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      • KCI등재

        전북지역에서의 미국 남부소나무류 종간 (種間) 교잡종의 생장

        윤양,전계상,박문한 ( Yang Youn,Gae Sang Jhun,Moon Han Park ) 한국산림과학회 1984 한국산림과학회지 Vol.64 No.1

        Hybrids among some southern pines, Pinus rigida, Pinus taeda and Pinus serotina, were tested in Chunbuk area in order to investigate their adaptability to Korean climate and soils. The results were summarized as follows; 1) Hybrids between P. rigida and P. raeda showed good growth among interspecific hybrids of southern pines tested. In particular, P. taeda×P. rigida showed remarkable growth in Chunbuk area. 2) The survival rate of P. taeda was extremely low, probably because of cold susceptibility. 3) Volume growth was correlated with width and length of cone, length of needle and needle sheath at the 1% level. 4) Hybrids were generally located between the parents in cluster analysis.

      • KCI등재

        잣나무의 수형(樹型) 조절(調節) (III) - III영급(齡級) 이하(以下) 인공림(人工林)에서 잣과 목재(木材) 생산(生産)을 위한 수형(樹型) -

        이재선,송정호,박문한,한상억,Yi, Jae-Seon,Song, Jeong-Ho,Park, Moon-Han,Han, Sang-Urk 한국산림과학회 1999 한국산림과학회지 Vol.88 No.2

        채종원(採種園) 관리를 위해 개발된 여러 수종의 다양한 수형 조절 방법의 검토 및 이미 수형 조절 작업을 받은 16년생 접목 잣나무의 성장 조사와 I영급~III영급 조림지 임목의 성장 조사를 통하여 잣나무 인공림에서 잣과 목재를 생산할 수 있는 수형과 그 조절 방법을 제시하였다. 제 1형은 I~II영급에 잣 생산만을 위해 적용할 수 있는 방법으로 지상 1m 정도의 힘센 생지(生枝)를 포함하여 1m 정도 간격으로 4~5마디까지 남기고 단간(斷幹)하되 각 마디에 3~4개의 일차지(一次枝)를 윤생(輪生)으로 배치하는 변칙주간형(變則主幹型)이고, 제 2형은 잣과 목재 생산을 함께 도모하는 II영급~III영급에 적용이 가능한 방법으로 힘센 첫 생지 (지표에서 4m~8m)의 아래 부분은 무절(無節) 주간(主幹)으로 성장시키고 그 위는 1m 정도 간격으로 최고 4~5마디까지 남기고 단간하되 각 마디에 3~4개의 일차지를 윤생으로 배치하는 변칙주간형이며, 제 3형은 목재 생산만을 위해 지하고(枝下高)가 9m를 넘는 잣나무를 강도(强度)의 가지치기로 주간형(主幹型)을 이루게 하여 곧고 빠른 주간의 성장을 도모하는 방법이다. To improve nut production and timber quality in a plantation, crown shape controls were suggested for Korean white pines (Pinus koraiensis) under age class III through the analyses of the crown shape controls for seed orchard trees in several species, of crown status of controlled and uncontrolled trees in a Korean white pine seed orchard, and of growth characteristics of plantation trees under age class III. For nut production from the small trees less than 8 m, modified leader type can be applied by cutting the central leader and all branches below 1 m and keeping 4~5 nodes with 3~4 whorled branches a node locating 1 m apart. Trees with a 4~8 m long trunk below the first living branch are shaped into trees for nut and timber production, which have a 4~8 m long knotless stem and a modified leader type crown with 4~5 nodes with 3~4 whorled branches a node at a distance of 1 m. Trees, showing the first living branch at or above 9 m from the surface, are pruned severely for timber production and result in a central leader type containing two fifths of the initial crown. It is advisable to remove the leader and the branches when collecting cones or after/during October to take advantage of easy labor and little resin while cutting. After stem cut, branches showing apical dominance are to be cut to control height when necessary. The removal of the uppermost node may be needed to control the crown shape several years after the initial stem-cut.

