Richness and biomass distribution of the mangrove macroalgal association in a subtropical estuary

Authors

  • Inara Regina Wengratt Mendonça
  • Paulo da Cunha Lana

DOI:

https://doi.org/10.1590/2675-2824069.21006irwm

Keywords:

Bostrychia, Salinity gradient, Hierarchical sampling, Spatial scales

Abstract

The richness and biomass distribution of mangrove macroalgae were evaluated along the main salinity gradient of the
Paranaguá Bay subtropical estuarine complex in southern Brazil. We used a spatially hierarchical design to investigate the
spatial scales that contributed most to the variation in richness and biomass within the association. A total of eighteen taxa
of macroalgae and cyanobacteria were identified with nonlinear patterns of distribution. While richness correlated with
the salinity gradient, algal biomass did not follow the predicted pattern. Conversely, most of the mangrove macroalgae
distribution patterns were more related to small-scale processes than to salinity variation. These results indicated that
even though coastal regions are exposed to large-scale environmental processes, the somewhat disregarded small-scale
processes should be also considered to unravel patterns in biological distributions.

References

ALVES, A. M., MOURA, C. W. N., ALVES G. L. & GESTINARI, L.

M. S. 2009. Os gêneros Chaetomorpha Kütz. nom. cons.

e Rhizoclonium Kütz. (Chlorophyta) do litoral do Estado

da Bahia, Brasil. Revista Brasileira de Botânica, 32(3), 545-

ARBIZU, P. M. 2017. pairwiseAdonis: pairwise multilevel comparison using Adonis. R package version 0.4 [online]. San Francisco: GitHub, Inc. Available at: https://github.com/pmartinezarbizu/pairwiseAdonis [Accessed: 2020 Dec 02].

BATTELLI, C. 2004. Phytocoenological study of the Catenella

caespitosa (Withering) L.M. Irvine (Gigartinales, Rhodophyceae) community from the Slovenian coast, northern Adriatic Sea. Acta Adriatica, 45(2), 121-130.

BATES, D., MAECHLER, M., BOLKER, B. & WALKER, S. 2015. Fitting

linear mixed-effects models using lme4. Journal of Statistical Software, 67(1), 1-48.

BILLAH, M. M., KAMAL, A. H. M., IDRIS, M. H. B. & ISMAIL, J. B.

Seasonal variation in the occurrence and abundance

of mangrove macroalgae in a Malaysian estuary. Cryptogamie Algologie, 37(2), 109-120.

BISSON, M. A. & KIRST, G. O. 1995. Osmotic acclimation and turgor pressure regulation in algae. Naturwissenschaften 82,

-471.

BOUZON, Z. L. & OURIQUES, L. C. 1999. Occurrence and distribution of Bostrychia and Caloglossa (Rhodophyta, Ceramiales) in the Ratones River mangrove, Florianópolis-SC-Brazil.

Insula, 28, 43-52.

CLARKE, K. R. 1993. Non-parametric multivariate analyses of

changes in community structure. Australian Journal of Ecology, 18(1), 117-143.

COLLADO-VIDES, L. & WEST, J. A. 1996. Bostrychia calliptera

(Montagne) Montagne (Rhodomelaceae, Rhodophyta), registro nuevo para el centro del Golfo de México. Ciencias

Marinas, 22(2), 47-55.

CORDEIRO-MARINO, M. 1978. Rodofíceas bentônicas matinhas

do Estado de Santa Catarina. Rickia, 7, 1-243.

CUNHA, S. R. & COSTA, C. S. B. 2002. Gradientes de salinidade e

freqüência de alagamento como determinantes da distribuição e biomassa de macroalgas associadas a troncos de

manguezais na Baía de Babitonga, SC. Notas Técnicas Facimar, 6(1), 93-102.

CUNHA, S. R., NASCIMENTO, J. R., LIMA, G. B., ZACHARJASIEWICZ, G., CRESTANI, D. E. V., MAFRA JUNIOR, L. L., PAZETO, F. D.,

SANT’ANNA, F. & COSTA, C. S. B. 1999. Distribuição e biomassa

de macroalgas em um manguezal da Baía da Babitonga, SC: resultados preliminares. Notas Técnicas Facimar, 3(1), 1-15.

