• 제목/요약/키워드: Carbon forestry

검색결과 182건 처리시간 0.027초

Genomic Analysis of the Xanthoria elegans and Polyketide Synthase Gene Mining Based on the Whole Genome

  • Xiaolong Yuan;Yunqing Li;Ting Luo;Wei Bi;Jiaojun Yu;Yi Wang
    • Mycobiology
    • /
    • 제51권1호
    • /
    • pp.36-48
    • /
    • 2023
  • Xanthoria elegans is a lichen symbiosis, that inhabits extreme environments and can absorb UV-B. We reported the de novo sequencing and assembly of X. elegans genome. The whole genome was approximately 44.63 Mb, with a GC content of 40.69%. Genome assembly generated 207 scaffolds with an N50 length of 563,100 bp, N90 length of 122,672 bp. The genome comprised 9,581 genes, some encoded enzymes involved in the secondary metabolism such as terpene, polyketides. To further understand the UV-B absorbing and adaptability to extreme environments mechanisms of X. elegans, we searched the secondary metabolites genes and gene-cluster from the genome using genome-mining and bioinformatics analysis. The results revealed that 7 NR-PKSs, 12 HR-PKSs and 2 hybrid PKS-PKSs from X. elegans were isolated, they belong to Type I PKS (T1PKS) according to the domain architecture; phylogenetic analysis and BGCs comparison linked the putative products to two NR-PKSs and three HR-PKSs, the putative products of two NR-PKSs were emodin xanthrone (most likely parietin) and mycophelonic acid, the putative products of three HR-PKSs were soppilines, (+)-asperlin and macrolactone brefeldin A, respectively. 5 PKSs from X. elegans build a correlation between the SMs carbon skeleton and PKS genes based on the domain architecture, phylogenetic and BGC comparison. Although the function of 16 PKSs remains unclear, the findings emphasize that the genes from X. elegans represent an unexploited source of novel polyketide and utilization of lichen gene resources.

'탄소발자국' 개념의 발전 과정과 농림 부문에서의 활용 전망 (Development of 'Carbon Footprint' Concept and Its Utilization Prospects in the Agricultural and Forestry Sector)

  • 최성원;김학영;김준
    • 한국농림기상학회지
    • /
    • 제17권4호
    • /
    • pp.358-383
    • /
    • 2015
  • 지구 온난화를 유발하는 온실가스들의 구체적인 배출량을 정량화하는 수단으로서 2000년대 중반부터 '탄소발자국'의 개념이 발전하였다. 아직도 명확한 정의나 측정 단위 또는 범위에 대한 규정이 존재하지 않지만, '개인이나 조직에 의해 제품의 전 생산 과정에서 직간접적으로 대기로 배출된 전체 온실가스의 양을 이산화탄소 상당량으로 나타낸 것'이라는 의미로 널리 사용되고 있다. ISO/TS 14067에 따르면, 제품의 탄소발자국은 온실가스를 배출하는 단위 공정들의 활동량 자료에 해당 공정의 배출계수를 곱하고 이를 모두 합산하여 산정한다. 이를 바탕으로 소비자들에게 비교 선택의 기회를 제공하고 생산자들의 자발적인 온실가스 배출 감축 활동을 장려하기 위한 '탄소성적표지' 제도가 전 세계적으로 다양하게 시행되고 있다. 이 제도의 일환으로 농업 분야에서 시범 운영되고 있는 '저탄소농축산물인증제'는 구매자의 윤리적 소비를 돕는 판단 근거로서 활용 가치가 클 것으로 기대된다. 이 과정에서 농산물에 대한 전과정평가의 경계를 설정하는 데에는 주로 사용 및 폐기 단계가 제외된 'cradle to gate' 접근법이 사용된다. 범위를 넓혀 농림 부문 전체에 대한 탄소발자국 산정은 "국가 온실가스 인벤토리 보고서"에서 유일하게 배출량뿐만 아니라 제거량도 고려해야 하는 특징을 가지고 있다. 현재 산정이 이루어지지 않는 농경지의 다년생 입목 바이오매스에 축적된 탄소의 변화량을 계산할 수 있다면 전체 온실가스 배출량을 상당 부분 감축할 수 있을 것이다. 이를 위해 전 과정의 이산화탄소 교환을 직접 정량화할 수 있는 타워 기반의 플럭스 관측이 사용될 수 있다. 탄소발자국 정보는 다른 지표들과 융합하여 지속가능한 농림생태계를 위한 좀 더 총체적인 지표 개발에 사용될 수 있다.

