scholarly journals Ex Situ Conservation of Biodiversity with Particular Emphasis to Ethiopia

2013 ◽  
Vol 2013 ◽  
pp. 1-11 ◽  
Author(s):  
Mohammed Kasso ◽  
Mundanthra Balakrishnan

Biodiversity encompasses variety and variability of all forms of life on earth that play a great role in human existence. Its conservation embraces maintenance, sustainable utilization, and restoration, of the lost and degraded biodiversity through two basic and complementary strategies called in situ and ex situ. Ex situ conservation is the technique of conservation of all levels of biological diversity outside their natural habitats through different techniques like zoo, captive breeding, aquarium, botanical garden, and gene bank. It plays key roles in communicating the issues, raising awareness, and gaining widespread public and political support for conservation actions and for breeding endangered species in captivity for reintroduction. Limitations of ex situ conservation include maintenance of organisms in artificial habitats, deterioration of genetic diversity, inbreeding depression, adaptations to captivity, and accumulation of deleterious alleles. It has many constraints in terms of personnel, costs, and reliance on electric power sources. Ethiopia is considered to be one of the richest centers of genetic resources in the world. Currently, a number of stakeholders/actors are actively working on biodiversity conservation through ex situ conservation strategies by establishing gene banks, botanical garden, and zoo.

2019 ◽  
Author(s):  
E N Seliverstova ◽  
V V Khrapach ◽  
V V Volkova ◽  
N V Shegrinets

Preserving biodiversity is a global problem that was reflected in the Convention on Biological Diversity which appeared in 1992. The adoption of the Convention was an answer to the intensified problem of a significant reduction in the diversity of genetic resources. Botanical gardens are the main centres for preserving the biodiversity of plants that solve the problem of preserving the gene pool. One of the main tasks of botanical gardens is to monitor plant populations in their natural habitats in situ. This paper describes the monitoring of the current state of peonies and sedges in the Semistozhki area of the Andropov district in the Stavropol region. The research determines the growing locations and the belongingness of species to plant associations in the vegetation variety of the Stavropol region. It also determines the species that may be treated as rare due to their limited distribution area. The territory is marked by the presence of Paeonia tenuifolia L., which is a tertiary relict, and Paeonia biebersteiniana Rupr., which is subendimic for Stavropol region. Rear species with low numbers that are not threatened by grave danger of extinction are also present. Carex hordeistichos Vill. and c. otrubae Podp. species in the area are small in number. Their populations in the area are inadequate with young, vegetative and strong specimens lacking. The limiting factors are represented by human agricultural activities. Several specimens of a narrow-leaved peony of pink colour and a big number of petals were planted on an experimental stretch of the botanical garden to continue the analysis ex-situ.


2021 ◽  
Vol 948 (1) ◽  
pp. 012001
Author(s):  
N A Devi ◽  
R Eprilurahman ◽  
D S Yudha ◽  
S Raharjo ◽  
M As-Singkily ◽  
...  

Abstract The endemic Chelodina mccordi is considered extinct in the wild; however, ex-situ populations are thriving and sampled for our genetic diversity assessment. We used three sequences resulting from blood and tissue samples of five individual turtles amplified for 650-bp cytochrome oxidase I (COI) fragment of the mitochondrial DNA. We analysed a total of 30 barcoding DNA sequences for phylogenetic relationships and genetic distances among Chelodina spp. Nucleotide diversity of eight C. mccordi samples is 0.007 ± 0.001 with a haplotype diversity of 0.893 ± 0.086. All these samples form a monophyletic clade that is sister to a clade of Australian and New Guinean long-necked turtles. Genetic distances calculated using Kimura 2-paramater model among C. mccordi sequences range between 0.2% and 1.5%, while a few others are without distance. The shortest genetic distance is between individuals from Rote Island, whereas the longest distance was found between individuals, each of which was derived from parental stocks originating in Rote and Timor islands. A genetic distance of 1.1% - 1.5% is likely to denote distinction at subspecies level. Results of this study could help in reintroducing captive individuals into their natural habitats. Thus, captive breeding programme of this species may help its conservation.


