• 제목/요약/키워드: Stomatal traits

검색결과 29건 처리시간 0.023초

참나무 천연집단(天然集團)의 기공형질변이(氣孔形質變異) (Variation of Stomatal Traits of Natural Population of Quercus spp.)

  • 김지문;권기원;문흥규
    • 한국산림과학회지
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    • 제66권1호
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    • pp.82-94
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    • 1984
  • 집단간(集團間), 집단내(集團內) 개체목간(個體木間)에 보이는 기공밀도(氣孔密度)와 기공(氣孔)길이의 차이(差異)를 밟히기 위하여 그 변이(變異)를 4가지 참나무 수종(樹種)에서 조사(調査)하였다. 전국(全國)에 분포(分布)된 참나무 천연집단(天然集團)에서 신갈나무 9개집단(個集團), 졸참나무, 굴참나무 각각 4개집단(個集團), 상수리나무 3개집단(個集團)을 조사하였다. 집단별(集團別) 20주(株)의 개체목(個體木) 각각(各各)에서 12개(個)의 잎을 채취(採取)하여 collodion replica의 현미경(顯微鏡) 검경(檢鏡)에 의(依)해 각(各) 채취엽(採取葉)에서 기공(氣孔)길이는 20반복(反復), 기공밀도(氣孔密度)는 10반복(反復)을 측정(測定)하였다. 조사(調査)된 모든 수종(樹種)에서 평균(平均) 기공밀도(氣孔密度)는 $600{\sim}1,000/mm^2$, 길이는 $19{\sim}26{\mu}m$에 분포(分布)하고 있었다. 기공밀도(氣孔密度)와 길이는 모든 수종(樹種)에서 집단간(集團間), 집단내(集團內) 개체목간(個體木間)에 1% 또는 5% 수준(水準)에서 통계학적(統計學的)으로 유의적(有意的)인 차이(差異)를 보였다. 신갈나무는 다른 수종(樹種)에 비(比)해서 특히 집단간(集團間)에 심한 차이(差異)를 보였고 굴참나무는 그 반대(反對)였다. 기공밀도(氣孔密度)와 길이의 집단내(集團內) 개체목간(個體木間) 변이계수(變異係數)는 모든 집단(集團)에서 각각(各各) 3.7~12%와 1~5%의 작은 값을 보였다. 신갈나무의 평균기공밀도(平均氣孔密度)는 조사(調査)된 임분(林分)의 생육기(生育期) 일평균온도합계(日平均溫度合計) 및 습도합계(濕度合計)와 중상관계수(重相關係數), $R_{df{\cdot}2.6}=0.868^*$$Y=0.041X_1(G.M.T.S.)+0.489X_2(G.M.H.S.)+22.37$의 중회귀식(重回歸式)을 보이며 통계적(統計的)으로 유의적(有意的)인 상관(相關)을 보였다. 그러나 기공밀도(氣孔密度)의 경우(境遇)와는 달리 평균(平均) 기공(氣孔)길이는 상기(上記) 기후인자(氣候因子)들과 상관(相關)을 보이지 않았다. 엽측정치(葉測定値) 또는 개체목(個體木)의 평균치(平均値)를 단위(單位)로 하는 빈도분포도(頻度分布圖)는 일부 집단(集團)에서 정규분포곡선(正規分布曲線)을 보이지 않았다. 그러나 분산분석(分散分析)의 결과(結果)와 같이 그 곡선(曲線)은 집단간(集團間) 차이(差異)를 정확(正確)하게 나타낼 수 있었다.

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Heat sensitivity on physiological and biochemical traits in chickpea (Cicer arietinum)

