<?xml version="1.0" encoding="UTF-8"?>
<feed xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns="http://www.w3.org/2005/Atom">
<title>School of Fisheries and Wildlife</title>
<link href="http://ir.bdu.edu.et/handle/123456789/14090" rel="alternate"/>
<subtitle/>
<id>http://ir.bdu.edu.et/handle/123456789/14090</id>
<updated>2026-09-16T12:13:21Z</updated>
<dc:date>2026-09-16T12:13:21Z</dc:date>
<entry>
<title>Evaluation of Wetland Ecological Integrity in the Fogera Floodplain, Lake Tana Sub-basin, Ethiopia</title>
<link href="http://ir.bdu.edu.et/handle/123456789/17300" rel="alternate"/>
<author>
<name>Agidie, Aklilu</name>
</author>
<id>http://ir.bdu.edu.et/handle/123456789/17300</id>
<updated>2026-09-03T05:35:07Z</updated>
<published>2025-07-01T00:00:00Z</published>
<summary type="text">Evaluation of Wetland Ecological Integrity in the Fogera Floodplain, Lake Tana Sub-basin, Ethiopia
Agidie, Aklilu
The Fogera floodplain is a wetland resource center hosting diverse aquatic life and&#13;
livelihoods. However, natural and human-precipitated pressures threaten these assets,&#13;
causing degradation and impacting wetland-based fauna and plants. The objective of the&#13;
study was to assess the wetland ecological integrity condition by examining the interplay&#13;
among biodiversity species composition, land cover dynamics, and ecosystem services&#13;
within the Fogera floodplain in the Dilmo, Bebeks, Sendye, Shesher, and littoral wetlands.&#13;
Data collection was carried out from 2022 to 2023. Different approaches were used to&#13;
collect the required data. Samples of water, macrophytes, and macroinvertebrates were&#13;
gathered at 20 sampling sites with volume sampling for water, quadrat methods for&#13;
macrophytes, and kick-net or D-frame net methods for macroinvertebrates, respectively.&#13;
Fish were collected at all wetlands using monofilament nets. Line transect and point count&#13;
methods were implemented to collect the bird data. The study used various statistical tools,&#13;
including mean comparisons, cluster analysis, and ordination techniques to classify&#13;
sampling sites and elucidate the underlying physicochemical gradients, utilizing a range of&#13;
field and laboratory tools. The Shannon-Wiener index and Bray-Curtis cluster evaluation&#13;
were used to quantify species variety and compare species composition. The DPSIR&#13;
framework model was utilized to look at the interactions between society and the&#13;
environment, while land use changes were analyzed using Google Earth Maps. Contingent&#13;
valuation and market pricing techniques were used to assess the value of wetland products.&#13;
In the macrophyte investigation, a total of 55 species and 25 families were recorded from&#13;
both natural wetlands and paddy fields. Dilmo Wetland had the highest macrophyte species&#13;
richness (29) and Shannon-Wiener index (2.9) values. In the macroinvertebrate&#13;
assessment, a total of 9 orders and 23 families were identified. The abundant genera were&#13;
Hemiptera, with a mean abundance of 22.35 ± 41.01. The least common orders were&#13;
Arachnida and Ephemeroptera. A total of eight fish species, namely Barbus humilis,&#13;
Clarias gariepinus, Enteromius pleurogramma, Garra dembecha, Garra tana,&#13;
Labeobarbus brevicephalus, Labeobarbus intermedius, Oreochromis niloticus tana were&#13;
found in the wetlands. The study of birds in the Afromontane wetland ecosystem showed&#13;
that there were 16,841 individuals representing 35 species, 21 families, and 13 orders. The&#13;
study areas with the highest abundances were Shesher (6895) and Sendye (4354 &#13;
vii &#13;
individuals), respectively. Among the resident birds, the African pygmy goose (Nettapus&#13;
auritus) and Maccoa Duck (Oxyura maccoa) were commonly found in the littoral of the&#13;
lake. Globally threatened species like wattled cranes and black-crowned cranes were&#13;
common in farming landscapes. Land cover change in the study area was primarily driven&#13;