Oryx ◽  
2005 ◽  
Vol 39 (2) ◽  
pp. 128-131 ◽  
Author(s):  
Paul A. Rees

Article 9 of the Convention on Biological Diversity 1992 requires parties to adopt measures for the ex situ conservation of biodiversity. Within the European Union this has been implemented by the Zoos Directive. The Directive requires zoos and aquariums to adopt a conservation role. Zoos may comply with the Directive by undertaking research from which conservation benefits accrue. However, most current zoo research is concerned with behaviour, environmental enrichment, nutrition and reproduction, and is therefore largely irrelevant to ex situ conservation. It is unlikely that zoos will increase their output of conservation relevant research because most do not have appropriate resources. Furthermore, as an alternative to undertaking research, a zoo may comply with the Directive by engaging in training, information exchange or captive breeding. Most, if not all, zoos already engage in at least one of these activities and therefore may comply with the Directive by doing nothing.


2018 ◽  
Vol 65 (3-4) ◽  
pp. 121-128
Author(s):  
Einav Mayzlish-Gati ◽  
Margareta Walczak ◽  
Alon Singer ◽  
Tomer Faraj ◽  
Sivan Golan ◽  
...  

Israel is a geographically small and relatively new state (founded in 1948) with high population density, industrial development and economic growth, all of which negatively affect the environment, particularly biodiversity. There is, however, a growing awareness in the country of the need for environmental and biodiversity protection. The Israel Nature and Parks Authority (INPA), the official body legally responsible for protecting natural habitats, biodiversity and ecosystems in Israel, established a program to protect and conserve the endangered, near-threatened and very rare (ENtR) plants listed in the Israel Red Data Book of flora at risk. In this communication, we describe the ex-situ conservation strategies of the Israel Gene Bank (IGB) within this program. The IGB has expanded its role in the conservation of ENtR species from only ex-situ seed conservation to active involvement in whole-plant conservation and reintroducing ENtR species back into nature. In the past 10 years, 1289 accessions belonging to 68% of the species in the Red List were collected to form the IGB core collection of endangered and rare species. The germination unit of the IGB developed 198 new protocols and propagated 87 different ENtR species.


2022 ◽  
Vol 93-94 ◽  
pp. 1-15
Author(s):  
Victoria Gritsenko

Gymnospermium odessanum is a rare relict endemic plant species. The research was carried out during G. odessanum flowering in 2019–2021 at the botanical-geographical plot “Steppes of Ukraine” of the M.M. Gryshko National Botanical Garden, National Academy of Sciences of Ukraine (NBG). Ecological and coenotic conditions of introduction at the NBG differ from natural habitats of the species and are not optimal for its vegetation. However, this species demonstrated ecological-coenotic plasticity and, over the decades, has formed a stable homeostatic introduction coenopopulation here. As of 2021, the area of introduction coenopopulation of G. odessanum at the NBG was 2,075 m2. It comprises 412 individuals of this species (including 40 seedlings, 241 juvenile, 45 immature, 40 virginal, 45 generative, and 1 sub-senile plants). Coenopopulation fragments with a high density of G. odessanum individuals are rare here, so the average density is low – only 0.2 individuals per 1 m2. In 2021, in the spectrum of age states, the total percentage of pregenerative individuals was very high and reached 88.8 %; the share of generative individuals was 10.9 %.In general, the age structure of the introduction coenopopulation of G. odessanum is characterized by long-term (2010–2021) stability. The spatial distribution of individuals in the introduction coenopopulation is of two kinds – random and in groups. This is due to combined myrmecochoric and barochoric propagation. Also due to myrmecochory, this coenopopulation tends to spread the area. Compared to natural coenopopulations, the introduction coenopopulation of G. odessanum at the NBG is characterized by a larger area, a much significant number, and, at the same time, a low average density of individuals. However, like in most of natural populations, its age spectrum is left-sided.The conducted research testifies the successful formation of the introduction coenopopulation of G. odessanum in the meadow-steppe cultural phytocoenosis of the NBG. This introduction coenopopulation is an example of a successful multi-year scientific experiment and effective ex situ protection and preservation of G. odessanum on the northern border of the Right Bank Forest-Steppe of Ukraine, far beyond the natural range of this endemic plant species.


