Results 31 to 40 of about 427 (163)

Variasi Komposisi Dan Kerapatan Jenis Lamun Di Perairan Ujung Piring, Kabupaten Jepara

open access: yesJurnal Kelautan Tropis, 2017
Seagrass has an important role for marine environment as a primary producer also as constituent and ecosystems habitats that support the life on coral reefs and mangrove or coastal. This research is aimed to identify the seagrass species and to undertand
Retno Hartati   +8 more
doaj   +1 more source

Microbiomes of fish, sediment and seagrass suggest connectivity of coral reef microbial populations [PDF]

open access: yesPeerJ, 2020
The benthic environments of coral reefs are heavily shaped by physiochemical factors, but also the ecological interactions of the animals and plants in the reef ecosystem.
Rosa León-Zayas   +3 more
doaj   +2 more sources

Struktur ekosistem lamun di Desa Teluk Bakau, pesisir bintan timur-Indonesia

open access: yesDepik Jurnal, 2019
. Teluk Bakau Village is one of the largest conservation areas of seagrass ecosystem located in Bintan Island. This research aim to study the distribution of species, seagrass coverage and seagrass density in Teluk Bakau Village.
Aditya Hikmat Nugraha   +3 more
doaj   +1 more source

Evaluating methods for high‐resolution, national‐scale seagrass mapping in Google Earth Engine

open access: yesRemote Sensing in Ecology and Conservation, Volume 12, Issue 2, Page 292-304, April 2026.
Marine habitat mapping using satellite imagery can provide baseline and monitoring data across large spatial scales and in remote locations globally. This study evaluates how key methodological choices influence the accuracy of open‐source (for non‐commercial use), cloud‐based satellite mapping workflows for seagrass meadows in the Maldives.
Matthew Floyd   +2 more
wiley   +1 more source

KEANEKARAGAMAN JENIS LAMUN SEBAGAI SUMBER PAKAN DUGONG DUGON PADA DESA BUSUNG BINTAN UTARA KEPULAUAN RIAU

open access: yesOmni-Akuatika, 2014
Seagrass species diversity as a source of feed Dugong dugon was studied in Busung North Bintan, Riau Islands during November 2014. The purpose of this study is to determine the diversity of seagrass species found on the feeding ground area.
Juraij Juraij   +2 more
doaj   +1 more source

Syringodium

open access: yes, 2016
Published as part of Zidorn, Christian, 2016, Secondary metabolites of seagrasses (Alismatales and Potamogetonales; Alismatidae): Chemical diversity, bioactivity, and ecological function, pp. 5-28 in Phytochemistry 124 on pages 16-17, DOI: 10.1016/j.phytochem.2016.02.004, http://zenodo.org/record ...
openaire   +2 more sources

Ecology and Reproduction of Bunodeopsis in Tropical Northwestern Atlantic Seagrass Ecosystems

open access: yesMarine Ecology, Volume 47, Issue 2, March/April 2026.
ABSTRACT The seagrass ecosystems of the Tropical Northwestern Atlantic (TNA) host three described species of sea anemones in the genus Bunodeopsis Andres, 1881 (Enthemonae: Metridioidea: Acuticulata): B. antilliensis, B. globulifera, and B. pelagica.
Isabel A. M. Pen   +15 more
wiley   +1 more source

The antioxidant activity of carotenoid pigments in the bacterial symbionts of seagrass Syringodium isoetifolium

open access: yesIndonesian Journal of Natural Pigments, 2019
Carotenoids are pigments of red, yellow and orange which are found in plants, animals and bacteria, and are known to have antioxidant activity. This study aims to identify the carotenoid pigments detected in seagrass Syringodium isoetifolium bacterial symbionts. Isolation of bacteria was conducted using dispersive media Zobell 2116E. Bacterial isolates
Riyada Idris, Delianis Pringgenies
openaire   +1 more source

Testing biodegradable interventions to disrupt plant–animal feedbacks and promote seagrass establishment

open access: yesRestoration Ecology, Volume 34, Issue 1, January 2026.
Biogeochemical and physical feedbacks are well known to prevent ecosystem recovery even after initial disturbance factors are mitigated. However, multi‐trophic interactions that may maintain disturbed areas have received less attention, despite their potential importance in mediating restoration success. In this study, we surveyed stingray feeding pits
Beatriz Marin‐Diaz   +4 more
wiley   +1 more source