by population expansion, with wetlands and their flood vegetation losing 1,658.62 ha while&#13;
cultivated land expanded to 10,950.47 ha within 32 years in the floodplain. Cluster analysis&#13;
grouped sampled sites into 3 disturbance categories. Macrophyte species, particularly&#13;
Digitaria sanguinalis, Phalaris paradoxa, and Echinochloa stagnina, served as animal&#13;
fodder, at the same time, Cyperus papyrus, and Typha latifolia, and fish catch supported&#13;
the subsistence livelihoods of society in the study area. Wetlands offer significant financial&#13;
value and earnings to the society and provide vital provisioning services such as cattle&#13;
fodder, water, cultivation, fish catch, food, and raw materials. The total economic value of&#13;
about Birr 22,866,200.00 (US$ 408,325.00) with an average yearly income of Birr&#13;
152,441.3 (US$ 2,722.20) per household was delivered from commodities produced from&#13;
the studied wetlands. To minimize the wetland degradation and to maintain the vegetation&#13;
in the area, restore native vegetation, supplementary planting of multi-purpose grasses like&#13;
Panicum paradoxa, papyrus, and Typha is crucial. Designating the Shesher wetland and&#13;
surrounding littoral zones as protected area or as a local national park for bird sanctuary is&#13;
also important.
</summary>
<dc:date>2025-07-01T00:00:00Z</dc:date>
</entry>
<entry>
<title>Quality, Safety and Post-harvest Losses of Fish in Lake Tana, Ethiopia</title>
<link href="http://ir.bdu.edu.et/handle/123456789/17299" rel="alternate"/>
<author>
<name>on Birie, Solomon</name>
</author>
<id>http://ir.bdu.edu.et/handle/123456789/17299</id>
<updated>2026-09-03T05:31:05Z</updated>
<published>2025-03-01T00:00:00Z</published>
<summary type="text">Quality, Safety and Post-harvest Losses of Fish in Lake Tana, Ethiopia
on Birie, Solomon
Fish are vital for food security and economic growth, but their perishable nature leads to significant&#13;
quality deterioration and post-harvest loss. Additionally, improper handling and aquatic pollution&#13;
can increase microbial and heavy metal contamination, posing health risks. Although salting&#13;
extends shelf life and enhances flavor, the lack of standardized practices raises concerns about the&#13;
quality of salted products. In Lake Tana, inadequate handling and processing of fish are reported,&#13;
but data on fish proximate composition, microbial quality, heavy metal contamination, salt levels,&#13;
and fishers’ knowledge, attitudes, and practices towards the safety of fish products and post harvest&#13;
&#13;
losses remain limited. Thus, this study was designed to address these gaps. Data were&#13;
collected through laboratory analyses (proximate composition, microbial quality, and heavy metal&#13;
levels), experimental studies, field observations and interviews. For microbial and proximate&#13;
analyses, 75 fish samples (45 raw, 30 sun-dried) were collected from Bahir Dar, Mitsrihaba, and&#13;
Gorgora sites. For heavy metal analyses, 15 equal-sized individual samples of Oreochromis&#13;
niloticus were collected. To investigate the effect of different salt concentrations on fish quality,&#13;
18 kg of Labeobarbus spp. were subjected to dry salting at 10%, 20%, and 30% concentrations. &#13;
To evaluate the level of fishers’ knowledge, attitudes, and practices regarding the safety of fish&#13;
products, as well as to assess post-harvest losses, six fish landing sites (Bahir Dar, Nabega,&#13;
Mitsrihaba, Gorgora, Delgi, and Kunzla) were selected. A total of 344 fishers were randomly&#13;
interviewed at the landing sites. Proximate of fish samples revealed that sun-dried Clarias&#13;
gariepinus and Labeobarbus spp. had significantly higher contents of ash, fat, protein,&#13;
carbohydrates, energy, and salt compared to their raw forms. Microbial analysis showed that a&#13;
significant differences (p &lt; 0.05) in the counts of aerobic mesophilic bacteria, Staphylococcus&#13;
aureus, yeast, and mold between raw and sun-dried samples. Higher counts of S. aureus, yeast,&#13;
