Evaluating the formation of secondary attachment discs of Chondracanthus chamissoi (yuyo) under semi-controlled cultivation conditions

Authors

  • Diocelina Huaman Fernandez
  • Paul Baltazar Guerrero Universidad Científica del Sur
  • Samuel Arbaiza-Quispe
  • Orlando Advíncula Zeballos Universidad Cientifica del Sur

DOI:

https://doi.org/10.25268/bimc.invemar.2024.53.2.1269

Keywords:

Chondracanthus chamissoi, vegetative propagation, secondary attachment discs

Abstract

Chondracanthus chamissoi is a commercially important algae used as raw material in direct human consumption and carrageenan extraction. This species is cultivated via vegetative propagation and through the production of spores; however, there is a lack of information on techniques for early-stage secondary attachment discs (SAD) formation under laboratory conditions. The present
work aimed to determine the formation of DFS in function of different initial cultivation conditions, using Argopecten purpuratus shells as natural substrate for the SAD fixation, factorially varying the inoculum (washed algae and unwashed), the type of substrate (biologized; unbiologized) and the water (treated, untreated). Our results showed significant SAD formation of C. chamissoi in the treatments where the algae were washed and average of 1 - 21 SAD / shell was accounted. On the other hand, a significant increase in SAD is observed in the interaction of the treatments where the water was treated and untreated water or biologized and unbiologized. Therefore, we consider that cleaning protocols in the initial stages is essential for this type of cultivation by vegetative propagation. 

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References

Acleto, C. 1986. Algunos aspectos biológicos de Gigatina chamissoi (C. Ag.) J. Agardh (Rhodophyta, Gigartinales). Rev. Cienc. 74 (1): 38-47

Alsufyani, T., G. Califano, M. Deicke, J. Grueneberg, A. Weiss, A. Engelen, M. Kwantes, J. Frieder, J. Ulrich and T. Wichard. 2020. Macroalgal–bacterial interactions: identification and role of thallusin in morphogenesis of the seaweed Ulva (Chlorophyta). J. Exp. Bot. 71 (11) :3340–3349. https://doi.org/10.1093/jxb/eraa066

Alveal, K. 2001. Estrategias reproductivas de Rhodophyta y sus nexos con biodiversidad: 367-388. En Alveal, K y T Antezana (Eds). Sustentabilidad de la biodiversidad. Univ. Concepción, Chile.

Arbaiza, S. 2016. Viabilidad reproductiva para el cultivo de Chondracanthus chamissoi proveniente de tres poblaciones del litoral peruano. Tesis M. Sc Aquac., Univ. Nacional Agraria La Molina, Perú. 114 p. https://hdl.handle.net/20.500.12996/2772

Arbaiza, S., P. Gil-Kodaka., N. Arakaki y K. Alveal. 2019. Primeros estadios de cultivo a partir de carpóporas de Chondracanthus chamissoi de tres localidades de la costa peruana. Rev. Biol. Mar. Oceanogr., 54 (2): 198-207. https://doi.org/10.22370/rbmo.2019.54.2.1901

Arbaiza, S., J. Ávila-Peltroche, M. Castañeda-Franco, A. Mires-Reyes, O. Advíncula and P. Baltazar. 2023. Vegetative propagation of the commercial red seaweed Chondracanthus chamissoi in Peru by secondary attachment disc during indoor cultivation. Plants, 12(10): 1940. https://doi.org/10.3390/plants12101940

Ávila-Peltroche, J. and J. Padilla-Vallejos. 2020. The seaweed resources of Peru. Bot. Mar. 63(4): 381-394. https://doi.org/10.1515/bot-2020-0026

Basaure, H., J. Macchiavello, C. Sepúlveda, F. Sáez, D. Yáñez, L. Vega and C Marín. 2021. Sea bottom culture of Chondracanthus chamissoi (Rhodophyta: Gigartinales) by vegetative propagation at Puerto Aldea, Tongoy Bay (northern Chile). Aquac. Res. 52: 2025-2035. https://doi.org/10.1111/are.15051

Bulboa, C. 2006. Bases bio-tecnológicas para o cultivo de Chondracanthus chamissoi, uma alga vermelha de importância econômica da costa chilena. Tese Doutor. Univ. São Paulo. 131 p.

Bulboa, C. and J. Macchiavello. 2006. Cultivation of cystocarpic, tetrasporic and vegetative fronds of Chondracanthus chamissoi (Rhodophyta, Gigartinales) on ropes at two localities in northern Chile. Invest. Mar., 34 (1): 109–112. http://dx.doi.org/10.4067/S0717-71782006000100010

Bulboa, C., K. Véliz, F. Sáez, C. Sepúlveda, L. Vega and J. Macchiavello. 2013. A new method for cultivation of the carragenophyte and edible red seaweed Chondracanthus chamissoi based on secondary attachment disc: Development in outdoor tanks. Aquaculture. 410-411: 86-94. https://doi.org/10.1016/j.aquaculture.2013.06.018

Calderón, M., M. Ramírez y D. Bustamante. 2010. Notas sobre tres especies de Gigartinaceae (Rhodophyta) del litoral peruano. Rev. Per. Biol., 17(1): 115- 121.