Efecto antioxidante y contenido polifenólico de Syringodium filiforme (Cymodoceaceae)</a> </p><span class="r_subtitle"><img src="/img/openaccess.ico" alt="open access: yes" title="open access: yes" width="16" height="16"><i>Revista de Biología Tropical</i>, 2011 </span><br><span class="r_content">Antioxidant effect and polyphenol content of Syringodium filiforme (Cymodoceaceae). The marine phanerogam Syringodium filiforme, known as "manatee grass", is a common species that grows in coastal areas associated to Thalassia testudinum. With the aim to </span><br><span class="r_sub"><i>Kethia L González García<span id="ma_10" style="display:none">, Olga Valdés Iglesias, Abilio Laguna, Maylín Díaz Martínez, José Antonio González Lavaut</span>   <small><a href="#" style="color:#808080;" onClick="return toggle_div(this, 'ma_10')">+4 more</a></small></i></span><br><small><a href="https://doaj.org/article/8d484ffd1cfe478290e2d47cfaec86c2" target="_blank" rel="nofollow" title="doaj.org/article/8d484ffd1cfe478290e2d47cfaec86c2">doaj</a> </small>   <br></div><div class="r"><div style="margin-bottom:2px;overflow:hidden"><div style="display: inline-block; float: left; font-size: small; padding-right: 16px; margin-top: -1px; padding-bottom: 1px;"><a href="/q-seagrass/" class="suggestion"onclick="show_loader();"><b>seagrass</b></a><br/><a href="/q-syringodium_filiforme/" class="suggestion"onclick="show_loader();"><b>syringodium filiforme</b></a><br/><a href="/q-halodule/" class="suggestion"onclick="show_loader();"><b>halodule</b></a><br/></div><div style="display: inline-block; float: left; font-size: small; padding-right: 16px; margin-top: -1px; padding-bottom: 1px;"><a href="/q-caribbean/" class="suggestion"onclick="show_loader();"><b>caribbean</b></a><br/><a href="/q-thalassia/" class="suggestion"onclick="show_loader();"><b>thalassia</b></a><br/><a href="/q-halophila/" class="suggestion"onclick="show_loader();"><b>halophila</b></a><br/></div><div style="display: inline-block; float: left; font-size: small; padding-right: 16px; margin-top: -1px; padding-bottom: 1px;"><a href="/q-lamun/" class="suggestion"onclick="show_loader();"><b>lamun</b></a><br/><a href="/q-microbiology/" class="suggestion"onclick="show_loader();"><b>microbiology</b></a><br/><a href="/q-phylogenetic_analysis/" class="suggestion"onclick="show_loader();"><b>phylogenetic analysis</b></a><br/></div></div></div><div class="pagenav"><a href="/q-syringodium/p-3/" rel="nofollow"><b>previous</b></a>   <a href="/q-syringodium/p-2/" rel="nofollow">2</a>  <a href="/q-syringodium/p-3/" rel="nofollow">3</a>  <b>4</b>  <a href="/q-syringodium/p-5/" rel="nofollow">5</a>  <a href="/q-syringodium/p-6/" rel="nofollow">6</a>   <a href="/q-syringodium/p-5/" id="next" rel="nofollow"><b>next</b></a> </div><br></div> </div> <script>document.getElementById('loadingGif').style.display='none';</script><div style="width: 100%; height: 40px; bottom: 0px; background-color: #f5f5f5;"><div style="padding-left: 15px; padding-top: 10px"> <a href="/" rel="nofollow">Home</a> - <a href="/page-about/" rel="nofollow">About</a> - <a href="/page-disclaimer/" rel="nofollow">Disclaimer</a> - <a href="/page-privacy/" rel="nofollow">Privacy</a> </div></div> <link rel="stylesheet" href="//ajax.googleapis.com/ajax/libs/jqueryui/1.11.4/themes/smoothness/jquery-ui.min.css"/> <script> (function(ss,ex){ window.ldfdr=window.ldfdr||function(){(ldfdr._q=ldfdr._q||[]).push([].slice.call(arguments));}; (function(d,s){ fs=d.getElementsByTagName(s)[0]; function ce(src){ var cs=d.createElement(s); cs.src=src; cs.async=1; fs.parentNode.insertBefore(cs,fs); }; ce('https://sc.lfeeder.com/lftracker_v1_'+ss+(ex?'_'+ex:'')+'.js'); })(document,'script'); })('JMvZ8gvrWA9a2pOd'); </script> </body> </html>