2021 ◽  
Vol 12 (1) ◽  
pp. 42-49
Author(s):  
S. V. Klymenko ◽  
A. P. Ilyinska ◽  
A. V. Kustovska ◽  
N. V. Melnychenko

Global climate change and increased land use lead to the loss of biodiversity at all levels of the organization of living organisms – ecosystems, species, landscape population, genetic, molecular biological levels, etc. The reaction of plants to anthropogenic impact, according to experts, may be even stronger than postglacial changes. A shift in the thermal isotherm will cause the plants to either move and adapt, or disappear. Endemic species that make up “biodiversity hotspots” require special attention. Cornus sessilis Torr. ex Durand, the object of our research, is part of one of these points – the California Floristic Province. Researchers are now focusing their efforts on developing a climate change – related biodiversity management strategy. In the case of the threat of extinction of the species in nature, there is a important method of preserving it in culture (ex situ). M. M. Gryshko National Botanical Garden at the National Academy of Sciences of Ukraine (the NBG) pays great attention to the introduction of rare endemic species from the different geographical and floristic regions of the world. The gene pool of Cornus L. s. l. in the NBG consists of more than 30 species and 40 cultivars including the insufficiently researched and little-known Californian endemic C. sessilis. In Europe, it has been grown since 2017 only in Chateau Perouse Botanic Gardens (Saint-Gilles, France) and in Ukraine only the NBG has it. In this article we evaluate the life cycle of the development C. sessilis under conditions of introduction different from the conditions of its natural area. To do this, we used the classic traditional methods of the research on the process of introduction, in particular, botanical plant identification, visual observation, phenology, comparative morphology and biometrics. Morphological descriptors (life form, colour and texture of bark, leaf shape, pubescence character, structure of generative and vegetative buds, inflorescences, flowers, fruits and endocarp) of C. sessilis genotypes introduced to the NBG are identical to those of plants from their natural habitats. The weight of fruits and endocarps were determined by us for the first time. The results of biometric analysis of the size of leaves and fruits showed that the plants of C. sessilis grown in the NBG had the larger leaf blades, but the smaller fruits as compared to those in the wild. In the NBG the plants underwent a full cycle of seasonal development (from the deployment of buds to the leaf fall, inclusive) for 229 days. In general, the phenological strategy of C. sessilis genotypes introduced in the NBG corresponds to that of other species of Cornus s. str., including C. mas L. Our results indicate that C. sessilis, California’s rare endemic species new to Ukraine, has adapted to the new conditions – the plants bear fruits and produce seeds. The experience of successful introduction makes it possible to cultivate a new species to expand the diversity of food, medicinal and reclamation plants of the family Cornaceae as well as the use in synthetic breeding to obtain new cultivars with valuable biological and economic properties. Cornus sessilis compatibility test as rootstocks for other species is important for clarifying the theoretical issues of family ties of species Cornaceae and practical – for widespread reproduction of the required cultivars C. mas breeding in the NBG on a potentially compatible rootstock C. sessilis.


2014 ◽  
Vol 34 (1) ◽  
pp. 65-72 ◽  
Author(s):  
Jerzy Puchalski ◽  
Maciej Niemczyk ◽  
Piotr Walerowski ◽  
Wiesław Podyma ◽  
Adam Kapler

Abstract Among the 2750 species of the Polish vascular flora, about 500 species are threatened with extinction and 430 of them are strictly protected by national law. The FlorNatur project for the ex situ conservation of the most endangered species was started in 2009. The aim of the project is to collect seeds of 61 species from 161 sites in eastern Poland and store them in the Seed Bank of the Polish Academy of Sciences Botanical Garden - Center for Biological Diversity Conservation in Warsaw- Powsin. A complementary program is being carried out by the Forestry Gene Bank at Kostrzyca in western Poland. Their task is to collect 58 species from 129 natural sites in the western part of Poland. To date, seeds of 31 species from 56 populations have been collected, tested and stored in liquid nitrogen.


2020 ◽  
Vol 11 (1) ◽  
pp. 1-8
Author(s):  
Muhammad Idnan ◽  
Arshad Javid ◽  
Muhammad Nadeem ◽  
Ali Hussain ◽  
Sajid Mansoor ◽  
...  

