OAR@½ñÈÕºÚÁÏ Collection:/library/oar/handle/123456789/623342026-08-07T03:31:15Z2026-08-07T03:31:15ZAspects of the ecology of the potentially invasive alien macrophyte Caulerpa taxifolia var. distichophylla (Sonder) Verlaque, Huisman & Procacini in Maltese waters/library/oar/handle/123456789/1213742024-04-26T05:58:43Z2019-01-01T00:00:00ZTitle: Aspects of the ecology of the potentially invasive alien macrophyte Caulerpa taxifolia var. distichophylla (Sonder) Verlaque, Huisman & Procacini in Maltese waters
Abstract: The aim of this study was to obtain information on the ecology of the alien macrophyte
Caulerpa taxifolia var. distichophylla in the Maltese Islands, following its
introduction in 2013. Three aspects were investigated: the spread of the macrophyte
from the initial colonised area, the hypothesis that the alga shows seasonal changes in
frond density and frond length and the effect of site characteristics on the frond
density, morphology and distribution.
The spread of the macrophyte was monitored at 38 different sites around the Maltese
islands between June 2016 and September 2016 and between June 2017 and
September 2017 either by making observations using SCUBA or through an open call
for citizen scientists to report sightings, which were then confirmed. When surveyed
by SCUBA diving, frond density was estimated and samples were taken for
morphological studies in the lab. Seasonal changes were assessed within a study area
measuring 2m X 2m at two different sites which were visited monthly between June
2016 and June 2018 to estimate frond density from 12 replicate quadrat counts.
Samples for biomass estimation were collected from a different sites by separating out
the different algal species and estimating the biomass of each to determine changes in
macrophyte community composition. Patchiness in the distribution of the alga and the
morphological variation within a patch were studied at five different sites (Bahar ic-Caghaq,
Comino, San Tumas, Sliema and Qawra) from June to September 2016. At
each site, density counts, depth and if the alga was located in the centre or periphery,
were recorded. Replicate samples of the macrophyte were collected for morphological
analysis.
The results of these studies indicated that the alga is well established in the Maltese
Islands and had spread to at least 22 sites by 2016 and an additional four sites in 2017.
Of these sites, 46% were located along the eastern coast of Malta and Gozo where the
degree of anthropogenic impact is higher. The least affected coast, with 8% of records
was the west coast of the Malta and Gozo probably due to the deep bathymetry and
reduced anthropogenic impacts. The results also indicate that the frond density of the
macrophyte decreases during the winter months and attains is highest values during
autumn months giving a pronounced intra-annual variability. There was also an inter-annual
variability in the population as during the second year of the study the
macrophyte there was no compete regression of the fronds at both study sites as had
been observed during the first year. nMDS results indicated that there were no changes
in species abundance relative to the algal occurrence. Of the five sites in which studies
of the algal patchy distribution were conducted, the highest frond density was at Bahar
ic-Caghaq whilst the longest fronds were recorded from Comino. Linear regression
analysis indicated a weak relationship between depth and both frond density and frond
length. However, PERMANOVA indicated that the factor ‘site’, affects both frond
density and frond length whilst the type of substratum and associated flora affects only
frond density. Of the microhabitat types a change in population structure was only
shown for the ‘mosaic’ microhabitat, where a statistically different mean frond density
value was obtained between the periphery and centre of a ‘mosaic’ patch, whilst for
the microhabitats ‘Posidonia oceanica’ and ‘rock with sediment cover’ no statistically
significant differences were found.
Caulerpa taxifolia var. distichophylla has established itself successfully in Malta,
colonising areas with high anthropogenic factors that have facilitated its dispersal.
Whilst no changes in community biomass were observed, the alga is taking up space
that would be otherwise be made available to native species. The species can be
considered as ‘invasive’ given the exponential growth it has attained.
Description: M.SC.BIOLOGY2019-01-01T00:00:00ZInfluence of elevated seawater temperature on amphisteginid Foraminifera in Maltese waters/library/oar/handle/123456789/1213642024-04-26T05:02:03Z2019-01-01T00:00:00ZTitle: Influence of elevated seawater temperature on amphisteginid Foraminifera in Maltese waters
Abstract: Sea warming due to climate change might favour the spread of invasive species by
expanding their distribution into new areas. The Mediterranean Sea warming and its
particular biogeographic history makes it a hotspot for marine invasions, and a case
of a successful thermophilic invader in this sea is the marine benthic foraminifer
Amphistegina lobifera, considered to be of Red Sea origin. The range expansion of
A. lobifera is likely to trigger changes in ecosystem functions, including the
displacement of local foraminiferal species, homogenization of foraminiferal
assemblages and drastic alterations in coastal habitats. In the Maltese archipelago,
the presence of this alien invasive species could bring about changes to the
granulometric characteristics of marine sediments present in bottom habitats,
changes which in turn may impact certain benthic species and communities. Elevated
temperature has also been identified as causing morphological variations in the shells
of benthic Foraminifera, including A. lobifera.