and mold were observed in the sun-dried samples, whereas aerobic mesophilic load was high in&#13;
the raw Labeobarbus spp., C. gariepinus and Oreochromis niloticus samples. Additionally, total&#13;
and fecal coliform counts showed significant variation between raw and sun-dried fish, with higher&#13;
levels observed in the raw samples. While sun-dried samples had lower fecal coliform levels,&#13;
33.33% of dried Labeobarbus spp. and 46.67% of dried C. gariepinus still exceeded the limit.&#13;
Salmonella spp. and Shigella spp. were also isolated from both raw and dry fish samples. The&#13;
Pearson correlation analysis showed a strong positive correlation between water activity and &#13;
vi &#13;
microbial load (r = 0.756, p &lt; 0.05), as well as between moisture content and microbial load (r =&#13;
0.786, p &lt; 0.05). Heavy metal analysis of Oreochromis niloticus muscle tissue revealed&#13;
concentrations of 0.165 mg/kg for chromium, 0.085 mg/kg for arsenic, 0.054 mg/kg for lead, and&#13;
0.010 mg/kg for cadmium. Except for chromium, the concentrations of the assessed metals were&#13;
below the maximum permissible limits. The experimental study showed that both the moisture and&#13;
ash content of dry-salted Labeobarbus spp. significantly changed as salt concentration increased&#13;
from 10% to 30%, with ash content increasing and moisture content decreasing. However, no&#13;
significant changes in fat and protein content were observed between the 20% and 30% salt&#13;
treatments. The aerobic mesophilic bacteria count was 3.06 log CFU/g at 30% salt, lower than at&#13;
10% and 20%. Sensory scores for 10% salt-treated Labeobarbus spp. significantly differed from&#13;
those of the 20% and 30% treatments in all attributes except color (p &lt; 0.05). Post-harvest loss&#13;
assessments revealed an annual loss of 6.32% for raw fish and 11.32% for sun-dried fish. Main&#13;
causes contributing to these losses included delays in net hauling, poor handling practices, and&#13;
limited market access for sun-dried fish. Although fishers showed good knowledge and positive&#13;
attitudes toward safety of fish products, their actual practices remain inadequate, highlighting a&#13;
gap between awareness and implementation. Therefore, it is essential to improve fishers’ handling&#13;
practices, identify sources of contamination, and implement effective waste management systems&#13;
to enhance fish quality and safety.
</summary>
<dc:date>2025-03-01T00:00:00Z</dc:date>
</entry>
<entry>
<title>Age Determination, Stock Assessment and Reproductive Biology of Nile Tilapia (Oreochromis Niloticus, Linnaeus 1857) in Lake Hayq, Ethiopia</title>
<link href="http://ir.bdu.edu.et/handle/123456789/17298" rel="alternate"/>
<author>
<name>Berihun, Alemken</name>
</author>
<id>http://ir.bdu.edu.et/handle/123456789/17298</id>
<updated>2026-09-03T05:25:42Z</updated>
<published>2024-12-01T00:00:00Z</published>
<summary type="text">Age Determination, Stock Assessment and Reproductive Biology of Nile Tilapia (Oreochromis Niloticus, Linnaeus 1857) in Lake Hayq, Ethiopia
Berihun, Alemken
The study was conducted at Lake Hayq, Ethiopia. The objectives of the study were to determine&#13;
the age, stock assessment and reproductive biology of Oreochromis niloticus. For the age and&#13;
growth determination of Nile tilapia (O. niloticus) samples were collected from June 8, 2022 to&#13;
June 7, 2023. A total of 738 otoliths were collected from the shore, open water and river mouth&#13;
for macrozone analysis. The age of the fish was determined from the total number of translucent&#13;
macrozones counted in the otoliths considering the time of translucent zone formation. The&#13;
collected samples ranged from 9.3 to 32 cm in total length (TL) and from 14 to 495g in total&#13;
weight (TW). The sampled fish were 87.7 % ≤ 13 cm and only 12.3% were ≥ 13 cm. In the&#13;
present study, the maximum life span of this species was 6 years. A strong positive relationship&#13;
between otolith length and otolith weight (r&#13;
