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Journal articles on the topic 'Gracilaria cylindrica'

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1

Soekendarsi, Eddy. "Gastropod Pests on Gracilaria Cylindrica and Gracilaria Verrucosa." Jurnal Moluska Indonesia 3, no. 2 (2019): 47–51. http://dx.doi.org/10.54115/jmi.v3i2.48.

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Using traditional methods, Gracilaria cylindrica and Gracilaria verrucosa are commonly cultivated in ponds located in the south eastern parts of South Sulawesi. G. cylindrica has thick, cylindrical branches. G. verrucosa has slender broad-based branches. An illustrated taxonomic account is presented. Three species of herbivore gastropods, Clithon sp., Neritodryas sp., and Clypeomorus sp., occur naturally in the pond areas. The snails easily develop into pests. To reduce the problem, farmers must daily clean cultured Gracilaria by hand. Polyculture of Gracilaria and milk fish reduce problems wi
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2

Iniya, Udhaya C. and John Peter Paul J*. "SCREENING OF PRELIMINARY PHYTOCHEMICALS OF GRACILARIA CYLINDRICA BOERGESEN IN KOOTHANKUZHI, TIRUNELVELI DISTRICT, TAMIL NADU, INDIA." Indo American Journal of Pharmaceutical Sciences 04, no. 12 (2017): 4590–94. https://doi.org/10.5281/zenodo.1120315.

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In the present study, the preliminary phytochemical constituents were screened from Gracilaria cylindrica Boergesen from Koothankuzhi, Tirunelveli district in the south east coast of Tamil Nadu, India. The preliminary phytochemical analysis was conducted in seven extracts namely methanol, acetone, chloroform, ethyl acetate, petroleum ether, benzene and hexane by Harborne method. The preliminary phytochemical analysis showed the presence of alkaloids, anthocyanin, anthraquinones, cardiac glycosides, coumarins, diterpenes, flavonoids, glycosides, phenols, phlobatannins, steroids, quinones, sapon
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3

Anuraj, A., Ajit Arun Waman, Chandra Prakash, et al. "Investigating the Effects of Exogenous Factors on Growth, Photosynthetic Pigments and Bud Induction in Gracilaria corticata var. cylindrica under In vitro Conditions." International Journal of Current Microbiology and Applied Sciences 6, no. 8 (2017): 3235–46. http://dx.doi.org/10.20546/ijcmas.2017.609.398.

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4

Dawange, Pankaj, and Santlal Jaiswar. "Effects of Ascophyllum marine plant extract powder (AMPEP) on tissue growth, proximate, phenolic contents, and free radical scavenging activities in endemic red seaweed Gracilaria corticata var. cylindrica from India." Journal of Applied Phycology 32, no. 6 (2020): 4127–35. http://dx.doi.org/10.1007/s10811-020-02254-6.

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5

Dreckmann, Kurt M., María Luisa Núñez Resendiz, and Abel Sentíes. "Gracilaria microcarpa sp. nov. (Gracilariaceae, Rhodophyta) from the southwestern Gulf of Mexico." Botanica Marina 61, no. 2 (2018): 115–25. http://dx.doi.org/10.1515/bot-2017-0068.

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AbstractAlthough the genusGracilariais well represented on the Mexican coasts, there are few studies focused on the taxonomic aspects and the clarification of the relationships between species. The high morphological plasticity exhibited by several of its representatives could underestimate the true species richness. In the present study, a group of cylindrical specimens ofGracilariafrom the southeastern Gulf of Mexico, previously identified asG. cornea, was collected. Based on COI-5P andrbcL sequences, these samples formed an independent group closely related toG. ferox, a flat species. Morph
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6

Arakaki, Natalia, WILLIAM E. SCHMIDT, PATRICIA CARBAJAL, and SUZANNE FREDERICQ. "First occurrence of Gracilaria chilensis, and distribution of Gracilariopsis lemaneiformis (Gracilariaceae, Gracilariales) in Peru on the basis of rbcL sequence analysis." Phytotaxa 208, no. 2 (2015): 175. http://dx.doi.org/10.11646/phytotaxa.208.2.7.