Background: Study of behavioral conformations play a significant role in ex-situ conservation of ungulates particularly of deer to propagate deer farming. Due to advancement in animal hunting techniques, captive breeding is the best solution to propagate animals for sports or other traditional & medicinal uses. Due to the lack of management methods, captive breeding programs have been used on trial and error basis for rearing of wild animals like Chinkara. Objectives: The present study was planned to investigate behavioral patterns in captivity to explore factors over reproductive success of the Chinkara and potential of this wild animal (Chinkara) for deer farming practices in Pakistan. Methodology: Present study was conducted on the behavior of Chinkara (Gazella bennettii) [wild-caught (WC)=20, captive-bred (CB)=10] for a period of one year from April 2013 to March 2014 at Captive breeding facilities for ungulates, Ravi campus Pattoki, University of Veterinary and Animal Sciences (UVAS), Pakistan. Results: The behavior of captive-born and wild-caught animals was observed by focal sampling pattern to frame conservation strategies for successful management practices for promotion of deer farming in Pakistan. Similar behavioral patterns were observed in both WC and CB animals but WC male Chinkara displayed a higher degree of agonistic interaction than of CB males. From these results it is predicted that there is no obvious immediate effect of captivity on behavioral configurations up to 10 generations in Chinkara. Conclusion: It is suggested that Chinkara is not suitable for domestication like Goat until further studies on ethology of Chinkara.


2020 ◽  
Author(s):  
Miguel Angel Muñiz-Castro ◽  
Gabriela Lopez-Barrera ◽  
Maried Ochoa-Zavala ◽  
Patricia Castro-Felix ◽  
Jose Antonio Vazquez-Garcia ◽  
...  

Abstract Background: Genetic diversity is needed to preserve the capability of a species to survive to environmental changes. Due to the presence of small isolated populations, relict species such as Magnolia are at an elevated extinction risk. In recent years, many new species of Magnolia have been described in Mexico, each one classified by its category of risk. To achieve conservation, knowledge of their basic level of biological diversity is essential to design adequate conservation plans and avoid the negative consequences of genetic loss. Here, we implemented nuclear microsatellite markers to assess 13 populations of three new species of Magnolia that were all previously considered to be Magnolia pacifica. We aimed to evaluate the genetic agreement with the distinction of these three different morphological species (e.g., their species integrity) and to determine their levels of genetic diversity and their geographic distribution to propose conservation strategies. Results: We found high levels of genetic diversity compared to other Magnolia species with no sign of inbreeding. We found a small effective population size and a prevalence of bottlenecks in some populations. The patterns of genetic subdivision did not support the current morphological distinction of three different species. Instead, we suggest that the genetic structure pattern is the result of historical connectivity and the continuous natural fragmentation of the forest. Thus, an isolation by distance pattern may have had an important role in shaping allele frequencies, producing local genetic differences. Conclusions: We argue that a major threat underlies the actual trends of habitat loss, which can directly impact the loss of genetic diversity in the current adult individuals and consequently, increase the risk of extinction in further generations. For conservation purposes, we suggest combining in situ and ex situ conservation of populations with the maintenance of connectivity among the local populations.


Land ◽  
2021 ◽  
Vol 10 (12) ◽  
pp. 1381
Author(s):  
Dilara Arslan ◽  
Kerim Çiçek ◽  
Ömer Döndüren ◽  
Lisa Ernoul

Mediterranean wetlands are among the most threatened natural areas. The needs and demands of an increasing human population are modifying land use and converting natural habitats into artificial areas. In order to combat these trends, effective conservation planning needs to provide clear, systematic identification of threats to find sustainable conservation strategies. In this case study, we evaluated current threats in the Gediz Delta (Turkey) using a multi-method approach. First, we did a comprehensive literature review and stakeholder interviews to identify existing threats. We then did a complete survey of the Delta through intensive fieldwork. The threats were coded and ranked using the conservation standards. We used the threat ranking and field survey to map the most vulnerable areas of the Delta. The most commonly observed threats in the field were pollution and agriculture and aquaculture activities. According to the threat ranking, the most important threats are climate change and residential and commercial development. The habitats that are most at risk are agricultural grassland habitats. The results indicate a need to extend conservation actions in the inner part of the Delta. In addition, the multi-method threat ranking approach could serve as a model to improve conservation planning in other sites worldwide.


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