  • Jain, Amit Kumar
    • Advances in environmental research
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    • 제3권4호
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    • pp.307-319
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    • 2014
  • Four chickpea cultivars viz. kabuli (Pusa 1088 and Pusa 1053) and desi (Pusa 1103 and Pusa 547) differing in sensitivity to high temperature conditions were analyzed in earthern pot (30 cm) at different stages of growth and development in the year of 2010 and 2011. Pusa-1053 (kabuli type) showed maximum photosynthetic rate and least by Pusa-547 (desi type), whereas maximum cell membrane thermostability were recorded in Pusa-1103 and minimum in Pusa-1088. Among the treatments, the plants grown under elevated temperature conditions had produced 13.01% more significant data in comparison to plants grown under continuous natural conditions. Stomatal conductance were reduced 44.25% under elevated temperature conditions than natural conditions, whereas 35.56%, when plants grown under initially natural conditions upto 30DAS, then 30-60DAS elevated temperature and finally shifted to natural conditions till harvest. In case of Pusa-1103, stomatal conductance was maximum as compared to rest of 2.7% from Pusa-1053, 8.9% from Pusa-1088, and 10.3% in Pusa-547 throughout the study. Plants grown under continuous elevated temperature conditions had produced 15.30% and 15.32% more significant membrane thermostability index in comparison to continuous natural conditions at vegetative stage and 19.40% and 18.44% at flowering stage, while the better response was recorded at pod formation stage. Pusa-1053 had given 2.8% more membrane thermostability index than Pusa-1088 and Pusa-1103 had given 1.6% more membrane thermostability index than Pusa-547 in the present study. The membrane disruption caused by high temperature may alter water ion and inorganic solutes movement, photosynthesis and respiration. Thus, thermostability of the cell membrane depends on the degree of the electrolyte leakage.

Elucidation of the physiological basis related to high photosynthetic capacity of soybean local variety, 'Peking'.

  • Sakoda, Kazuma;Suzuki, Seita;Tanaka, Yu;Shiraiwa, Tatsuhiko
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.239-239
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    • 2017
  • The enhancement of leaf photosynthetic capacity can have the potential to improve the seed yield of soybean. Key targets for the increase of leaf photosynthetic capacity remains unclear in soybean. Peking, Chinese local variety, has been the useful material for soybean breeding since it shows various resistances against biotic and abiotic stress. Sakoda et al., 2017 reported that Peking had the higher capacity of leaf photosynthesis than Enrei, Japanese elite cultivar. They identified the genetic factors related to high photosynthetic capacity of Peking. The objective of this study is to elucidate the physiological basis underlying high photosynthetic capacity of Peking. Peking and Enrei were cultivated at the experimental field of the Graduate School of Agriculture, Kyoto University, Kyoto, Japan. The sowing date was July 4, 2016. Gas exchange parameters were evaluated at the uppermost fully expanded leaves on 43, 49, and 59 days after planting (DAP) with a portable gas exchange system, LI-6400. The leaf hydraulic conductance, $K_{leaf}$, was determined based on the water potential and transpiration rate of the uppermost fully expanded leaves on 60 DAP. The morphological traits related to leaf photosynthesis were analyzed at the same leaves with the gas exchange measurements. The light-saturated $CO_2$ assimilation rate ($A_{sat}$) of Peking was significantly higher than that of Enrei at 43 and 59 DAP while the stomatal conductance ($g_s$) of Peking was significantly higher at all the measurements (p < 0.05). It suggested that high $A_{sat}$ was mainly attributed to high $g_s$ in Peking. $g_s$ is reported to be affected by the morphological traits and water status inside the leaf, represented by $K_{leaf}$, in crop plants. The tendency of the variation of the stomatal density between two cultivars was not consistent throughout the measurements. On the other hand, $K_{leaf}$ of Peking was 59.0% higher than that of Enrei on 60 DAP. These results imply that high $g_s$ might be attributed to high $K_{leaf}$ in Peking. Further research is needed to reveal the mechanism to archive high $g_s$ on the basis of water physiology in Peking. The knowledge combining the genetic and physiological basis underlying high photosynthetic capacity of Peking can be useful to improve the biomass productivity of soybean.

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Regeneration and leaf traits variation of Rhododendron campanulatum along elevation gradient in western Nepal Himalaya