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The terete taxa Gracilariopsis (hereafter Gp.) lemaneiformis (Bory) Dawson, Acleto & Foldvik and Gracilaria (hereafter G.) chilensis Bird, McLachlan & Oliveira resemble each other in branching pattern. This study aims to analyze samples attributed to G. chilensis from a southern locality in Peru using molecular tools, in order to differentiate it from Gp. lemaneiformis samples collected along the Peruvian coast. Species identification of the Gracilariaceae, especially of the terete forms, is notoriously difficult due to morphological plasticity and convergence of their thalli, and the
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7

Yudiastuti, Kadek, I. Gusti Bagus Sila Dharma, and Ni Luh Putu Ria Puspitha. "Laju Pertumbuhan Rumput Laut Gracilaria sp Melalui Budidaya IMTA (Integrated Multi Trophic Aquaculture) di Pantai Geger, Nusa Dua, Kabupaten Badung, Bali." Journal of Marine and Aquatic Sciences 4, no. 2 (2017): 191. http://dx.doi.org/10.24843/jmas.2018.v4.i02.191-203.

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Gracilaria sp is red alga which belong to class rhodophyceae. It can grow in shallow salt water with a general characteristic is having a cylindrical and branched thallus form. Seaweed cultivation can be performed through IMTA (Integrated Multi Trophic Aquaculture) method. The basic principle of cultivation through the IMTA method is utilizing service of the low thropic level species in marine ecosystems, such as shells and seaweed. This method is believed to be able to overcome the environmental problems caused by cultivation activities, such as feces and uneaten feed. This research was perfo
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8

Putriarti, Dewi, Winarsih Winarsih, and Fida Rachmadiarti. "Keanekaragaman Rumput Laut dan Pemanfaatannya oleh Masyarakat di Pantai Kecamatan Palang Kabupaten Tuban." LenteraBio : Berkala Ilmiah Biologi 12, no. 3 (2023): 248–57. http://dx.doi.org/10.26740/lenterabio.v12n3.p248-257.

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Rumput laut tumbuh alami (wild seaweed) melimpah di Pantai Kecamatan Palang Kabupaten Tuban dan berpotensi untuk dimanfaatkan oleh masyarakat. Tujuan dari penelitian ini adalah untuk menganalisis indeks keanekaragaman dan indeks dominansi rumput laut serta pemanfaatannya oleh masyarakat setempat sebagai inventarisasi awal sumber daya hayati rumput laut Pantai Kecamatan Palang Kabupaten Tuban. Pengambilan sampel dilakukan dengan metode jelajah di dua stasiun penelitian yakni Desa Panyuran dan Desa Glodog. Analisis data secara deskripstif kualitatif. Pengukuran parameter fisika kimia perairan me
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9

K., CHALINI, JOHNSON M., ADAIKALARAJ G., VIDYARANI GEORGE, and RAMAKRISHNAN P. "ANTI-INFLAMMATORY ACTIVITY OF AQUEOUS EXTRACTS OF GRACILARIA." International Journal of Current Pharmaceutical Research, September 21, 2017, 17–19. http://dx.doi.org/10.22159/ijcpr.2017v9i5.22130.

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Objective: In the present investigation an attempt was made to examine the anti-inflammatory potential of aqueous extracts of Gracilaria salicornia C. Ag., Gracilaria edulis (Gmelin) Silva, Gracilaria corticata J. Ag., Gracilaria fergusonii J. Ag.,and Gracilaria verrucosa (Hudson) Papenfus from Mandapam, Gracilaria edulis (Gmelin) Silva., Gracilaria verrucosa (Hudson) Papenfus from Pulicate Lake, Gracilaria fergusonii J. Ag., Gracilaria corticata J. Ag. and Gracilaria corticata J. Ag. var. cylindrica from Tuticorin using heat induced haemolysis of RBC. In addition, the present study is focused
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10

K, Murugan. "Nutraceutical value added sea weed - Gracilaria corticata var. cylindrica from thoothukudi." International Journal of Complementary & Alternative Medicine 11, no. 2 (2018). http://dx.doi.org/10.15406/ijcam.2018.11.00375.

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11

Jaiswar, Santlal, Pankaj S. Dawange, Chetna M. Zala, and Nikunj Balar. "Effect of shrimp farm effluent (SFE) on growth, survival, regeneration, and biochemical composition in indigenous red seaweed Gracilaria corticata var. cylindrica." Aquaculture International, January 23, 2023. http://dx.doi.org/10.1007/s10499-023-01055-1.

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12

Sawant, Om, and Santlal Jaiswar. "Assessing the nitrate and phosphate uptake kinetics potential and growth performance of Gracilaria corticata var. cylindrica in shrimp farm water (SFW)." Discover Oceans 1, no. 1 (2024). http://dx.doi.org/10.1007/s44289-024-00007-8.

