Zobrazeno 1 - 10
of 70
pro vyhledávání: '"Hikaru, Endo"'
Autor:
Hikaru Endo, Masafumi Kodama, Ryoya Kawashima, Momochika Kumagai, Midori Matsuoka, Keigo Ebata, Suguru Okunishi
Publikováno v:
Plants, Vol 13, Iss 12, p 1689 (2024)
Most canopy-forming macroalgae have disappeared from temperate reefs in southern Japan, one of the ocean warming hotspots, but Sargassum nipponicum is surviving in this region. As this species’ annual shoots emerge from holdfasts during summer, bot
Externí odkaz:
https://doaj.org/article/d5b2bc23e8804bfdae0afc6c0aca7c8a
Publikováno v:
Frontiers in Marine Science, Vol 10 (2023)
Aquaculture of marine macroalgae (i.e. seaweeds) such as the kelp Undaria pinnatifida is expected to contribute to future food and biomass production. Although macroalgal survival, biomass, and morphology are strongly affected by the density of indiv
Externí odkaz:
https://doaj.org/article/9036e2eb4b894413938486ffa1b52af9
Autor:
Yoichi Sato, Gregory N. Nishihara, Atsuko Tanaka, Dominic F. C. Belleza, Azusa Kawate, Yukio Inoue, Kenjiro Hinode, Yuhei Matsuda, Shinichiro Tanimae, Kandai Tozaki, Ryuta Terada, Hikaru Endo
Publikováno v:
Frontiers in Marine Science, Vol 9 (2022)
The important role of vegetated ecosystems in the sequestration of carbon has gained strong interest across a wide variety of disciplines. With evidence growing of the potential for macroalgae ecosystems to capture carbon, there is burgeoning interes
Externí odkaz:
https://doaj.org/article/6a8b45cf8e7b4af8a17edbd98b6eaf45
Autor:
Hikaru Endo, Xu Gao
Publikováno v:
Frontiers in Marine Science, Vol 9 (2022)
In order to understand how global warming effects on ecosystem primary production may change depending on nutrient enrichment, a new classification is proposed to disentangle and recognize the combination of interactions among several factors, based
Externí odkaz:
https://doaj.org/article/a582603aac8a4fe88d212582118a452c
Publikováno v:
Antioxidants, Vol 12, Iss 2, p 357 (2023)
Plants and brown algae avoid photoinhibition (decline in photosystem II efficiency, Fv/Fm) caused by excess light energy and oxidative stress through several photoprotective mechanisms, such as antioxidant xanthophyll production and heat dissipation.
Externí odkaz:
https://doaj.org/article/cbab65cdaa1c4c7db5d8f12084696b62
Publikováno v:
Journal of Marine Science and Engineering, Vol 10, Iss 4, p 479 (2022)
Heatwaves under global warming have negative impacts on ecosystem primary producers. This warming effect may be synergized or antagonized by local environments such as light and nutrient availability. However, little is known about the interactive ef
Externí odkaz:
https://doaj.org/article/f40b15c9c8ca43b792a9a15b6a4933c3
Publikováno v:
Frontiers in Marine Science, Vol 7 (2020)
Heat stress is known to induce photoinhibition, leaf senescence, and nutrient remobilization in terrestrial plants with apical growth, however, its effect on blade erosion and associated-changes in chemical compositions has rarely been studied in mar
Externí odkaz:
https://doaj.org/article/b346ea8ef32e4552aa670e4d902b5644
Autor:
Hikaru Endo, Toru Sugie, Yukiko Yonemori, Yuki Nishikido, Hikari Moriyama, Ryusei Ito, Suguru Okunishi
Publikováno v:
Plants, Vol 10, Iss 8, p 1522 (2021)
Ocean warming and the associated changes in fish herbivory have caused polarward distributional shifts in the majority of canopy-forming macroalgae that are dominant in temperate Japan, but have little effect on the alga Sargassum fusiforme. The rege
Externí odkaz:
https://doaj.org/article/aa1f2d779f7c4f80b0112b9a50a01881
Publikováno v:
Phycological Research. 71:3-12
Autor:
Yo Shinoda, Daitetsu Kato, Ryosuke Ando, Hikaru Endo, Tsutomu Takahashi, Yayoi Tsuneoka, Yasuyuki Fujiwara
Publikováno v:
Pharmaceuticals, Vol 14, Iss 3, p 229 (2021)
5-Aminolevulinic acid (5-ALA) is an amino acid derivative and a precursor of protoporphyrin IX (PpIX). The photophysical feature of PpIX is clinically used in photodynamic diagnosis (PDD) and photodynamic therapy (PDT). These clinical applications ar
Externí odkaz:
https://doaj.org/article/521d94d1d39d4fabb074e3387dc408c6