  • Dipesh Karki;Bijay Pandeya;Rachana Bhandari;Dikshya Basnet;Balkrishna Ghimire;Shreehari Bhattarai;Bharat Babu Shrestha
    • Journal of Ecology and Environment
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    • 제48권2호
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    • pp.152-162
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    • 2024
  • Background: Plant species of the alpine treeline ecotone are highly sensitive to climate change and may adjust their population dynamics, and functional traits in response to changing climate. This study examined regeneration patterns and leaf traits variations in an important treeline ecotone element Rhododendron campanulatum along the elevation gradient in western Nepal to assess its potential adaptive responses to climate change. The distribution range of R. campanulatum (3,400-3,800 m above sea level [a.s.l.]) was divided into five horizontal bands, each with a 100 m elevational range. Eight plots (10 m × 10 m) were sampled in each band, resulting into a total of 40 plots. In each plot, all R. campanulatum individuals and co-occurring tree species were counted. From each elevation, R. campanulatum leaf samples were collected to determine leaf dimensions, leaf density, specific leaf area (SLA), and stomatal density (SD). Results: The density-diameter curve indicated that R. campanulatum was regenerating well, with enhanced regeneration at higher elevation (3,800 m a.s.l.) than at lower. Tree canopy cover appeared to be the major determinant of R. campanulatum regeneration, as indicated by a higher number of seedlings in treeless stands. With increasing elevation, the leaf length, width, SLA, and stomata length decreased but leaf thickness and SD increased. Conclusions: Overall, a higher regeneration and lower SLA with the high SD in the leaves at the upper limit of the species distribution suggested that R. campanulatum is well adapted at its upper distribution range with the possibility of upslope range shift as temperature increases.

Studies on the changes in phenological, growth and physiological responses of Silene capitata Kom., an endangered plant in Korea, under climate change treatment

  • Park, Jae-Hoon;Han, Young-Sub;Lee, Eung-Pil;Lee, Seung-Yeon;Jeong, Heon-Mo;You, Young-Han
    • Journal of Ecology and Environment
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    • 제43권3호
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    • pp.305-313
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    • 2019
  • Background: This research aims to study the effect of climate change on the phenology, growth, and physiological traits of Silene capitata Kom., a Korean endangered species II. This study increased $CO_2$ concentration in a closed glass greenhouse, with the daily mean temperature and $CO_2$ concentration respectively being $4.61^{\circ}C$ and 93.63 ppm higher than the outside temperature (ambient conditions, control). The seeds of S. capitata were sown in control and treatment environments in March 2013 while seedlings were transplanted into individual pots in May 2013. To research phenological changes, the first day of the flowering and ripening of the plants transplanted in 2013 and first day of leafing in 2014 were observed. The growth and physiological responses of mature leaves were also studied in 2013. Results: There was no difference in the first day of flowering, but the first day of ripening was earlier in the treatment group than the control group. There was no difference in the number of rosette leaves between the two groups, but leaf area was wider in the treatment group than the control group. Transpiration rate and stomatal conductance were higher in the treatment group than the control group, chlorophyll content decreased, and photosynthetic rate and water use efficiency were the same for both groups. As a result of simple regression analysis among the transpiration rate, stomatal conductance, photosynthetic rate, and water use efficiency, stomatal conductance increased when transpiration rate increased. Stomatal conductance increased with photosynthetic rate in the control unlike in the treatment group. The photosynthetic rate and water use efficiency increased with transpiration rate in the control group unlike in the treatment group. Furthermore, water use efficiency increased as photosynthetic rate increased in both groups. Conclusion: Due to high $CO_2$ concentration, the photosynthetic rate was no longer controlled by the stomata, which appeared to suppress the excessive production of photosynthetic products by reducing chlorophyll content. It is believed that the phenological responses of S. capitata under climate change conditions will advance and that stable growth will be difficult in regions lacking moisture due to the high transpiration rate.

Colchicine 처리에 의해 유기된 4배체 하수오의 형태 및 세포유전학적 특성 (Morphological and Cytogenetic Analysis of Colchicine-induced Tetraploids of Fallopia multiflolra Haraldson)

  • 김기현;윤철구;김인재;이경자;김영호;홍성택;우선희
    • 한국약용작물학회지
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    • 제26권5호
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    • pp.362-369
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    • 2018
  • Background: For stable induction of tetraploidy in Fallopia multiflora Haraldson, colchicine was treated to establish the condition of induction and investigated the morphological and cytogenetic traits of the tetraploid plants obtained compared to those of diploid ones. Methods and Results: For the induction of tetraploidy, F. multiflora plants were soaked in aqueous solutions of colchicine at various concentration (0.1, 0.5, and 1.0%). After this, 2% dimethyl sulfoxide (DMSO) was added at room temperature on a shaker set at 150 rpm for periods of 12, 24, and 48 h. The induction rate of tetraploids appeared to be the highest in plants treated with 0.5% colchicine for 24 h. As the colchicine concentration and soaking time increased above these levels, the growing tip of the roots did not develop and they began to rot. When compared to diploid plants, tetraploids differed greatly in various characteristics, including the sizes and shapes of the leaves, fruits, flowers and roots. The induced tetraploid F. multiflora had larger guard cells, and chloroplasts, increased number of chloroplast in the guard cells and decreased stomatal densities. Conclusions: When colchicine induced plants for tetraploid, it can be distinguished from diploids, in various characteristics such as morphological changes as stomatal size, number of chloroplasts per guard cell, number of chromosomes and flow cytometry. Therefore, it proved that these methods are suitable, quick and easy methods for the identification of the ploidy level of F. multiflora.