DAWES, C., SIAR, K. & MARLETT, D. 1999. Mangrove structure,

litter and macroalgal productivity in a northern-most forest

of Florida. Mangroves and Salt Marshes, 3, 259-267.

FERNANDES, M. E. B. & ALVES, E. F. S. 2011. Occurrence and

distribution of macroalgae (Rhodophyta) associated with

mangroves on the Ajuruteua Peninsula, Bragança, Pará,

Brazil. UAKARI, 7(2), 35-42.

Macroalgae distribution in a subtropical estuary

Ocean and Coastal Research 2021, v69:e21032 11

Mendonça and Lana

FERNANDES, M. E. B., SILVA, E. S., LIMA, J. F., VARELA, E. S., HERCOS, A. P., FERNANDES, C. M., ARRUDA, C. C. B., GOMES, G.,

SANTOS, H., SOARES, C. & SARAIVA, R. M. 2005. Distribuição

espacial das macroalgas associadas às florestas de mangue

na península de Ajuruteua Bragança-Pará. Boletim do Laboratório de Hidrobiologia, 18(1), 11-17.

GUIRY, M. D. & GUIRY, G. M. 2021. AlgaeBase. World-wide electronic publication. Galway: National University of Ireland.

HADLICH, R. M. & BOUZON, Z. L. 1985. Contribuição ao levantamento taxonômico das algas marinhas do mangue de

Itacorubi – Florianópolis – Ilha de Santa Catarina – Brasil – II

Rhodophyta. Ínsula, 15, 89-116.

HEITHAUS, E. R., HEITHAUS, P. A., HEITHAUS, M. R., BURKHOLDER, D. & LAYMAN, C. A. 2011. Trophic dynamics in a relatively pristine subtropical fringing mangrove community.

Marine Ecology Progress Series, 428, 49-61.

HILL, R., BELLGROVE, A., MACREADIE, P. I., PETROU, K., BEARDALL, J., STEVEN, A. & RALPH, P. J. 2015. Can macroalgae

contribute to blue carbon? An Australian perspective. Limnology and Oceanography, 60(5), 1689-1706.

HORNE, J. K. & SCHNEIDER, D. V. 1995. Spatial variance in ecology. OIKOS, 74, 18-26.

JOLY, A. B. 1957. Contribuição ao conhecimento da flora ficológica marinha da Baía de Santos e arredores. Boletim da

Faculdade de Filosofia, Ciências e Letras – USP, 14, 199.

JOLY, A. B. 1965. Flora marinha do litoral norte do Estado de São

Paulo e regiões circunvizinhas. Separata do Boletim nº 294.

Boletim da Faculdade de Filosofia, Ciências e Letras – USP, 21,

JOLY, A. B. 1967. Gêneros de algas marinhas da costa Atlântica

Latino-Americana. São Paulo: EDUSP.

KARSTEN, U. 2012. Seaweed acclimation to salinity and desiccation stress. In: WIENCKE, C. & BISCHOF, K. (eds.). Seaweed

biology. Heidelberg: Springer-Verlag, pp. 87-107.

KARSTEN, U., BARROW, K. D., NIXDORF, O. & KING, R. J. 1996.

The compability with enzyme activity of unusual organic

osmolytes from mangrove red algae. Australian Journal of

Plant Physiology, 23(5), 577-582.

KARSTEN, U., WEST, J. A., MOSTAERT, A. S., KING, R. J., BARROW,

K. D. & KIRST, G. O. 1992. Mannitol in the red algal genus

Caloglossa (Harvey) J. Agardh. Journal of Plant Physiology,

, 292-297.

KIECKBUSCH, D. K., KOCH, M. S., SERAFY, J. E. & ANDERSON, W.

T. 2004. Trophic linkages among primary producers and

consumers in fringing mangroves of subtropical lagoons.

Bulletin of Marine Science, 74(2), 271-285.