      • KCI등재

        잣나무의 수형 조절 (3) - 3령급 이하 인공림에서 잣과 목재 생산을 위한 수형 -

        이재선(Jae Seon Yi),송정호(Jeong Ho Song),박문한(Moon Han Park),한상억(Sang Urk Han) 한국산림과학회 1999 한국산림과학회지 Vol.88 No.2

        To improve nut production and timber quality in a plantation, crown shape controls were suggested for Korean white pines (Pines koraiensis) under age class Ⅲ through the analyses of the crown shape controls for seed orchard trees in several species, of crown status of controlled and uncontrolled trees in a Korean white pine seed orchard, and of growth characteristics of plantation trees under age class Ⅲ. For nut production from the small trees less than 8 m, modified leader type can be applied by cutting the central leader and all branches below 1 m and keeping 4∼5 nodes with 3∼4 whorled branches a node locating 1 m apart. Trees with a 4∼8 m long trunk below the first living branch are shaped into trees for nut and timber production, which have a 4∼8 m long knotless stem and a modified leader type crown with 4∼5 nodes with 3∼4 whorled branches a node at a distance of 1 m. Trees, showing the first living branch at or above 9 m from the surface, are pruned severely for timber production and result in a central leader type containing two fifths of the initial crown. It is advisable to remove the leader and the branches when collecting cones or after/during October to take advantage of easy labor and little resin while cutting. After stem cut, branches showing apical dominance are to be cut to control height when necessary. The removal of the uppermost node may be needed to control the crown shape several years after the initial stem-cut.

      • KCI등재

        굴참나무 천연집단의 엽형 변이

        문흥규,한상억,박문한,이재선,송정호 한국임학회 2000 한국산림과학회지 Vol.89 No.5

        For the study of morphological variation of Q. variabilis natural population in Korea, 19 populations were selected through the country in considering latitude, longitude, and geographical characters. Thirty trees were randomly selected from each population and 60 mature leaves were sampled from each tree. Four characters (leaf blade length, maximum blade width, petiole length, and vein number) were measured, and their ratios (the ratio of blade length to maximum blade width, the ratio of blade length to petiole length, the ratio of petiole length to vein number, upper ⅓ blade width to maximum blade width, and upper ⅓ blade width to lower ⅓ blade width) were calculated. 1. Analysis of variance for all leaf characters were significantly different among populations and among individuals within population. Contributions of variance among individuals within population in all the characters were higher than those among populations. Therefore, selection of plus trees may be preferable to desirable populations for breeding program of Q. variabilis. 2. Among principal component analysis for leaf characters, primary 2 principal components appeared to be major variables for leaf form of Q. variabilis because of the loading contribution of 80.5%. The first contribution component was petiole length/vein number and petiole length; the second one was upper ⅓ blade width/maximum blade width, upper blade width/lower ⅓ blade width and vein number, respectively. 3. Latitude was positively correlated with blade length/maximum blade width and blade length/ petiole length, but negatively correlated with petiole length/vein number, upper ⅓ blade width/maximum blade width, upper ⅓ blade width/lower ⅓ blade width, petiole length, and vein number. But, for longitude and altitude the former two traits and the later five traits exhibited the negative and positive correlation, respectively. 4. Cluster analysis using complete linkage method for leaf characters showed two groups to Euclidean distance 1.6. They were group I of population 1. 4, 5, and 13 and group II of population 2, 3, 6, 7, 8, 9, 10, 11, 12, 14, 15, 16, 17, 18, and 19. However, group II was divided again to Euclidean distance 1.3, that is a group including population 3, 7, 10, 14, 15, and 17(group II-1) and the other group comprising population 2, 6, 8, 9, 11, 12, 16, 18, and 19(group II-2). This cluster could be mainly observed due to difference among population in aspect (group I : NE, group II-1 : SE, and group II-2 : SW).

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