2&#13;
&gt; 0.88) was found for O. niloticus in Lake Hayq.&#13;
The relationships between total length and otolith sizes (length and length) were (r&#13;
2&#13;
&gt; 0.92).&#13;
Otolith weight correlated best with fish total weight (r&#13;
2&#13;
&gt; 0.81) and nearly the same correlation&#13;
was found between otolith length and otolith weight. The oreochromis niloticus caught in Lake&#13;
Hayq reached the asymptotic length (L∞ = 31 cm) and exhibited growth rate (k) 0.90 /year,&#13;
growth performance index (Ø′L =2.93) (age data), (L∞ = 31.5 cm) and growth rate (k)&#13;
0.94/year, a growth performance index (Ø′L =2.96) (length frequency data) and an exploitation&#13;
rate (E) of 0.56 indicating state overfishing of O. niloticus as E &gt; 0.5. Total mortality was 3.53&#13;
per/year, natural mortality was 1.57 per/year and fishing mortality was 1.96 per/year; this&#13;
natural mortality value is considered high. Natural mortality is mainly caused by high&#13;
temperatures, disease, predation, low oxygen levels, and low pH. The high natural mortality&#13;
rate in the present study reflects the poor adaptability of O. niloticus to the current environment&#13;
dynamics of the Lake Hayq. For the stock assessment, baseline information was collected at the&#13;
fish landing site for one year. The aim of the stock assessment was to estimate the size of the O.&#13;
niloticus population and the fishing mortality rate in individual length groups as well as to&#13;
estimate the fish yield in the lake. The Jones length-based cohort analysis model and the&#13;
Thompson and Bell length-based yield prediction model were used to estimate the number of the&#13;
O. niloticus population, the fishing mortality rate and predicted yield respectively. The&#13;
estimated population number of O. niloticus was over 46.8 million O. niloticus /year. According&#13;
to the model’s estimates, over 13.3million O. niloticus with length of 8 to 10 cm fish arerecruited to the fishery every year at the fished part of the Lake. The estimated annual yield was&#13;
162.16 tons of O. niloticus per year from Lake Hayq. The predicted MSY was 162.19 tons/yr at&#13;
fishing mortality factor of 0.9. Fishing effort should be kept at F factor of 0.7, which requires&#13;
the use of136 nets/day in the lake. Total length (TL in cm), total weight (TW in g), sex ratio,&#13;
maturity stages and fecundity data were collected for the reproductive biology of O. niloticus.&#13;
The collected data were summarized using descriptive (percentages, graphs, tables) and&#13;
inferential (Chi square, Regression) statistics use of SPSS. A total of 738 samples (422 females&#13;
and 316 males) were collected during the sampling period. In Lake Hayq a significant deviation&#13;
of the sex ratio (Females: Males), (1.3: 1) from the hypothesised ratio of 1:1 (X&#13;
, P&lt;0.05). The&#13;
fecundity of O. niloticus ranged from 190 to 616 eggs with a mean of 328 eggs. A strong&#13;
positive relationship between fecundity and body sizes (fish length and body weight) with r&#13;
2&#13;
&gt;&#13;
0.95 was observed. The smallest mature specimen caught in the current study was 9.3 cm TL&#13;
and 14 g TW. The size at first sexual maturity (L&#13;
50&#13;
) was 11.5 cm for both females and males,&#13;
which is unexpectedly low. In this study, the main breeding season of O. niloticus lasted from&#13;
February to April with peak breeding season in April. To evaluated factors causing depletion of&#13;
O. niloticus in Lake Hayq, a total of randomly selected 158 fishers and fishery experts from&#13;
around Lake Hayq were interviewed using structured questionnaires. Most of the fishers used&#13;
gillnets with a mesh size of 3.5-4 cm which is less than the national standard. Among the top five&#13;
fish depletion factors mesh size of 3.5-4 cm nets is the first ranked factor for O. niloticus&#13;
depletion with a relative impotence index of 0.83. Fishing during reproduction seasons is the&#13;