우리나라 쇠고기 소비 행태 변화에 의한 이산화탄소 배출 변화량 예측 (Prediction of the Carbon Dioxide Emission Change Resulting from the Changes in Bovine Meat Consumption Behavior in Korea)

  • 여민주;김용표
    • 한국대기환경학회지
    • /
    • 제31권4호
    • /
    • pp.356-367
    • /
    • 2015
  • A consumption based study on the carbon dioxide ($CO_2$) emission change due to the changes in the bovine meat consumption behavior in Korea was carried out. It was found that if the consumption of bovine meat be reduced by half, the reduction amount of $CO_2$ emissions be over 0.8 $MtCO_2e$ in all senarios in 2023. This amount is equivalent to over 50% of the greenhouse gases (GHGs) emission reduction target in agriculture and forestry, and fishery, a significant reduction. It was also found that the $CO_2$ emission reduction amount in consumption-based approach was the largest when the consumption of the imported bovine meat be reduced, though the difference was not that large.

Cations of Soil Minerals and Carbon Stabilization of Three Land Use Types in Gambari Forest Reserve, Nigeria

  • Falade, Oladele Fisayo;Rufai, Samsideen Olabiyi
    • Journal of Forest and Environmental Science
    • /
    • 제37권2호
    • /
    • pp.116-127
    • /
    • 2021
  • Predicting carbon distribution of soil aggregates is difficult due to complexity in organo-mineral formation. This limits global warming mitigation through soil carbon sequestration. Therefore, knowledge of land use effect on carbon stabilization requires quantification of soil mineral cations. The study was conducted to quantify carbon and base cations on soil mineral fractions in Natural Forest, Plantation Forest and Farm Land. Five 0.09 ha were demarcated alternately along 500 m long transect with an interval of 50 m in Natural Forest (NF), Plantation Forest (PF) and Farm Land (FL). Soil samples were collected with soil cores at 0-15, 15-30 and 30-45 cm depths in each plot. Soil core samples were oven-dried at 105℃ and soil bulk densities were computed. Sample (100 g) of each soil core was separated into >2.0, 2.0-1.0, 1.0-0.5, 0.5-0.05 and <0.05 mm aggregates using dry sieve procedure and proportion determined. Carbon concentration of soil aggregates was determined using Loss-on-ignition method. Mineral fractions of soil depths were obtained using dispersion, sequential extraction and sedimentation methods of composite soil samples and sieved into <0.05 and >0.05 mm fractions. Cation exchange capacity of two mineral fractions was measured using spectrophotometry method. Data collected were analysed using descriptive and ANOVA at α0.05. Silt and sand particle size decreased while clay increased with increase in soil depth in NF and PF. Subsoil depth contained highest carbon stock in the PF. Carbon concentration increased with decrease in aggregate size in soil depths of NF and FL. Micro- (1-0.5, 0.5-0.05 and <0.05 mm) and macro-aggregates (>2.0 and 2-1.0 mm) were saturated with soil carbon in NF and FL, respectively. Cation exchange capacity of <0.05 mm was higher than >0.05 mm in soil depths of PF and FL. Fine silt (<0.05 mm) determine the cation exchange capacity in soil depths. Land use and mineral size influence the carbon and cation exchange capacity of Gambari Forest Reserve.

산림경관서비스 지불제 도입을 위한 시범사업 설계 (Pilot-Project Design on Introduction of Payment of Forest Landscape Service)

  • 최재용;이동근;이호철;고재춘
    • 한국환경복원기술학회지
    • /
    • 제12권6호
    • /
    • pp.112-122
    • /
    • 2009
  • Payment of Forest Landscape Service (PFLS) is based on the value of landscape conservation and is a positive forest policy inducing the owners of mountains to improve environmental service quality with economic incentives. The purpose of this study is to test the feasibility of PFLS and find out the elements related to PFLS such as associated statutes, target applications, eligible owner's requirements, and applicable environmental services. Research sites were selected in designated reserved forests by law and surveys were carried out with 28 professional forestry engineers and 10 owners of reserved forests located in Chungnam Province in November, 2008. As a result, the owners are willing to participate pilot-project of PFLS if they could have tax incentives. Preferred activities in their forestry are eco-tourism and carbon emission trading as PFLS business model. Although they expect low economic benefit from the PFLS, respondents answered introducing PFLS will give good opportunities for owners of a reserved forest to enhance willingness to manage their forestry properly for the landscape conservation. In this study, PFLS evaluation indicators and policy directions are established and recommends the strategies to cope with changing needs of forestry conservation by inducing the owners' active participation in the sustainable forest landscape management.

