• 제목/요약/키워드: Ecosystem functioning

검색결과 31건 처리시간 0.028초

Temporal and Spatial Change in Microbial Diversity in New-developed Wetland Soil Covered by Tamarix chinesis Community in Chinese Yellow River Delta

  • Chen Weifeng;Ann Seoung-Won;Kim Hong-Nam;Shi Yanxi;Mi Qinghua
    • 한국환경과학회지
    • /
    • 제14권4호
    • /
    • pp.367-371
    • /
    • 2005
  • Soil samples were collected from new-developed wetland soil ecosystem of Tamarix chinesis plantation in Chinese Yellow River Delta in different months of 2003. Soil characteristics, temporal change and spatial distribution of microbial community composition and their relationship with nitrogen turnover and circling were investigated in order to analyze and characterize the role of microbial diversity and functioning in the specific soil ecosystem. The result showed that the total population of microbial community in the studied soil was considerably low, compared with common natural ecosystem. The amount of microorganism followed as the order: bacteria> actinomycetes>fungi. Amount of actinomycetes were higher by far than that of fungi. Microbial population remarkably varied in different months. Microbial population of three species in top horizon was corrected to that in deep horizon. Obvious rhizosphere effect was observed and microbial population was significantly higher in rhizosphere than other soils due to vegetation growth, root exudation, and cumulative dead fine roots. Our results demonstrate that microbial diversity is low, while is dominated by specific community in the wetland ecosystem of Tamarix chinesi.

토양생태계 건강성 평가기법 비교연구: 토양건강성 평가항목을 중심으로 (A Comparative study of Assessment Techniques for Soil Ecosystem Health: Focusing on Assessment Factors of Soil Health)

  • 채유은;김신웅;곽진일;윤영대;정승우;안윤주
    • 한국지하수토양환경학회지:지하수토양환경
    • /
    • 제20권3호
    • /
    • pp.15-24
    • /
    • 2015
  • The soil ecosystem is a complex system performing particularly complicated and varied functions, such as providing a habitat for organisms, acting as a medium for plant cultivation and growth, and functioning as a buffer against external materials in the environment. To assess whether these important functions of the soil ecosystem are executed appropriately, the concept of soil ecosystem health has been introduced, which is defined as the ability to perform the specific functions of the soil ecosystem. Understanding soil properties and soil indicators related to soil functions is essential to assess the soil health. In this study, systems, the indicators, and evaluation factors for assessing soil ecosystem health employed in a number of countries were investigated and discussed. In particular, it is necessary to introduce a technique for the evaluation of soil ecosystem health in Korea and to develop techniques and indicators appropriate to the soil ecosystem and status in Korea.

Influences of Forest Fire on Forest Floor and Litterfall in Bhoramdeo Wildlife Sanctuary (C.G.), India

  • Jhariya, Manoj Kumar
    • Journal of Forest and Environmental Science
    • /
    • 제33권4호
    • /
    • pp.330-341
    • /
    • 2017
  • Tropical forests play a key role for functioning of the planet and maintenance of life. These forests support more than half of the world's species, serve as regulators of global and regional climate, act as carbon sinks and provide valuable ecosystem services. Forest floor biomass and litterfall dynamics was measured in different sites influenced by fire in a seasonally dry tropical forest of Bhoramdeo wildlife sanctuary of Chhattisgarh, India. The forest floor biomass was collected randomly placed quadrats while the litterfall measured by placing stone-block lined denuded quadrat technique. The seasonal mean total forest floor biomass across the fire regimes varied from $2.00-3.65t\;ha^{-1}$. The total litterfall of the study sites varied from $4.75-7.56t\;ha^{-1}\;yr^{-1}$. Annual turnover of litter varied from 70-74% and the turnover time between 1.35-1.43 years. Monthly pattern of forest floor biomass indicated that partially decayed litter, wood litter and total forest floor were differed significantly. The seasonal variation showed that leaf fall differed significantly in winter season only among the fire regimes while the wood litter was found non significant in all the season. This study shows that significant variation among the site due to the forest fire. Decomposition is one of the ecological processes critical to the functioning of forest ecosystems. The decomposing wood serves as a saving account of nutrients and organic materials in the forest floor. Across the site, high fire zone was facing much of the deleterious effects on forest floor biomass and litter production. Control on such type of wildfire and anthropogenic ignition could allow the natural recovery processes to enhance biological diversity. Chronic disturbances do not provide time for ecosystem recovery; it needs to be reduced for ecosystem health and maintaining of the high floral and faunal biodiversity.

