Research Article - (2021) Volume 11, Issue 3

Checklist of Benthic Marine Macroalgae in Western Algeria

A.Mansouri1, A. Baaloudj2, F. Toumi1, M.A. Bouzidi1 and A. Kerfouf1*
 
*Correspondence: A. Kerfouf, Laboratory for Ecodevelopment of Spaces, Djillali Liabes University, Sidi Bel Abbes, 22000, Algeria, Email: ,

Author info »

Abstract

Generally, the benthic aquatic macroalgae is not well-known in the west coast of Algeria. In this study, a revised checklist of macroalgae of algerian west coast with an updated nomenclature and taxonomy has been update. Using currently accepted names, 22 species and infraspecific taxa of macroalgae have been identified , including Chlorophyta (3orders / 4 families / 6 genera / 8 species), Ochrophyta (4 orders/ 4 families / 5 genera / 5 species), and Rhodophyta (7 orders / 7 families / genera / 7 species). The algal diversity of the algerian west coast within the Arzew Gulf is less than that within the Gulf of Oran. The Rhodophyceae occupy the most important average coverage (47.80%), followed by Chlorophyceae (33.06%) and Pheophyceae (19.14%). Given that this is the first inclusive checklist of macroalgae of west coast, it could serve as a foundation for future phycological and biogeographical studies of the taxa in the country and the region.

https://sporbahisleri.livejournal.com https://wakelet.com/@SporBahisleri67459 https://theomnibuzz.com/author/sporbahisleri/ https://lessons.drawspace.com/profile/322207/sporbahisleri/workflow https://writeupcafe.com/profile/sporbahisleri/ http://www.pearltrees.com/sporbahisleri https://pharmahub.org/members/26874/blog https://www.zupyak.com/u/Spor-Bahisleri/ https://www.metroflog.co/sporbahisleri https://www.fuzia.com/fz/spor-bahisleri https://tr.pinterest.com/sporbahislerim/ https://my.getjealous.com/sporbahisleri https://sporbahisleri.contently.com https://hubpages.com/@sporbahisleri https://www.tumblr.com/sporbahisleri https://hub.docker.com/u/sporbahislerim https://betsiteleri.blogfree.net https://betsiteleri.amebaownd.com https://sporbahisleri.pixnet.net/blog https://betsiteleri.seesaa.net https://betsiteleri.threadless.com https://betsiteleri.neocities.org https://bahissiteleri.localinfo.jp https://betsiteleri.shopinfo.jp https://teletype.in/@betsiteleri https://ubl.xml.org/users/sporbahisleri https://betsiteleri.educatorpages.com https://betsiteleri.onlc.fr https://sporbahisleri.gumroad.com

Keywords

Benthic macroalgae, Checklist, Chlorophyta, Ochrophyta, Rhodophyta, Algerian west coastal.

Introduction

Macrophytes are an indicator of the state of coastal ecosystems, and their study is, therefore, a significant issue. Generally, the benthic macroalgae is not well-known in the west coast of Algeria (Traiche and al., 2018, Bachir Bouidjra, 2012). The diversity of macroalgae in aquatic environments can help assess the health of ecosystems, and provide information on invasions of new species (Ramdani et al., 2020). The absence of synthesis work (Bouidjra, 2010; Borsali et al., 2020) led us to consider the census and update the checklist of marine benthic macroalgae presented in the west coast of Algeria). Other similar research has been carried out in other areas: Ould-Ahmed et al. (2013), Senties and Dreckmann (2013), Vietnam (Van Nguyen, 2013), Iran (Kokabi and Youcefzadi, 2015).

Materials and Methods

Three stations (Mostaganem, Arzew, and Oran) are chosen according to the state of the coastal ecosystem, whether or not it is subject to anthropogenic pressure due to urban, industrial, and port activities (Fig. 1).

ukrainian-journal-ecology-studied-area

Figure 1: Geographical location of the studied area.

