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Journal Article

Effects of photoperiod and light spectra on growth and pigment composition of the green macroalga Codium tomentosum

Rúben Marques; Sónia Cruz; Ricardo Calado; Ana Lillebø; Helena Abreu; Rui Pereira; Bárbara Pitarma; Jorge Marques da Silva; Paulo Cartaxana
Journal of Applied Phycology · Vol. 33, Issue 1 · pp. 471-480 · 2021

Abstract

Codium tomentosum is a marine green macroalga with multiple value-added applications that is being successfully used as an extractive species in sustainable integrated multi-trophic aquaculture systems. Nonetheless, growth conditions of this species at an early development phase still require optimization. The present study addresses, under controlled laboratory conditions, the effects of photoperiod (long vs. short-day) and light spectra (white, blue, and red light) on growth and pigment composition of C. tomentosum. Relative growth rate was approximately 2× higher under long-day photoperiod (average of 39.2 and 20.1% week −1 for long and short-day, respectively). Concentrations per dry weight of major pigments such as chlorophyll a (Chl a ) and siphonoxanthin (Siph) were significantly higher under long-day photoperiod. Relative growth rates were higher under red light, intermediate under white light, and lower under blue light. These last results were rather surprising, as Siph-Chl a /Chl b light harvesting complexes of Codium have increased absorption in the blue-green region of the light spectra. Changes in carbon allocation patterns caused by the spectral composition of light and overgrowth of green microalgae in blue light cultures could explain the differences recorded for relative growth rate. Long-day photoperiod and light sources with preferential emission at the red region of the light spectra were identified as optimal for growth of C. tomentosum at early development stages. These lighting conditions can reduce the time required to reach the necessary biomass before transfer to grow-out systems. Overall, these findings can shorten production time, increase macroalgal productivity, and enhance aquaculture revenues.

Bibliographic Information

JournalJournal of Applied Phycology
PublisherSpringer
Publication Date2021-02-01
Publication Year2021
Volume33
Issue1
Pages471-480
Document TypeJournal Article
Print ISSN0921-8971
eISSN1573-5176
DOI10.1007/s10811-020-02289-9

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NARA Access Coverage1989-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10811
Publisher PageOpen Publisher Page
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