기후변화와 수산업의 관계에 관한 연구 (Bio-Economic Relationships between Climate Change and Fisheries)

  • 박성쾌;권혁준;박종운;차철표
    • 수산해양교육연구
    • /
    • 제22권3호
    • /
    • pp.388-401
    • /
    • 2010
  • This research aims at analyzing impacts of climate change on fisheries. Climate change is an additional pressure on top of the many which fish stocks already experience. This implies that the impact of climate change must be evaluated in the context of other anthropogenic pressures, which often have a much greater and more immediate effect. Conversely, it is evident that fish stocks will be more resilient to climate impacts if the stresses due to other factors, such as over-fishing and pollution, are minimized. Improved management of fisheries and of marine ecosystems can undoubtedly play an important role in adapting to the impacts of climate change. Most of the improvements which are needed do not require new science or understanding, they require patient development of acceptable, effective, responsive social institutions and instruments for achieving adaptive management. Management advices must include complete and transparent information on risks and uncertainties which arise from data quality and from structural deficiencies in the assessment models. Well-designed and reliable monitoring of fish stocks and the marine ecosystem is essential in order to detect changes and give warning in advance of alterations in the productivity of individual species and of the structure and functioning of the ecosystem and fishery economy on which they depend.

Diversity of Arbuscular Mycorrhizal Fungi and Their Roles in Ecosystems

  • Lee, Eun-Hwa;Eo, Ju-Kyeong;Ka, Kang-Hyeon;Eom, Ahn-Heum
    • Mycobiology
    • /
    • 제41권3호
    • /
    • pp.121-125
    • /
    • 2013
  • Arbuscular mycorrhizal fungi (AMF) have mutualistic relationships with more than 80% of terrestrial plant species. This symbiotic relationship is ancient and would have had important roles in establishment of plants on land. Despite their abundance and wide range of relationship with plant species, AMF have shown low species diversity. However, molecular studies have suggested that diversity of these fungi may be much higher, and genetic variation of AMF is very high within a species and even within a single spore. Despite low diversity and lack of host specificity, various functions have been associated with plant growth responses to arbuscular mycorrhizal fungal colonization. In addition, different community composition of AMF affects plants differently, and plays a potential role in ecosystem variability and productivity. AMF have high functional diversity because different combinations of host plants and AMF have different effects on the various aspects of symbiosis. Consequently, recent studies have focused on the different functions of AMF according to their genetic resource and their roles in ecosystem functioning. This review summarizes taxonomic, genetic, and functional diversities of AMF and their roles in natural ecosystems.

Functioning of the Geoecosystem for the West Side of Admiralty Bay (King George Island, Antarctica): Outline of Research at Arctowski Station

  • Rakusa-Suszczewski, Stanislaw
    • Ocean and Polar Research
    • /
    • 제25권4호
    • /
    • pp.653-662
    • /
    • 2003
  • Changes in the area of geo-ecosystem $(62^{\circ}09'S,\;58^{\circ}31'w)$ reflect climatic changes in the South Shetland Islands. Air temperature and deglaciation will increase. The ice-free space area at the SSSS 8- (ASPA 121) site has enlarged threefold during the last 21 years, thus creating conditions for inhabitation and succession. Wind, water and snow play important roles in transportation of geochemical components. They distribute nutrients, mineral substances, seeds, fragments of plants and animals, etc. Plant and animal colonization is patchy and it happens at random in an 'island' - like manner. The colonization pattern is dependant, to a high degree on physical factors. The newly uncovered ice-free areas are at first inhabited by a vascular plant known as the Deschampsia antarctica. The border of the land-oasis with Admiralty Bay is the place where the processes related to animal feeding at the sea and reproduction on the land take place. Bird colonies and pinniped lairs form centers of fertilization surrounded by high chemical gradients dependent on the direction of the flow of nutrients $(e.g.\;NH_4)$. During the last 25 years, the numbers of penguins in this region have decreased, and thus the amount of materials excreted on land has diminished. The numbers of fur seals change in multi-annual cycles, and their migration into this area is related to the E1 $Ni\~{n}o$ phenomenon. The numbers of elephant seals in the area did not change. Organic matter deposited by the sea onto the shore are a source of nutrients and deficient chemical elements on land. Mineral matter is washed out into the waters of Admiralty Bay. These processes change seasonally, and multi annually. Negative effects on the environment at Arctowski Station induced by man are slight, but noticeable nevertheless. Physical processes have the largest influence on the living conditions and distribution of plants and animals, and as a consequence, on the functioning of the geo-ecosystem in the coastal-shore zone of the Maritime Antarctic.