Castañeda, M., S. Arbaiza, F. Diaz, Y. Castillo, P. Baltazar y O. Advíncula. 2018. Evaluación del fotoperiodo en el asentamiento de tetraesporas de Chondracanthus chamissoi sobre cuerdas de polipropileno en condiciones semi-controladas de laboratorio. An. Cient., 79 (2): 459 – 465. https://doi.org/10.21704/ac.v79i2.1256

Colque, L. 2017. Evaluación del crecimiento de cultivo vegetativo de Chondracanthus chamissoi, utilizando fertilizante comercial Bayfolan y medio Guillard f/2, en condiciones de laboratorio en el Centro de Acuicultura de Morro Sama del Fondepes. Tesis Ing. Pesq. Univ. Nal. Jorge Basadre Grohmann, Perú. 124 p.

Espi, A., D. Robledo and L. Hayashi. 2019. Development of seaweed cultivation in Latin America: Current trends and prospects. Phycologia, 58(5): 462–471.

https://doi.org/10.1080/00318884.2019.1640996

Fletcher, R. 1995. Epiphytism and fouling in Gracilaria cultivation: an overview. J. Appl. Phycol., 7 (3): 325-333. https://doi.org/10.1007/BF00004006

Flores, D., J. Zavala, S. Donayre, A. Guardia y H. Sarmiento. 2015. Evaluación poblacional de Chondracanthus chamissoi (C. Agardh, 1820) en las bahías de Pisco y Paracas, otoño 2010. Inf. Inst. Mar. Perú, 42(4): 504-509. https://repositorio.imarpe.gob.pe/handle/20.500.12958/2998

Fonck, E., R. Martínez, J. Vásquez and C. Bulboa. 2008. Factors that affect the re-attachment of Chondracanthus chamissoi (Rhodophyta, Gigartinales) thalli. J. Appl. Phycol., 20 (3): 311-314. https://doi.org/10.1007/s10811-007-9251-y Hayakawa, Y., K. Kawata, K. Machida, S. Yamano, S. Akita and D Fujita. 2017. Phenology of Chondracanthus tenellus (Rhodophyta) in the central Pacific coast of Honshu, Japan. J. Appl. Phycol., 29 (5): 2547-2556. https://doi.org/10.1007/s10811-017-1110-x

Hurd, C.L., P. Harrison, K. Bischof and C. Lobban. 2014. Seaweed ecology and physiology. 2nd ed. Cambridge Univ. Press. https://doi:10.1017/ CBO9781139192637

Icochea, E. 2008. Bases biológicas para el manejo del recurso Chondracanthus chamissoi en el litoral marino de Huanchaco, Departamento La Libertad, Perú. Tesis Maest., Univ. Nal. Trujillo, Perú. 50 p.

Lobban, R. and P. Harrison. 1994. Seaweed ecology and physiology. Cambridge.

Macchiavello, J., C. Bulboa and M. Edding. 2003. Vegetative propagation and spore-based recruitment in the carrageenophyte Chondracanthus chamissoi (Gigartinales, Rhodophyta) in northern Chile. Phycol. Res., 51(1): 45–50. https://doi.org/10.1046/j.1440-1835.2003.00292.x

Macchiavello, J., C. Bulboa, C. Sepúlveda, K. Véliz, F. Sáez, L. Vega y R. Véliz. 2012. Manual de cultivo de Chondracanthus chamissoi (Chicorea de mar). Proyecto Huam Fondef. Univ. Católica Norte. Chile. 45 p.

Macchiavello, J., C. Sepúlveda, H. Basaure, F. Sáez, D. Yáñez, C. Marín and L. Vega. 2017. Suspended culture of Chondracanthus chamissoi (Rhodophyta: Gigartinales) in Caleta Hornos (northern Chile) via vegetative propagation with secondary attachment discs. J. Appl. Phycol., 30 (2): 1149–1155. https://doi.org/10.1007/s10811-017-1307-z

Meusnier, I., J.L. Olsen, W.T. Stam, C. Destombe and M. Valero. 2001. Phylogenetic analyses of Caulerpa taxifolia (Chlorophyta) and of its associated bacterial microflora provide clues to the origin of the Mediterranean introduction. Mol. Ecol., 10: 931-946. https://doi.org/10.1046/j.1365-294X.2001.01245.x

Murray, A., E. Kumpel, R. Peletz, R. Khush and D. Lantagne. 2018. The effect of sodium thiosulfate dechlorination on fecal indicator bacteria enumeration: laboratory and field data. J. Water Health, 16(1): 70-77. https://doi.org/10.2166/wh.2017.077

Otaíza, R. y J. Cáceres. 2015. Manual de una técnica para el repoblamiento de chicoria de mar, Chondracanthus chamissoi (C. Agardh) Kützing (Rhodophyta, Gigartinales), en praderas naturales, Región del Biobío. Proyecto Fondef-Huam AQ12I0004. Chile. 40 p.