Waters supply the Gulf of Oran, and the Gulf of Arzew originated from the Atlantic Ocean, and the circulation seems to be very turbulent along the African continent. These turbulences favor the dispersion of eventual pollution sources and permit such relative significant food chain development (Millot, 1989, Kies and al., 2020). The marine algae were isolated, and each of its individuals was identified according to several determination keys, such as Debray (1893), Boudouresque and Seridi (1989), Birje et al. (1996), Boudouresque and Verlaque (2002), Cabioc'h et al. (2006), Fischer et al. (2007), Ballesteros et al. (2007), Bachir Bouidjra (2012), and AlgaeBase (global algal database of taxonomic, nomenclatural and distributional information).

Results and Discussion

The sampling campaign made it possible to inventory macroalgae in Algerian west coast, and 22 species were harvested. They are divided into 3 taxa: Chlorophyta, Ochrophyta, and Rhodophyta:

1. Ochrophyta / Heterokontophyta (4 orders / 4 families / 5 genera / 5 species )
Class: Phaeophyceae (Fig. 2)

ukrainian-journal-ecology-Chlorophyta-Mansouri

Figure 2: Chlorophyta (Mansouri, 2021).

Order: Ectocarpales
Family: Scytosiphonaceae

Genus: Colpomenia
Species: Colpomenia sinuosa (Mertens ex Roth, Derbès & Solier) 1851

Order: Fucales
Family: Sargassaceae
Genus: Cystoseira
Species: Cytoseira stricta (Sauvageau) 1911
Order: Dictyotales
Family: Dictyotaceae
Genus: Dictyota
Species:Dictyota dichotoma(Huds, J.V. Lamour) 1809
Genus: Padina
Species: Padina pavonica (Linnaeus, Thivy) 1960
Order: Fucales
Family: Sargassaceae
Genus: Sargassum
Species: Sargassum muticum (Yendo, Fensholt) 1955

2. Chlorophyta (3 orders / 4 families / 6 genera / 8 species)
Class: Ulvophyceae (Fig. 3)

ukrainian-journal-ecology-Pheophyta-Mansouri

Figure 3: Phéophyta (Mansouri, 2021).

Order: Bryopsidales
Family: Caulerpaceae
Genus: Caulerpa
Species: Caulerpaprolifera (Forssk., J.V.Lamour.) 1809
Family: Codiaceae
Genus: Codium
Species: Codium Decorticatum (Woodward, M.Howe,) 1911
Genus: Caulerpa
Species: Caulerpa Racemosa (Forsskal, J. Agardh1873)

Order: Cladophorales
Family: Boodleaceae
Genus: Cladophoropsis
Species: Cladophoropsis membranacea (Hofman bang ex C.Agardh, Borgesen) 1905
Order: Ulvales
Family: Ulvaceae
Genus: Enteromorpha
Species: Enteromorpha compressa (Linnaeus) 1753

Genus: Enteromorpha
Species: Enteromorpha intestinalis (Linnaeus) 1753
Genus: Ulva
Species: Ulva lactuca (Linnaeus) 1753
Genus: Ulva
Species : Ulva rigida (C. Agardh, 1823).

3. Rhodophyta (7 orders /7 families / 8 gen/ 7 species)
Class : Florideophyceae (Fig. 4)

ukrainian-journal-ecology-Rhodophyta-Mansouri

Figure 4: Rhodophyta (Mansouri, 2021).

Order: Bonnemaisoniales
Family: Bonnemaisoniaceae
Genus: Asparagopsis
Species: Asparagopsis Armata (Harvey) 1855

Order: Corallinales
Family: Corallinaceae
Genus: Corallina
Species: Corallina Elongata (Lenormand ex Kützing) 1858

Order: Gelidiales
Family: Gelidiaceae
Genus: Gelidium (J.V.Lamour) 1813
Genus: Gelidium
Species: Gelidium crinale (Hare ex Turner, Gaillon) 1828