Intercropping of Cow Pea (Vigna unguiculata) as Summer Forage Yield with Grewia tenax in Irrigated Saline Soil of Khartoum State, Sudan

  • Abdalla, Nasre Aldin Mustafa;Alawad, Seid Ahmed Hussein;ElMukhtar, Ballal Mohamed
    • Journal of Forest and Environmental Science
    • /
    • 제38권2호
    • /
    • pp.122-127
    • /
    • 2022
  • Agroforestry in terms of intercropping cow pea as summer forage with Grewia tenax was undertaken under sub -irrigation system in two consecutive seasons of 2017 and 2018 in saline soil of Khartoum State of Sudan. The aims were to find out suitable agro forestry system for saline soils as well as to investigate effect of tree spacing on field summer forage crop under semi -irrigation system. Therefore G. tenax trees that spaced at 4×4 m were used as main factor versus cow pea crop that incorporated at 25×50 cm intervals by using completely randomized block design with 3 replications. Trees and crop parameters were determined in terms of plant growth and yield. In addition to land equivalent ratio and soil chemical and physical properties at different layers were determined. The results revealed that, soil parameters in terms of CaCo3, SAR, ESP, pH paste and EC ds/m were increased with increasing soil depths. Meanwhile tree growth did not show any significant differences in the first season in 2017. Whereas in the second season in 2018 tree growth namely; tree height, tree collar and canopy diameters were higher under intercropping than in sole trees. Cow pea plant height recorded significant differences under sole crop in the first season in 2017. Unlike the forage fresh yield that was significant under the inter cropped plots. Tree fruit yield was higher under sole trees and land equivalent ratio was more advantageous under GS2 (1.5 m) which amounted to 4. Therefore it is possible to introduce this agroforestry system under saline soils to provide summer forage of highly nutritive value to feed animals and to increase farmers' income as far as to halt desertification and to sequester carbon.

산림관리에 따른 기초지자체 규모의 탄소중립 가능성 평가 - 파주시와 고성군을 대상으로 - (Carbon neutrality potentials in local governments under different forest management - The Study Case of Paju and Goseong -)

  • 이도형;최혜영;김주영;정유경;길승호
    • 한국환경복원기술학회지
    • /
    • 제25권3호
    • /
    • pp.17-28
    • /
    • 2022
  • We evaluated the effect of CO2 offsetting by estimating changes in carbon uptake under various forest management scenarios and proposed forest management strategies to achieve carbon neutrality. Paju and Goseong, which have relatively large forest areas but different industrial characteristics, were selected for the study sites. The current state of forest distribution was analyzed using forest type maps and aerial photographs, and the amount of carbon uptake was calculated using the equation presented by the IPCC Guidelines for National Greenhouse Gas Inventories and the national emission/absorption coefficients from the Korea National Greenhouse Gas Inventory Report. As of 2015, the forest carbon absorption in Paju and Goseong was 49,931 t/yr and 94,225 t/yr, respectively, and the annual carbon absorption per unit area was 2.28 t/ha/yr and 2.16 t/ha/yr. Under the forest management scenarios, the annual maximum carbon absorption per unit area is estimated to increase to 5.68 t/ha/yr in Paju and 4.22 t/ha/yr in Goseong, and this absorption would increase further if urban forests were additionally created. Even if the current forests of Paju and Goseong are maintained as they are, emissions from electricity use can be sufficiently offset. However, by applying appropriate forest management strategies, emissions from sectors other than electricity use could be offset. This study can be applied to the establishment of carbon absorption strategies in the forest sector to achieve carbon neutrality.

Effects of Long-term Exposure to Black Carbon Particles on Growth and Gas Exchange Rates of Fagus crenata, Castanopsis sieboldii, Larix kaempferi and Cryptomeria japonica Seedlings