혼농임업 : 지속적 개발을 위한 새로운 접근 방법 (Community Forestry : Revitalizing an Age-old Practice of Sustainable Development)

  • ;;박용구
    • 한국산림과학회지
    • /
    • 제84권4호
    • /
    • pp.525-535
    • /
    • 1995
  • 대규모의 벌채, 경제수 조림, 생태계의 부적절한 보존등 서구의 산업화된 삼림경영은 환경론자들과 생태학자와 보존론자들의 거센 반발에 부딪치고 있다. 환경이 급격히 파괴되어 가고 있음에 따라 삼림경영 방침도 바뀌어져야 한다는 생태학자들의 목소리가 높아지고 있다. 지역적 임업, 사회적 임업, 자작농임업(自作農林業) 등 여러 가지 이름으로 불리는 임업 즉 지속적으로 생태계를 보호하려는 오래된 임업 경영 방법이 최근에 관심을 끌고 있다. 자연 자원을 조직적으로 경영하지 못하는 이러한 전통적인 형태의 삼림 경영 방법은 오래 전부터 많은 나라에서 수행되어 왔으나 지역사회의 필요와 생태계의 역할을 확실하게 이해함으로써 보다 높은 생산력을 올릴 수 있는 토지 이용 방법을 찾을 수 있게 될 것이다. 혼농임업경영의 성격은 지리적 위치, 규모, 사회적 또는 지역적 구조와 요구에 따라 매우 다양하다. 이 논문은 혼농임업 경영이 산업적 삼림 경영보다 경제적 생산력은 낮을지 모르나 생태계를 보호하고 생산을 지속적으로 유지하는데 훨씬 유리한 방법이라는 것을 밝혀냈다. 산업적 삼림 경영은 처음에는 혼농임 경영보다 높은 생산력을 얻을 수 있을지 모르나 시간이 갈수록 생태적인 파괴 때문에 지속적인 생산성이 저하하게 될 것이다. 전통적인 경제 분석법을 조사해 볼 때 삼림과 관련된 많은 사회, 환경적 비용을 계상 하지 않았음을 알 수 있다. 본 논문에서는 관리가 잘된 혼농임업은 지속적으로 생태계를 보존하는 문제와 경제적인 이득을 얻는 문제간에 균형을 잡을 수 있다는 것이 논의되었다. 즉 혼농임업에 대한 자가농임업(自家農林業)개발의 종합적 모델을 농업, 임업 및 환경 부분의 서비스를 상호 연결시킨 협력 방법을 제시하였다.

  • PDF

Conservation potential of North American large rivers: the Wabash River compared with the Ohio and Illinois rivers

  • Pyron, Mark;Muenich, Rebecca Logsdon;Casper, Andrew F.
    • Fisheries and Aquatic Sciences
    • /
    • 제23권6호
    • /
    • pp.15.1-15.14
    • /
    • 2020
  • Background: Large rivers are ecological treasures with high human value, but most have experienced decades of degradation from industrial and municipal sewage, row-crop agricultural practices, and hydrologic alteration. We reviewed published analyses of long-term fish diversity publications from three intensively managed large river ecosystems to demonstrate the conservation potential of large river ecosystems. Results: We show how the incorporation of recent advances in river concepts will allow a better understanding of river ecosystem functioning and conservation. Lastly, we focus on the Wabash River ecosystem based on high conservation value and provide a list of actions to maintain and support the ecosystem. In the Wabash River, there were originally 66 species of freshwater mussels, but now only 30 species with reproducing populations remain. Although there were multiple stressors over the last century, the largest change in Wabash River fish biodiversity was associated with rapid increases in municipal nutrient loading and invasive bigheaded carps. Conclusions: Like similarly neglected large river systems worldwide, the Wabash River has a surprising amount of ecological resilience and recovery. For instance, of the 151 native fish species found in the 1800s, only three species have experienced local extinctions, making the modern assemblage more intact than many comparable rivers in the Mississippi River basin. However, not all the changes are positive or support the idea of recovery. Primary production underpins the productivity of these ecosystems, and the Wabash River phytoplankton assemblages shifted from high-quality green algae in the 1970s to lower less nutritional blue-green algae as nutrient and invasive species have recently increased. Our recommendations for the Wabash River and other altered rivers include the restoration of natural hydrology for the mainstem and tributaries, nutrient reductions, mechanisms to restore historical hydrologic patterns, additional sediment controls, and improved local hydraulics.