Order: Gracilariales
Family: Gracilariaceae
Genus: Gracilaria
Species: Gracilis verrucosa (Robert Kaye Greville) 1830
Order: Gigartinales
Family: Cystocloniaceae
Genus: Hypnea
Species: Hypnea Musciformis (Wulfen, J.V.Lamouroux) 1813
Order: Ceramiales
Family: Rhodomelaceae
Genus: Laurencia
Species: Laurencia Papillosa (C. Agardh, Greville) 1830
Genus: Osmundea
Species: Osmundea pinnatifida (Hudson, Stackh) 1809

Order: Peyssonneliales
Family: Peyssonneliaceae
Genus: Peyssonnelia (Decaisne) 1839
Species: Peyssonnelia squamaria (S.G.Gmelin) Decaisne ex J.Agardh 1842.

Conclusion

The macroalgae of the Algerian coast remain little studied (Seridi, 2007; Ould-Ahmed et al., 2019). This study made it possible to inventory macroalgae and assess their diversity in the Algerian west coast coastal zone. The Chlorophyceae are represented particularly by Ulva lactuca with a recovery of 23.8%, and the Phaeophyceae are represented by Padina pavonica with a recovery rate of 17%. The other stations (Arzew and Oran), are characterized by an important general average recovery of Chlorophyceae respectively of 36.36% and 52.53%, with a notable recovery in the two stations,  Ulva lactuca of (25.2%; 27 %) and for Hypenia musiformis (23.2 and 12.8%). It should be noted that the presence of a Pheophycea at these two stations (Oran and Mostaganem) indicating the good environmental condition: Cystoseria stricta with a rate of 17.8% and 12.8%. The species of Caulerpa racemosa, is widely represented in Oran and Arzew, while she is absent in Mostaganem (Ould-Ahmed and Meinesz, 2007; Bachir Bouiadjra et al., 2010). This study deserves to be continued over several annual cycles to better understand the evolution of intertidal macroalgae (Rodriguez-Prieto and Polo, 1996).

References

Algae Base. Available from: https://www.algaebase.org/search/species/

Bachir Bouiadjra, B., Taleb, M.Z., Marouf, A., Benkada, M.Y., Riadi, H. (2010). First record of the invasive alga Caulerpa racemosa (Caulerpales, Chlorophyta) in the Gulf of Arzew (western Algeria). Aquatic Invasions, 5, Suppl. 1, 97-101.

Bachir Bouidjra, B. (2012). Étude de la flore algale benthique et les impacts de ses espèces invasives devant la côte Mostaganemoise. Thèse de doctorat. Université Abdelhamid Ibn Badis de Mostaganem, Algérie, 143p.

Ballesteros, E., Torras, X., Pinedo, S., Garcia, M., Mangialajo, L.,Torres, M. (2007). A new methodology based on littoral community cartography dominated by macroalgae for the implementation of the European Water Framework Directive. Marine Pollution Bulletin,. 55, 172-180.

Birje, J., Verlaque, M., Poydenot, F. (1996). Macrophytobenthos des platiers rocheux intertidaux et semi-exposés de la région de Safi-Essaouira (Maroc occidental). Oceanologica Acta. 19, 561-574.

Borsali, S., Baaloudj, A., Kerfouf. A. (2020). Biochemical study of Ulva lactuca and Cystoseira stricta from Mostaganem coastline (Western Algeria). Ukrainian Journal of Ecology, 10(3), 116-121.

Boudouresque Perrete, M., Seridi, H. (1989). Inventaire des algues marines benthiques d’Algérie. GIS Posidonie. Pub. Marseille. France. 117 p.

Boudouresque, C.F, Verlaque, M. (2002). Biological pollution in the Mediterranean Sea: invasive versus introduced macrophytes. Mar Pollut Bull, 44:32–38

Cabioc'h, J., Floc'h, J., Le Toquin, A., Boudouresque, C., Meinesz, A., Verlaque, M. (2006). Guide des algues des mers d'Europe. Delachaux et Niestié SA, Paris. Vistas in Botany, Pergamon Press, London, 145-171.