LAMY, T., REED, D. C., RASSWEILER, A., SIEGEL, D. A., KUI, L., BELL,

T. W., SIMONS, R. D. & MILLER, R. J. 2018. Scale-specific drivers of kelp forest communities. Oecologia, 186(1), 217-233.

LANA, P. C., MARONE, E., LOPES, R. M. & MACHADO, E. C. 2001.

The subtropical estuarine complex of Paranaguá Bay, Brazil.

In: SEELIGER, U. & KJERFVE B. (eds.). Coastal marine ecosystem of Latin America. Ecological Studies (Analysis and Synthesis). Berlin: Springer, pp. 131-145.

MANN, F. D. & STEINKE, T. D. 1988. Photosynthetic and respiratory responses of the mangrove-associated red algae,

Bostrychia radicans and Caloglossa leprieurii. South African

Journal of Botany, 54(3), 203-207.

MARONE, E., MACHADO, E. C., LOPES, R. M. & SILVA, E. T. 2005.

Land-ocean fluxes in the Paranaguá Bay estuarine system,

southern Brazil. Brazilian Journal of Oceanography, 53(3-4),

-181.

MCGARIGAL, K., WAN, H. Y., ZELLER, K. A., TIMM, B. C. & CUSHMAN, S. A. 2016. Multi-scale habitat selection modeling: a

review and outlook. Landscape Ecology, 31, 1161-1175.

MELVILLE, F. & PULKOWNIK, A. 2006. Investigation of mangrove

macroalgae as bioindicators of estuarine contamination.

Marine Pollution Bulletin, 52(10), 1260-1269.

MELVILLE, F. & PULKOWNIK, A. 2007. Seasonal and spatial variation in the distribution of mangrove macroalgae in the

Clyde River, Australia. Estuarine Coastal and Shelf Science,

(3-4), 683-690.

MELVILLE, F., PULKOWNIK, A. & BURCHETT, M. 2005. Zonal and

seasonal variation in the distribution and abundance of

mangrove macroalgae in the Parramatta River, Australia.

Estuarine Coastal and Shelf Science, 64(2-3), 267-276.

OKSANEN, L., BLANCHET, F. G., FRIENDLY, M., KINDT, R., LEGENDRE, P., MCGLINN, D., MINCHIN, P. R., O’HARA, R. B., SIMPSON,

G. L., SOLYMOS, P., STEVENS, M. H. H., SZOECS, E. & WAGNER,

H. 2020. Vegan: Community Ecology Package. R package version 2.5-7 [online]. US: Scientific Research Publishing, Inc.

Available at: https://CRAN.R-project.org/package=vegan

[Accessed: 2020 Dec 02].

PEDROCHE, F. E., WEST, J. A., ZUCCARELLO, G. C., SENTIES, A. G.

& KARSTEN, U. 1995. Marine red algae of the mangroves in

Southern Pacific Mexico and Pacific Guatemala. Botanica

Marina, 38, 111-119.

PEÑA, E. J., ZINGMARK, R. & NIETCH, C. 1999. Comparative photosynthesis of two species of intertidal epiphytic macroalgae on mangrove roots during submersion and emersion.

Journal of Phycology, 35(6), 1206-1214.

PEÑA-SALAMANCA, E. J. 2008. Dinámica espacial y temporal de

la biomasa algal asociada a las raíces de mangle en la Bahía

de Buenaventura, Costa Pacífica de Colombia. Boletín de Investigaciones Marinas y Costeras, 37(2), 55-70.

POST, E. 1936. Systematische und pflanzengeographische Notizen

zur Bostrychia-Caloglossa Assoziation. Revue Algologie, 9, 1-84.

R CORE TEAM. 2020. R: A language and environment for statistical computing [online]. Vienna: R Foundation for Statistical

Computing. Available at: https://www.R-project.org/ [Accessed: 2021 Jan 15].

REINE, W. F. P. & MARCHAND, R. P. 1983. Red algae found on

European salt-marshes. II. Catenella caespitosa (Rhabdoniaceae). Aquatic Botany, 15, 287-298.