second ranked factor with a relative impotence index of 0.79 while destruction of breeding site&#13;
is the third ranked cause with a relative impotence index of 0.76. This implies that three out of&#13;
the top five critical factors belong to the fishing -related category. Open access was the fourth&#13;
critical severe with a relative impotence index of 0.75 and most frequently encountered factor&#13;
for fish depletion in the study area. Pollution and oil discharges are the fifth most severe factor&#13;
with a relative impotence index of 0.73 affecting fish depletion in Lake Hayq. Heavy fishing,&#13;
illegal fishing activities, fishing during the breeding season and breeding ground, and&#13;
destruction of breeding and feeding grounds are the major problems of Lake Hayq.&#13;
&#13;
2
</summary>
<dc:date>2024-12-01T00:00:00Z</dc:date>
</entry>
<entry>
<title>Assessment of Water Quality in Some Selected Wetlands of Lake Tana Sub-Basin by Using Physicochemical Parameters and  Macroinvertebrate Assemblages</title>
<link href="http://ir.bdu.edu.et/handle/123456789/16937" rel="alternate"/>
<author>
<name>Belaynesh Mekonnen</name>
</author>
<id>http://ir.bdu.edu.et/handle/123456789/16937</id>
<updated>2026-07-08T06:16:37Z</updated>
<published>2022-07-01T00:00:00Z</published>
<summary type="text">Assessment of Water Quality in Some Selected Wetlands of Lake Tana Sub-Basin by Using Physicochemical Parameters and  Macroinvertebrate Assemblages
Belaynesh Mekonnen
Fresh water is essential to human life and known by their richest species diversity and but&#13;
pollution from different sources is one of major stressor. The aim of this study was to assess&#13;
thewater quality in some selected wetlands in Lake Tana sub Basin using physicochemical&#13;
parameters and macro invertebrate assemblage.The study was conducted on six selected sites&#13;
during thedry and wetseasons of the year 2020. Macroinvertebrates were sampled from littoral&#13;
zone at sampling depth of 0.25-0.5 m using standardized kick sampling with a hand D-net (28 cm&#13;
x 30 cm) and a horizontal transect. All the physico-chemical parameters, except salinity and&#13;
Chlorophyll-a, showed a significant (p&lt;0.05) temporal variation and the values ranged 6.8 - 7.3,&#13;
20.1-24.6 ℃, 5.4-6.1 mg/l, 110.8-129.6 ppm, 121-156.9μs/cm, 0.72-1.36 mg/l and 0.36-0.95 mg/l&#13;
for pH, temperature, dissolved oxygen, total dissolved solids, conductivity, nitrate and&#13;
phosphate, respectively. The highest pH value (7.4±1.0) was recorded in the Ras Abay River&#13;
mouth as well as the highest NO&#13;
3&#13;
 (1.75±0.9 mg/l) and PO&#13;
(1.44±0.69 mg/l) was recorded in&#13;
Megech and Gumara River mouth, respectively. A total of 7,247 macro invertebrate individuals&#13;
belonging to 49 families and 77 genera were collected. The total number of individuals present&#13;
at each site ranged from 878 at Megech site to 1669 at Wonjeta, and 3,190 and 4057 during wet&#13;
and dry seasons,respectively. Tubificidae was the most abundant family (1,568 individuals)&#13;
followed by Thiaridae (626 individuals), Caenidae (575 individuals), Coenagrionidae (499&#13;
individuals) and the least Lestidae (479 individuals) family.Gumara and Megech River mouths,&#13;
and sites around Bahir Dar town were moderately and highly polluted compared to other&#13;
minimally polluted sites. Generally,rural areas with high agricultural activities such as crop&#13;
farming and livestock grazing as well as urban areas which directly release domestic wastes into&#13;
the lake affected water quality of the specific areas. Species diversity, species composition and&#13;
evenness indexvalues of macroinvertebrates were low at highly disturbed agricultural sites and&#13;
followed by urban impacted sites. Therefore,agricultural, domestic and industrial wastes should&#13;
be treated before being released into the lake and solid waste disposal in and around the Lake&#13;
Tana and its tributary rivers should be discouraged. &#13;
&#13;
4
</summary>
<dc:date>2022-07-01T00:00:00Z</dc:date>
</entry>
</feed>