기후변화대응 물관리를 위한 자연기반해법의 개념적 체계와 정책적 과제 (Nature-based Solutions for Climate-Adaptive Water Management: Conceptual Approaches and Challenges)

  • 박유진;오재일
    • 한국물환경학회지
    • /
    • 제38권4호
    • /
    • pp.177-189
    • /
    • 2022
  • Nature-based Solutions (NbS) are defined as practical and technical approaches to restoring functioning ecosystems and biodiversity as a means to address socio-environmental challenges and provide human-nature co-benefits. This study reviews NbS-related literature to identify its key characteristics, techniques, and challenges for its application in climate-adaptive water management. The review finds that NbS has been commonly used as an umbrella term incorporating a wide range of existing ecosystem-based approaches such as low-impact development (LID), best management practices (BMP), forest landscape restoration (FLR), and blue-green infrastructure (BGI), rather than being a uniquely-situated practice. Its technical form and operation can vary significantly depending on the spatial scale (small versus large), objective (mitigation, adaptation, naturalization), and problem (water supply, quality, flooding). Commonly cited techniques include green spaces, permeable surfaces, wetlands, infiltration ponds, and riparian buffers in urban sites, while afforestation, floodplain restoration, and reed beds appear common in non- and less-urban settings. There is a greater lack of operational clarity for large-scale NbS than for small-scale NbS in urban areas. NbS can be a powerful tool that enables an integrated and coordinated action embracing not only water management, but also microclimate moderation, ecosystem conservation, and emissions reduction. This study points out the importance of developing decision-making guidelines that can inform practitioners of the selection, operation, and evaluation of NbS for specific sites. The absence of this framework is one of the obstacles to mainstreaming NbS for water management. More case studies are needed for empirical assessment of NbS.

환경변이에 대한 저서성 대형무척추동물의 생물학적 형질과 기능적 다양성 분석: 수생태계 건강성 평가 관점에서 (Characterizing Responses of Biological Trait and Functional Diversity of Benthic Macroinvertebrates to Environmental Variables to Develop Aquatic Ecosystem Health Assessment Index)

  • 문미영;지창우;이대성;이다영;황순진;노성유;곽인실;박영석
    • 생태와환경
    • /
    • 제53권1호
    • /
    • pp.31-45
    • /
    • 2020
  • 군집지수와 FD와의 상관분석 결과 FD는 군집지수 중 Shannon 다양도와 가장 높은 상관성을 보였다. 조사지점은 환경 특성에 따라 6개의 그룹으로 나누어졌으며, 고도에 따라서 뚜렷한 차이를 보였다. 이에 따라 고도가 높은 그룹 1은 산림의 비율이 많고 좋은 수질을 보였으나 고도가 낮은 그룹 6은 수질이 양호하지 않았다. 환경 구배에 따른 조사지역 그룹과 군집지수와 FD의 연관성 분석을 위해 NMDS를 시행하였으며 그룹 1~3에서 FEve를 제외한 모든 지수가 높았다. 그룹 간의 종구성은 그룹 1~3에는 하루살이목, 날도래목, 강도래목이 높았으며, 그룹 4, 5에는 잠자리목, 딱정벌레목이 주요하게 나타났다. 생물학적 형질은 그룹 1~3에서 생식기간이 길고, 이동성이 낮은 형질 특성을 보였으며 생물의 저항력 전략을 잘 보여주었다. 반대로 그룹 4~6은 생식기간이 짧고, 이동성이 높은 회복력의 전략을 뚜렷하게 반영해 주었다. 수질의 오염도가 낮은 상류는 교란의 빈도가 적고 공간적으로 높은 이질성을 가졌으며 생물이 주로 저항성 전략을 보였으며 생물이 서식지에 오래 머무를 수 있어 기능적, 구조적 생물다양성이 높게 나타났다. 반대로 수질의 오염도가 높은 하류는 교란의 빈도가 높고 공간적으로 균질성이 높으며 생물은 주로 회복력의 전력을 보여 교란에 의해 이동하거나 회피할 수 있는 휴면기, 고치, 세포, 알 등의 독특한 형태를 갖는 반면 생물다양성은 낮게 나타났다. 본 연구를 통해 저서성 대형 무척추동물의 기능적 다양성은 수서 생태계 환경과의 관계를 잘 설명해 주었다. 따라서 생물의 형질을 이용한 기능적 다양성은 잠재적으로 수생태계 건강성 평가에 효과적으로 이용될 수 있을 것이다.