  • Yamaguchi, Masahiro;Otani, Yoko;Takeda, Kenta;Lenggoro, I. Wuled;Ishida, Atsushi;Yazaki, Kenichi;Noguchi, Kyotaro;Sase, Hiroyuki;Murao, Naoto;Nakaba, Satoshi;Yamane, Kenichi;Kuroda, Katsushi;Sano, Yuzou;Funada, Ryo;Izuta, Takeshi
    • Asian Journal of Atmospheric Environment
    • /
    • 제6권4호
    • /
    • pp.259-267
    • /
    • 2012
  • To clarify the effects of black carbon (BC) particles on growth and gas exchange rates of Asian forest tree species, the seedlings of Fagus crenata, Castanopsis sieboldii, Larix kaempferi and Cryptomeria japonica were exposed to BC particles with sub-micron size for two growing seasons from 1 June 2009 to 11 November 2010. The BC particles deposited after the exposure to BC were observed on the foliar surface of the 4 tree species. At the end of the experiment, the amount of BC accumulated on the foliar surface after the exposure to BC aerosols were 0.13, 0.69, 0.32 and 0.58 mg C $m^{-2}$ total leaf area in F. crenata, C. sieboldii, L. kaempferi and C. japonica seedlings, respectively. In August 2010, the exposure to BC particles did not significantly affect net photosynthetic rate under any light intensity, stomatal diffusive conductance to water vapour ($g_s$), stomatal limitation of photosynthesis, response of $g_s$ to increase in vapour pressure deficit and leaf temperature under light saturated condition in the leaves or needles of the seedlings. These results suggest that the BC particles deposited on the foliar surface did not reduce net photosynthesis by shading, did not increase leaf temperature by absorption of irradiation light, and did not induce plugging of stomata in the leaves or needles of the seedlings. There were no significant effects of BC particles on the increments of plant height and stem base diameter during the experimental period and the whole-plant dry mass at the end of the experiment. These results indicate that the exposure to BC particles with sub-micron size for two growing seasons did not significantly affect the growth and leaf or needle gas exchange rates of F. crenata, C. sieboldii, L. kaempferi and C. japonica seedlings.

Assessment of Carbon Sequestration Potential in Degraded and Non-Degraded Community Forests in Terai Region of Nepal

  • Joshi, Rajeev;Singh, Hukum;Chhetri, Ramesh;Yadav, Karan
    • Journal of Forest and Environmental Science
    • /
    • 제36권2호
    • /
    • pp.113-121
    • /
    • 2020
  • This study was carried out in degraded and non-degraded community forests (CF) in the Terai region of Kanchanpur district, Nepal. A total of 63 concentric sample plots each of 500 ㎡ was laid in the inventory for estimating above and below-ground biomass of forests by using systematic random sampling with a sampling intensity of 0.5%. Mallotus philippinensis and Shorea robusta were the most dominant species in degraded and non-degraded CF accounting Importance Value Index (I.V.I) of 97.16 and 178.49, respectively. Above-ground tree biomass carbon in degraded and non-degraded community forests was 74.64±16.34 t ha-1 and 163.12±20.23 t ha-1, respectively. Soil carbon sequestration in degraded and non-degraded community forests was 42.55±3.10 t ha-1 and 54.21±3.59 t ha-1, respectively. Hence, the estimated total carbon stock was 152.68±22.95 t ha-1 and 301.08±27.07 t ha-1 in degraded and non-degraded community forests, respectively. It was found that the carbon sequestration in the non-degraded community forest was 1.97 times higher than in the degraded community forest. CO2 equivalent in degraded and non-degraded community forests was 553 t ha-1 and 1105 t ha-1, respectively. Statistical analysis showed a significant difference between degraded and non-degraded community forests in terms of its total biomass and carbon sequestration potential (p<0.05). Studies indicate that the community forest has huge potential and can reward economic benefits from carbon trading to benefit from the REDD+/CDM mechanism by promoting the sustainable conservation of community forests.

Some DTPA Extractable Micronutrients in Different Hill Forest Soils of Chittagong Region, Bangladesh

  • Akhtaruzzaman, Md.;Osman, K.T.;Sirajul Haque, S.M.
    • Journal of Forest and Environmental Science
    • /
    • 제32권1호
    • /
    • pp.20-26
    • /
    • 2016
  • DTPA (Diethelene-triamine pentaacetic acid) extractable micronutrients of surface soil samples from six different locations of Cox's Bazar and Chittagong districts were studied. All the soils under study were sufficient in DTPA extractable Fe, Mn and Cu contents. The available Zn contents in soils of Dulhazara, Chengchhari and Faissakhali under study were also above the critical limit while soils at Fulchhari, Hasnabad and CU were deficient in available Zn. The study also showed that DTPA extractable Fe content had the significant and positive relationships with clay and soil organic carbon. On the hand, negative and significant relationship was observed between extractable Mn and soil pH while DTPA extractable Zn and Cu were positively and significantly correlated with soil organic carbon of the studied area.