Oyarzo, S., M. Ávila, P. Alvear, J. Remonsellez., L. Contreras-Porcia and C. Bulboa. 2021. Secondary attachment disc of edible seaweed Chondracanthus chamissoi (Rhodophyta, Gigartinales): Establishment of permanent thalli stock. Aquaculture, 530: 735954. https://doi.org/10.1016/j.aquaculture.2020.735954

Pacheco-Ruíz, I., J. Zertuche-González and J. Espinoza-Ávalos. 2005. The role of secondary attachment discs in the survival of Chondracanthus squarrulosus (Gigartinales, Rhodophyta). Phycologia, 44 (6): 629–631. https://doi.org/10.2216/0031-884(2005)44[629:TROSAD]2.0.CO;2

Pariona, E. y P. Gil-Kodaka. 2011. Colonización de Chondracanthus chamissoi (Rhodophyta, Gigartinales) sobre sustratos calcáreos en Playa Mendieta, Reserva Nacional de Paracas. An. Cient., 72 (1): 19-26. https://doi.org/10.21704/ac.v72i1.854

Produce. 2019. Anuario estadístico pesquero y acuícola. Perú. 200 p.

https://ogeiee.produce.gob.pe/index.php/en/shortcode/oee-documentos-publicaciones/

publicaciones-anuales/item/949-anuario-estadistico-pesquero-y-acuicola-2019 26/01/23

Produce. 2021. Anuario estadístico pesquero y acuícola. Perú. 189 p. https://ogeiee.produce.gob.pe/index.php/en/shortcode/oee-documentos-publicaciones/

publicaciones-anuales/item/1080-anuario-estadistico-pesquero-y-acuicola-2021 26/01/23

Ramírez, M.E. y B. Santelices. 1991. Catálogo de las algas marinas bentónicas de la costa temperada del Pacífico Sudamericano. Monogr. Biol.. Pont. Univ. Cat. Chile. 437 p.

Riofrío, O. 2003. Efecto de la variabilidad térmica sobre la biología vegetativa y reproductiva de Chondracanthus chamissoi (Agardh) Kützing (Rhodophyta) en la bahía de Ancón, Perú. Tesis Biol. Univ. Nacional Mayor de San Marcos, Perú. 41 p.

Sáez, F and J. Macchiavello. 2018. Secondary attachment discs: a new alternative for restoring populations of Chondracanthus chamissoi (Gigartinales, Rhodophyta). Lat. Am. J. Aquat. Res., 46 (1): 140-146. http://dx.doi.org/10.3856/vol46-issue1-fulltext-14

Sáez, F., J. Macchiavello, E. Fonck and C. Bulboa. 2008. The role of the secondary attachment disc in the vegetative propagation of Chondracanthus chamissoi (Gigartinales; Rhodophyta). Aquat. Bot., 89 (1): 63-65. https://doi.org/10.1016/j.aquabot.2008.01.004

Singh, R.P. and C.R.K. Reddy. 2014. Seaweed–microbial interactions: key functions of seaweed-associated bacteria. FEMS Microbiol. Ecol., 88: 213-230.

https://doi.org/10.1111/1574-6941.12297

Singh, A., P.S. Nigam and J.D. Murphy. 2011. Renewable fuels from algae: an answer to debatable land based fuels. Bioresour. Technol., 102 (1): 10–16.

https://doi.org/10.1016/j.biortech.2010.06.032

Suárez, S. 2019. Filogeografía del alga Chondracanthus chamissoi (Gigartinaceae, Rhodophyta) en la costa peruana usando marcadores moleculares. Tesis

Ing. Pesq., Univ. Nal. Agraria La Molina, Perú. 77 p.

The R Foundation for Statistical Computing. Platform: x86_64-w64-mingw32/x64 (64 bits).

Vásquez, J. and J. Vega. 2001. Chondracanthus chamissoi (Rhodophyta, Gigartinales) in northern Chile: ecological aspects for management of wild population.

J. Appl. Phycol., 13 (3): 267-277. https://doi.org/10.1023/A:1011152922832

Zapata-Rojas, J., A. Gonzales-Vargas y S. Zevallos-Feria. 2020. Estudio comparativo para propagación vegetativa de Chondracanthus chamissoi, Yuyo, sobre tres tipos de sustrato en ambiente controlado y su viabilidad en la región Moquegua. Enf. UTE. 11 (4): 37-47. https://doi.org/10.29019/enfoqueute.v11n4.642

Tratamiento del sustrato, sin biologizado con formación de biofilms

Published

2024-07-02

How to Cite

1.
Huaman Fernandez D, Baltazar Guerrero P, Arbaiza-Quispe S, Advíncula Zeballos O. Evaluating the formation of secondary attachment discs of Chondracanthus chamissoi (yuyo) under semi-controlled cultivation conditions. Bol. Investig. Mar. Costeras [Internet]. 2024 Jul. 2 [cited 2024 Nov. 21];53(2):31-44. Available from: http://boletin.invemar.org.co/ojs/index.php/boletin/article/view/1269
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