The aim of the present study was to use the thermal effluent from the Delimara Power
Station, Malta, as a proxy for sea warming in order to assess climate change impacts
on the distribution and morphology of the invasive foraminiferan A. lobifera. This was
made by comparing populations of A. lobifera at the impacted site (an inlet receiving
thermal effluent) with two geographically similar inlets without thermal effluent
(reference sites).
No significant differences in the thickness/diameter ratio, lateral asymmetry and
coiling direction of A. lobifera were noted between the impacted and reference sites.
Overall, most of the specimens in the present study were sinistrally coiled, and tests
were significantly larger and with a higher incidence of irregular keels at the impacted
than at the two reference sites. Both absolute and relative abundances of A. lobifera
at the impacted site were significantly different from values of the same attribute
recorded from the reference sites, and significant differences were also found in the
impact of amphisteginid invasions on the mean sediment grain size. However, no
significant differences in sediment sorting values were noted between the impacted
and reference sites. These findings match the described westward invasion of A.
lobifera in the Mediterranean, and indicate that the colonisation of the alien in the
studied sites is temperature-driven and possibly displacing local foraminiferal
species.
Amphisteginid invasions in Malta will probably intensify as the sea warms up and
cause changes in the invaded micro-ecosystem, which is likely to also pose long-term
impacts in local meso-ecosystems with significant ecological consequences for
presently-occurring marine benthic communities.
Description: M.SC.BIOLOGY2019-01-01T00:00:00ZUpdated assessment of the distribution, status and impacts of marine non-indigenous and other newcomer species in the Maltese waters/library/oar/handle/123456789/1213612024-04-26T04:57:11Z2019-01-01T00:00:00ZTitle: Updated assessment of the distribution, status and impacts of marine non-indigenous and other newcomer species in the Maltese waters
Abstract: The latest inventory on all newcomer species in Maltese waters dates back from
2015. Several new or additional records of alien and range-expanding species have
been reported since, necessitating an update to this work, while no comprehensive
assessment of the distribution patterns and impacts of non-indigenous species (NIS)
in Maltese waters has been published to date. This project will update and re-evaluate the inventory and compare it to the previous one. The coordinates from the
records will be used to look at spatial patterns, and to identify hotspots. Through
literature studies the environmental impacts will be assessed.
The inventory has increased to 106 species, of which most are still considered
casual newcomer species, but the amount of invasive species has increased by two.
The amount of unknown pathways has decreased and shipping is the most
prominent mode of entry into the Maltese waters. The spatial pattern of the records,
show that the harbours are hotspots of NIS, which is also explained by the shipping
pathway. Another spatial pattern was the records being in the vicinity of popular
diving spots.
There is a huge bias in the known literature, since absence of an NIS is not
recorded often, and the locations cover the same areas and don’t cover hard to
reach coastlines, like the Dingli cliffs. The records of invasive species are not a
perfect tool to track the dispersal, since they are often discovered after reaching the
establishment phase. The inventory needs to be kept updated, to track the status of
the Maltese waters and more information should be collected on ecological impact
of the newcomer species.
Description: M.SC.BIOLOGY2019-01-01T00:00:00ZInvestigation into reduction of deterioration of useful by-products from fish offal/library/oar/handle/123456789/623532020-10-25T06:25:26Z2019-01-01T00:00:00ZTitle: Investigation into reduction of deterioration of useful by-products from fish offal
Abstract: Fish offal subjected to improper storage while onboard shipping vessels leads to the deterioration of valuable by-products rendering them useless. Such valuable products can be obtained from the fish waste if proper storage for the offal can be established. This research project investigated the effects of high temperatures and different exposure times have on the quality of fish oil extracted from Atlantic salmon (Salmo salar L.) fish heads. The major problem with fish oils when exposed to high temperatures is their rapid peroxidation; they become rancid through an accumulation of undesirable acids. This peroxidation value can be determined using standard iodometric titration. The present results showed that increasing incubation or exposure times have statistically significant effects on the quality of fish oils extracted from Atlantic salmon offal. This led to the conclusion that the proper storage of the salmon fish offal could prevent losses in potential revenue by averting the degradation of valuable by-products from fish offal.
Description: M.SC.BIOLOGY2019-01-01T00:00:00Z