Debray F. (1893). Liste des algues marines et d’eau douce récoltées jusqu’à ce jour in Algérie. Bulletin Scientifique de la France et de la Belgique 25: 1–19.

Fischer, W., Bauchot, M.L., Schneider, M. (2007). Fiches FAO d’identification des espèces pour les besoins de la pêche. (Révision 1). Méditerranée et mer Noire. Zone de pêche 37. Volume I. Végétaux et Invertébrés, 760p.

Kies, F., Kerfouf, A., Elegbede, S., Matemilola, P., De Los Rios Escalante, A., Khorchani, S., Savari (2020). Assessment of the coastal and estuarine environment quality of western Algeria using the bioindicator Polychaeta; the genus Nereis. J. Mater. Environ. Sci., 11(9), 1472-1481.

Kokabi, M., Yousefzadi, M. (2015). Checklist of the marine macroalgae of Iran. Botanica Marina

Millot, C. (1989). La circulation générale en Méditerranée occidentale: aperçu de nos connaissances et projets d’études. Ann. Géog., 549 (, XCVII), 498-515.

Ould-Ahmed, N., Meinesz, A. (2007). First record of the invasive alga Caulerpa racemosa (Caulerpales, Chlorophyta) on the coast of Algeria. Cryptogamie Algologie, 28,: 303–305.

Ould-Ahmed, N., Gómez Garreta, A., Ribera Siguan M.A., Bouguedoura, N. (2013). Checklist of the benthic marine macroalgae from Algeria. Phaeophyceae. Anales del Jardín Botánico de Madrid, 70,: 136–143.

Ould-Ahmed , N., Gomez Garreta,  A., Ribera Siguan, M.A. (2019). Checklist of the benthic marine macroalgae from Algeria, part II: Ulvophyceae. Anales del Jardín Botánico de Madrid, 76 (2): e087.

Ramdani, M., Moulay Brahim, O., El Asri, O., El Khiati, N., Ramdani, M., Denis, F., Roger, J.F. (2020). First report of Cystoseira aurantia Kützig from the Mediterranean coast of Morocco. Botanica Marina: 64(1): 41–47.

Rodriguez-Prieto, C., Polo, L. (1996). Effects of sewage pollution in the structure and dynamics of the community of Cystoseira mediterranea (Fucales, Phaeophyceae). Scientia Marina, 60, 253–263.

Senties A., Dreckmann, K.M. (2013). Lista actualizada de las macroalgas de Tabasco, Mexico. Checklist of the macroalgae from Tabasco, Mexico. Acta Bot. Venez, 36 (2), 109-117.

Seridi H., Ruitton S., Boudouresque, C.F. (2007). Is it possible to calibrate the pollution level of the region of Algiers (Mediterranean Sea) by exploiting marine macrophytes. Comptes Rendus Biologies, 330,:606-614.

Traiche, A., Belhaouari, B., Rouen-Hacen, O. (2018). Study of Macroalgae Biodiversity In the Western Algerian Coast, Ténès. Current Botany, 9: 28-32.

Van Nguyen Tu., Nhu Hau Le., Showe-Mei Lin., Frederique, S., Olivier D e Clerck. (2013). Checklist of the marine macroalgae of Vietnam. Botanica Marina, 56(3), 207–227.

Author Info

A.Mansouri1, A. Baaloudj2, F. Toumi1, M.A. Bouzidi1 and A. Kerfouf1*
 
1Laboratory for Ecodevelopment of Spaces, Djillali Liabes University, Sidi Bel Abbes, 22000, Algeria
2Laboratory of Water and Environment Biology (LBEE), University May 8, 1945, Guelma, 24000, Algeria
 

Citation: Mansouri, A., Baaloudj, A., Toumi, F., Bouzidi, M.A., Kerfouf, A. (2021). Checklist of Benthic Marine Macroalgae in Western Algeria. Ukrainian Journal of Ecology, 11 (3),40-45.

Received: 02-Apr-2021 Accepted: 27-May-2021 Published: 31-May-2021, DOI: 10.15421/2021_140

Copyright: This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.