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AbstractGracilaria corticata var. cylindrica (GCC) was studied as a biofilter in shrimp farm water (SFW) and its growth and biochemical attributes in the medium were evaluated. GCC showed significant nutrient absorption from SFW, with maximum nitrate and phosphate uptake observed after the first 48 h. Nitrate depletion happened faster than phosphate, thus showing a higher affinity for nitrate uptake (78.4% removal) by GCC. Nutrient uptake kinetics followed the Michaelis–Menten curve, with Vmax values of 43.16 μM g dw−1 h−1 for nitrate and 67.50 μM g dw−1 h−1 for phosphate. Also, GCC’s low Km v
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13

Joshi, Keval, Mukesh Baraiya, Kinjal Moradiya, et al. "Between versus within: Comparative analysis reveals significant differences among survival, regeneration and growth in explants of Gracilaria corticata var. cylindrica treated with two commercial Sargassum-derived extracts." Journal of Applied Phycology, August 8, 2023. http://dx.doi.org/10.1007/s10811-023-03037-5.

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14

Acosta Calderón, Julio A., Edgar F. Rosas Alquicira, Nataly Quiroz González, María de Jesús Trejo Méndez, and Valentina Islas Villanueva. "Molecular analyses reveal a misidentification of Gracilaria parvisporaAbbott 1985 (Gracilariales, Rhodophyta) in the southern Mexican Pacific and the proposal of Gracilaria huavensis sp. nov." Phycological Research, February 23, 2025. https://doi.org/10.1111/pre.12585.

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SUMMARYCylindrical red algae of the genus Gracilaria from the coastal lagoons of the Southern Mexican Pacific are described as a new species, G. huavensis sp. nov. based on rbcL and COI‐5P sequence analyses and detailed morphological, anatomical, and reproductive characteristics. This species typically grows in the intertidal and subtidal in brackish lagoons in the Southern Mexican Pacific. It is characterized by its percurrent cylindrical thalli with one to three orders of ramification with acute unilateral branchlets. Spermatangial conceptacles are of the textorii‐type. Cystocarps are spheri
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15

Suhaimai, Nurulain Najwa, Faten Nur Aisyah Zainuldin, Jalaludin Kassim, and Shahidah Md. Nor. "Morphology and Nutritional Composition of Gracilaria changii at Different Maturation Stages." Pertanika Journal of Tropical Agricultural Science 48, no. 4 (2025). https://doi.org/10.47836/pjtas.48.4.15.

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Gracilaria changii is a red seaweed macroalgae that holds economic potential for the Malaysian economy, as it has now started to be cultivated commercially. Establishing the harvesting standards for seaweed is important for its marketing purposes. Thus, this study evaluated the effect of different growth stages on its postharvest quality. The seaweed was studied at three different maturation stages, which were Stage I (30–40 days), Stage II (40–50 days) and Stage III (60 days and above). Morphology, physicochemical properties, and bioactive compounds were evaluated to establish the postharvest
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16

Delgadillo Garzón, Oscar, and Federico Newmark. "CULTIVO PILOTO DE MACROALGAS ROJAS (RHODOPHYTA) EN BAHÍA PORTETE, LA GUAJIRA, COLOMBIA." Bulletin of Marine and Coastal Research 37, no. 2 (2016). http://dx.doi.org/10.25268/bimc.invemar.2008.37.2.188.

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A seaweed pilot culture was developed in Portete bay, La Guajira, Colombia, between July 2005 and June 2006. The aim of this study was to evaluate the potential of this activity as a productive alternative to coastal communities thriving in the region. One hundred fourteen kilograms of the red algae Gracilaria cervicornis, Hydropuntia cornea, Hypnea musciformis and Grateloupia sp. were attached to polypropylene ropes and cylindrical meshes, at two sites of the bay. Gracilaria cervicornis had relative growth rates (RGR) between 0.1 % day-1 and 1.22 % day-1, with a mean of 0.44 % day-1, strong e
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17

Patra, S. K., K. Mishra, B. Patro, et al. "Growth performance, body composition and fatty acid profile of liver and muscle in tilapia, Oreochromis mossambicus (Peters, 1852) fed algal meal incorporated diets." Indian Journal of Fisheries 64 (December 26, 2017). http://dx.doi.org/10.21077/ijf.2017.64.special-issue.76198-07.

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The present study was conducted to evaluate the effect of algal meal incorporated diets on the growth performance and fatty acid profile of tilapia Oreochromis mossambicus (Peters, 1852). Control diet (Diet 1) for the study was formulated with rice bran, groundnut oil cake (GNOC) and soybean meal. Six iso-energetic and iso-nitrogenous test diets (Diets 2 to 7) were prepared by incorporating (@40%) one of the four microalgae viz., Anabaena cylindrical (AN; Nostoc salbasa (NS); Spirulina platensis (SP) and Westiellopsis prolifica (WS) or with an algal meal mixture containing the above four algae
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