海藻 日本で見られる 388 種の生態写真+おしば標本. 誠文堂 新光社, 東京.

Kawaguchi, S. (1989). The genus Prionitis (Halymeniaceae, Rhodophyta) in Japan. Journal of the Faculty of Science, Hokkaido Imperial University.

Botany, 14, 193-257.

Kim, J. H., & DeWreede, R. E. (1996). Effects of size & season of disturbance on algal patch recovery in a rocky intertidal community. Marine Ecology Progress Series, 133, 217-228.

小林美樹(2014). 紅藻の黄化に関する生理生態学的研究, 東京海洋大学博士論 文

Korbee, N., Figueroa, F. L., & Aguilera, J. (2005). Effect of light quality on the accumulation of photosynthetic pigments, proteins &

mycosporine-like amino acids in the red alga Porphyra leucosticta (Bangiales, Rhodophyta). Journal of Photochemistry & Photobiology B:

Biology, 80, 71-78.

Latham, H. (2008). Temperature stress-induced bleaching of the coralline alga Corallina officinalis: A role for the enzyme bromoperoxidase.

Bioscience Horizons, 1, 104-113.

Lobban, P. H. (1994). Seaweed Ecology & Physiology. Cambridge University Press.

Lüning, K. (1990). Seaweeds: their environment, biogeography &

ecophysiology. Wiley, New York.

31

Lynn M. Hodgson. (1981). Photosynthesis of the red alga Gastroclonium coulteri (Rhodophyta) in response to changes in temperature, light intensity and desiccation. Journal of Phycology, 17, 1, 37-42.

Martone, P. T., Alyono, M., & Stites, S. (2010). Bleaching of an intertidal coralline alga: Untangling the effects of light, temperature, &

desiccation. Marine Ecology Progress Series, 416, 57-67.

Metaxas, A., & Scheibling, R. E. (1993). Community structure &

organization of tidepools. Marine Ecology Progress Series, 98, 187-198.

Pollock, F. M., & Pickett-Heaps, J. D. (2005). Spatial determinants in morphogenesis: Recovery from plasmolysis in the diatom Ditylum. Cell Motility & the Cytoskeleton, 60, 71-82.

Schmidt, É. C., Maraschin, M., & Bouzon, Z. L. (2010). Effects of UVB radiation on the carragenophyte Kappaphycus alvarezii (Rhodophyta, Gigartinales): Changes in ultrastructure, growth, & photosynthetic pigments. Hydrobiologia, 649, 171-182.

Scrosati, R., & Dewreede, R. E. (1998). The impact of frond crowding on frond bleaching in the clonal intertidal alga Mazzaella cornucopiae

(Rhodophyta, Gigartinaceae) from British Columbia, Canada. Journal of Phycology, 34, 228-232.

Thimijan, R., & Heins, R. (1983). Photometric, radiometric, & quantum light units of measure: a review of procedures for interconversion.

HortScience, 18, 818-822.

Vicré, M., Farrant, J. M., & Driouich, A. (2004). Insights into the cellular mechanisms of desiccation tolerance among angiosperm resurrection plant species. Plant, Cell & Environment, 27, 1329-1340.

Wiencke, C. (2013). Seaweed biology: novel insights into ecophysiology, ecology & utilization. Choice Reviews Online .

Zaneveld, J. S. (1969). Factors Controlling the Delimitation of Littoral Benthic Marine Algal Zonation. American Zoologist, 9, 367-391.

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https://www.data.jma.go.jp/obd/stats/etrn/select/prefecture00 (2020年3 月5日)

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