• Title/Summary/Keyword: 엽특성

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The Leaf Morphological Variation of Ten Regions of Natural Populations of Machilus thunbergii in Korea (후박나무 10개 천연집단의 엽형질 변이)

  • Yang, Byeong-Hoon;Song, Jeong-Ho;Lee, Jae-Cheon;Park, Young-Goo
    • Journal of agriculture & life science
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    • v.45 no.3
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    • pp.25-33
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    • 2011
  • This study was conducted to examine genetic variation on leaf characteristics of Machilus thunbergii populations. Ten populations were subjected to multivariate analysis for 9 characteristics of leaf morphology. Average length of leaf blade, leaf width, petiole length, vein number were 9.8cm, 4.0cm, 1.8cm, 8.4 respectively, while angle of leaf base and leaf apex were $67.9^{\circ}$ and $78^{\circ}$ respectively. The coefficient of variation (C.V.) on leaf characteristics was 20% which indicate similar features among the populations. Nested analysis showed statistically signigicant differences among populations as well as among individuals within populations. Genetic relationship between populations using complete linkage method showed four groups to Euclidean distance 1.2 and did not show a tendency to cluster into the same group. There were three principal components that had a meaningful eigenvalue over 1.0 among the 9 components. The explanatory power of the top three main components on the total variation was 92.8%. The first principal component (PC) was explained about 40.3% which is mainly correlated with maximum leaf width and the second PC was explained about 28.7% which is correlated with leaf blade length. The third PC was explained about 23.8% which is correlated with petiole length ($X_3$). These characters were important factors for analysis of the relationship among natural populations of M. thunbergii.

Leaf Characteristics and Growth Performance in Progenies of Hovenia dulcis var. koreana Nakai (헛개나무 선발개체 차대의 생장 및 엽특성)

  • Kim, Sea-Hyun;Chung, Hun-Gwan;Jang, Yong-Seok;Han, Jin-Gyu
    • Korean Journal of Plant Resources
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    • v.20 no.1
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    • pp.7-11
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    • 2007
  • This study was conducted by estimate of leaf characteristics and growth performance among selected 20 families progenies of Hovenia dulcis var. koreana Nakai. Mean seedling height and root-collar diameter in whole progenies showed 61.6cm, 6.98mm, respectively. Mean seedling height of KW 2-5 family was 79.3cm and it was higher than that of other families. JN 2-2 family had highest value, 9.16mm, in mean of root-collar diameter. Growth performances of KW 2-5 and JN 2-2 families showed 57% (in seedling height), 53% (in root-collar diameter) superior to those of lowest marked families. The selection level based on growth performances, which are seedling height over 75.0cm and root-collar diameter over 8.0mm, were applied on whole families, and two families selected (KW 2-5, JN 2-2). The selection effects from selected families was evaluated as 125% compared to the mean of whole families. The coefficient of variation (C.V) appeared wide range, $9.4{\sim}42.4%$, in estimated leaf characteristics. Particularly, C.V of petiole length (PL) and petiole diameter (PD) showed 42.4% and 28.7%, respectively. Their were higher value than other leaf characteristics. Analysis of variance for all leaf characteristics were significantly different among families. Also, there had positive correlation between most leaf characteristics except the correlation between leaf length (LL) and leaf morphological index (LMI, LW/LL). Particularly, the correlation between leaf length and leaf width (LW) showed the highest correlation.

Influence of Nitrogen Level and Planting Density on the Leaf Characteristics of Rice(Oryza sativa L.) Cultivars (질소비료수준과 재식밀도가 벼 품종의 엽형질에 미치는 영향)

  • 이현도;빈영호
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.33 no.4
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    • pp.329-335
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    • 1988
  • [n order to find out the effects of nitrogen fertilizer and planting density on the leaf characteristics of high yielding cultivars of rice, Dongjin (Japonica type) and Samkang (Tongil type) were .grown under two nitrogen levels (150 and 250 kg N/ha) and three planting densities (30 ${\times}$ 15 cm, 30 ${\times}$ 12 cm, 30 ${\times}$ 9 cm. Leaf blade, sheath and dry weight of individual leaf. the number of green leaves after flowering were measured. Samkang was characterized as longer and wider leaf blade and sheath than Dongjin, less sensitive to nitrogen fertilizer and planting density, and higher proportions of green leaves after flowering. These morphological characteristics of Samkang caused an increase of grain yield by 30 per cent.