SÁNCHEZ DE PEDRO, R. S., KARSTEN, U., NIELL, F. X. & CARMONA, R. 2016. Intraspecific phenotypic variation in two estuarine rhodophytes across their intertidal zonation. Marine

Biology, 163(10), 220-234.

SANDRINI-NETO, L. & CAMARGO, M. G. 2020. GAD: an R package

for ANOVA designs from general principles [online]. US: CRAN

– R Project. Available at: http://cran.r-project.org/web/packages/GAD [Accessed: 2020 Dec 02].

SANDRINI-NETO, L. & LANA, P. C. 2012. Distribution patterns of

the crab Ucides cordatus (Brachyura, Ucididae) at different

spatial scales in subtropical mangroves of Paranaguá Bay

(southern Brazil). Helgoland Marine Research, 66, 167-174.

Macroalgae distribution in a subtropical estuary

Ocean and Coastal Research 2021, v69:e21032 12

Mendonça and Lana

SEANGKAEW, J., BOVONSOMBUT, S. & PEERAPORNPISAL, Y.

Species diversity and distribution of mangrove-associated red alga Bostrychia (Rhodomelaceae, Rhodophyta)

from southern Thailand. International Journal of Applied Environmental Sciences, 11(1), 55-71.

SLUIMAN, H. J. 1978. A note on Bostrychia scorpioides (Hudson)

Montagne ex Kützing and B. montagnei harvey (Rhodomelaceae, Rhodophyta). Blumea, 24, 301-305.

SPIER, D., GERUM, H. L. N., NOERNBERG, M. A. & LANA, P. C. 2016.

Flood regime as a driver of the distribution of mangrove

and salt marsh species in a subtropical estuary. Journal of

Marine Systems, 161, 11-25.

STEINKE, T. D., LUBKE, R. A. & WARD, C. J. 2003. The distribution

of algae epiphytic on pneumatophores of the mangrove,

Avicennia marina, at different salinities in the Kosi System.

South African Journal of Botany, 69(4), 546-554.

UNDERWOOD, A. J. 1997. Experiments in ecology. Their logical

design and interpretation using analysis of variance. Melbourne: Cambridge University Press.

VIEIRA, E. A., FILGUEIRAS, H. R., BUENO, M., LEITE, F. P. P. & DIAS,

G. M. 2018. Co-occurring morphologically distinct algae support a diverse associated fauna in the intertidal zone of

Araçá Bay, Brazil. Biota Neotropica, 18(1), 1-8.

WESSEL, P. & SMITH, W. H. F. 1996 A global self-consistent, hierarchical, high-resolution shoreline database. Journal Geophysics Research, 101(B4), 8741-8743. Available at: https://

www.ngdc.noaa.gov/mgg/shorelines/ [Accessed: 2019 Nov

.

WEST, J. A., HOMMERSAND, M. & ZUCCARELLO, G. C. 2001.

Morphology and reproduction of Bostrychia pinnata (Rhodomelaceae, Ceramiales) in laboratory culture. Phycologial

Research. 49, 285-297.

YARISH, C. & EDWARDS, P. 1982. A field and cultural investigation of the horizontal and seasonal distribution of estuarine

red algae of New Jersey. Phycologia, 21(2), 112-124.

YOKOYA, N. S., PLASTINO, E. M., BRAGA, M. R. A., FUJII, M. T.,

CORDEIRO-MARINO, M., ESTON, V. R. & HARARI, J. 1999.

Temporal and spatial variations in the structure of macroalgal communities associated with mangrove trees of Ilha do

Cardoso, São Paulo state, Brazil. Revista Brasileira de Botânica, 22(2), 195-204.

ZHANG, Y., LI, Y., SHI, F., SUN, X. & LIN, G. 2014. Seasonal and

spatial variation in species diversity, abundance, and

element accumulation capacities of macroalgae in mangrove forests of Zhanjiang, China. Acta Oceanologica Sinica, 33(8), 73-82.

Downloads

Published

27.06.2022

How to Cite

Richness and biomass distribution of the mangrove macroalgal association in a subtropical estuary. (2022). Ocean and Coastal Research, 69. https://doi.org/10.1590/2675-2824069.21006irwm