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Characteristics in wilting and transpiration of Panax ginseng leaves (인삼(人蔘)잎의 위조(萎凋)와 증산특성(蒸散特性))

  • Park, Hoon;Yoon, Tai-Heon;Bae, Hyo-Won
    • Korean Journal of Soil Science and Fertilizer
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    • v.12 no.2
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    • pp.77-82
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    • 1979
  • Wilting and transpiration charactistics of Panax ginseng leaves were investigated at two temperature levels. Water potential and water absorption characteristics of leaf segments were also observed. Soybean leaves were compared. 1. Ginseng leaves were thiner, higher in water content and lower in dehydration rate. But time required to reach permanent wilting point (pwp) was less than half of that of soybean leaves because water content at pwp was about two times higher (80% of initial water for ginseng and 50% for soybean leaves). The time was shorter under high air temperature. 2. Transpiration rate was about a quater of soybean leaves and lower at $33^{\circ}C$ than $23^{\circ}C$, indicating that ginseng leaves are less tolorant to high air temperature. 3. Ginseng leaf segment showed smaller water free space but greater water deficit and little difference in was absorption rate. 4. Water potential of leaves measured by liquid immersion method was lower than that of soybean leaves. 5. Above results strongly suggest that ginseng plants are more susceptible to water stress. Thus greater light intensity during leaf growing stage (April to June) is recommendable to increase stomate frequency resulting greater transpiration rate and high temperature tolerance during July and August. Abundant water around roots seems to be beneficial as long as oxygen is not limited in rhizosphere.

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Photosynthesis and Leaf Anatomical Morphology on Different Leaf Shape of Soybean (엽형에 따른 콩 품종의 광합성 능력과 잎의 해부형태 비교)

  • Moon-Hee Lee
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.48 no.3
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    • pp.248-251
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    • 2003
  • To find ideal leaf types for soybean breeding program, we examined the relationships among leaf anatomical and morphological characteristics and $\textrm{CO}_2$ assimilation on the different leaflet shape of soybean (Glycine max). In anatomical characters of leaf, palisade and spongy cells were thicker in both small seed cultivars with narrow leaflet and large seed cultivars with wide leaflet than others. $\textrm{CO}_2$ uptake per plant and leaf thickness were significantly associated with seed yield per plant, showing difference among the soybean cultivars. Although the leaf area was lower for narrow leaflet cultivars, which had a significantly higher photosynthetic rate per plant comparable to the wide leaflet cultivars.

A Study on the Morphological Characteristics of Leaves and Fruit of Cudrania tricuspidata in Korea (국내 자생 꾸지뽕나무 잎과 열매의 형태적 특성에 관한 연구)

  • Kwon, Yong-Seok;Park, Bo-Ram;Lee, Sol;Yu2, Han-Chun;Baek, So-Jin;Oh, Chan-Jin
    • Korean Journal of Plant Resources
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    • v.27 no.4
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    • pp.337-343
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    • 2014
  • This study was conducted to classify the variation in leaf and fruit morphology among natural grown 16 Cudrania tricuspidata stands. As results of the analysis in C. tricuspidata stands total 134 Species were found and as results of the analysis in leaf morphology, it was grouped as Group IV. By the analysis of variance in length, width, and weight of fruits were differed in 15 C. tricuspidata stands. The length, width, and weight of fruits were higher in Jinan and Sunchang, than Gochang, Gimje, and Goheung. By the cluster analysis of 3 fruit morphology were classified as 3 Groups. According to the results of this study C. tricuspidata leaves and fruit morphological characteristics for each group were compared by analysis there were differences between the morphological characteristics and the characteristics of the fruit did not match.

Leaf Type Characteristics of Prunus mume (201 Trees) in Korea (매실나무 201점의 엽형 특성)

  • Hee Kyoung Kang;Jin Hyuk Kim;Ja Yeon Yi;Eun Su Ju;Min Kyung Choi;In Cheol Baek;Tae Hyun Ha;Hong Seon Song
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2020.08a
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    • pp.29-29
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    • 2020
  • 본 연구는 현재 공주대학교 포장에 보존되어 있는 식용, 약용, 관상용 등의 매실나무 유전자원에 대한 외부 형태적 특성평가를 통하여 향후 우수한 종자원 확보와 양묘생산의 토대 및 육종을 위한 소재로 활용할 수 있는 기초 정보를 제공하기 위하여 실시하였다. 매실나무의 엽형은 난형에 가까웠는데, 엽장은 평균 76.9±9.7mm (최소 52.0mm, 최대 102.0mm)이었으며, 엽폭은 평균 41.9±6.4mm (최소 27.0mm, 최대 60.0mm)이었고, 엽병장은 평균 9.5±2.6mm (최소 4.0mm, 최대 24.0mm)이었다. 이들 형질의 변이계수는 엽병장이 27.7%로서 가장 높아 엽장과 엽폭에 비해 진폭이 컸으며, 다음으로 엽폭 (15.3%), 엽장 (12.6%) 순이었다. 매실나무 엽장은 71~80mm에서 가장 높은 비율 (50.3%)을 나타내었으며, 다음으로 81~90mm (21.9%), 61~70mm (12.4%), 91mm 이상 (8.0%), 60mm 이하 (7.4%) 순이었다. 엽폭은 41~50mm에서 가장 높은 비율 (45.8%)을 나타내었으며, 다음으로 31~40mm (41.8%), 51mm 이상 (7.4%), 30mm 이하 (5.0%) 순이었다. 엽병장은 6~10mm에서 가장 높은 비율 (72.6%)을 나타내었으며, 다음으로 11~15mm (22.4%), 16mm 이상 (3.0%), 5mm 이하 (2.0%) 순이었다. 엽형 형질 간의 상관계수는 모두가 0.2 이하로 상관관계가 약하였으나 표본수가 많아 유의한 값을 나타내었으며, 엽장과 엽폭이 0.242로 가장 높았고, 다음으로 엽장과 엽병장 (0.173), 엽폭과 엽병장 (0.001) 순이었다.

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Morphological Characters of Superior Populus alba × Populus glandulosa F1 Clones under Intensive Culture (밀식재배(密植栽培)한 제일대(第一代) 잡종(雜種)포플러, Populus alba × Populus glandulosa F1 우량(優良)클론의 형태학적(形態學的) 형질(形質)에 관한 연구(硏究))

  • Lee, Kyeong Hack;Lee, Don Koo
    • Journal of Korean Society of Forest Science
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    • v.64 no.1
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    • pp.1-10
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    • 1984
  • Two fast-growing clones 65-29-19 and 66-6-8 and two less fast-growing clones 66-14-29 and 66-14-99 were compared at intensively cultured plots to identify what morphological characters are related to fast growth and high biomass yield of Populus alba ${\times}$ Populus glandulosa $F_1$. The plantations were established in the spring of 1982 and 1983 at the Seoul National University nursery in Suweon. Differences in dry matter production were found among two-year-old clones but not, among one-year-old clones. Highly significant correlations were found between total leaf area per tree and total dry weight per tree and between total branch length per tree and total dry weight per tree for two-year-old clones. This relation was more obvious during the late growing season. Morphological characters desirable for producing high biomass identified in fast-growing clones were as follows; high shoot-root ratio, high leaf surface area per tree, long leaf retention period, and many small leaves and compact crown architecture in the upper portion of true crown.

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