한발저항성 정도가 다른 보리 품종들의 한발처리에 따른 생리적 특성변화 (Changes in Physiological Characteristics of Barley Genotypes under Drought Stress)

  • 이변우;부금동;백남천;김정곤
    • 한국작물학회지
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    • 제48권6호
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    • pp.506-515
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    • 2003
  • 이 논문은 한발저항성이 다른 6개 보리 품종의 한발에 따른 생장, 잎의 수분포텐셜(leaf water potential, LWP), 상대함수량(leaf relative water content, RWC), 삼투압(leaf osmotic potential, OP), 삼투조정(osmotic adjustment, OA), 팽압(leaf turgor pressure, LTP), 순광합섬, 기공전도도, 엽육전도도, 엽록소형광 등의 변화를 조사하여 비교한 결과를 요약하면 다음과 같다. 1 한발 처리시 토양수분포텐셜은 -0.05㎫이었고. 종료시에는 -0.29㎫로 저하하였다. Dicktoo-S 동보리 1호, Dicktoo-L, Dicktoo-T, 수원쌀보리 365호, 탑골보리 품종의 한발처리구 건물중은 각각 대조구(처리기간종 -0.05㎫ 유지)에 비하여 68%, 69%, 70%, 86%, 55%, 37%를 나타내어 Dicktoo 계통과 동보리1호의 한발저항성이 강하였고, 수원쌀보리 365호와 탑골보리는 한발저항성이 약하였다. 2. 한발저항성이 강한 품종은 삼투조정능력이 커서 한발처리에 따른 RWC와 LWP의 저하가 작았고 팽압유지능력이 컸다. 3. 한발처리에 따라 순광합성이 저하하였고 그 저하정도는 한발저항성이 큰 품종이 작았는데, 이는 한발저항성이 큰 품종이 기공전도도, 엽육전도도 및 PSII 최대양자수율(Fv/Fm)의 저하가 적었기 때문이었다. 4. 결론적으로 저항성이 큰 품종은 삼투조정에 의한 수분유지능력이 크고 이에 따라 광합성저하가 적어 상대적으로 생장의 감소가 적은 것으로 판단되었다.

염화칼슘 처리가 산딸나무 잎의 광합성 기구, 기공전도도 및 형광이미지 특성에 미치는 영향 (Effect of Calcium Chloride (CaCl2) on the Characteristics of Photosynthetic Apparatus, Stomatal Conductance, and Fluorescence Image of the Leaves of Cornus kousa)

  • 성주한;제선미;김선희;김영걸
    • 한국농림기상학회지
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    • 제11권4호
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    • pp.143-150
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    • 2009
  • 겨울철 도로의 안전을 위해서 사용되고 있는 제설제가 가로변의 식생에 축적이 되면 식물에 피해를 가져올 수 있는데, 특히 이른 봄의 제설제 사용은 식물이 다량의 수분을 요구하게 되는 개엽 시기와 맞물리게 되면서 그 피해가 가속화 될 수 있다. 우리나라에서 주로 사용하고 있는 제설제인 $CaCl_2$ 으로 산딸나무(C.kousa) 3년생 유묘를 대상으로 개엽 전 대조구를 포함해 각 처리구당 3본씩 선정하여 배치하고 각각 $CaCl_2$ 0.5%, 1.0%, 3.0% 를 2회 근권부에 처리하였다. 먼저, 가시적 피해 현상으로 잎눈에서 개엽이 어려워지며, 잎의 전개 후에도 시들음 현상과 잎끝마름 현상 등이 나타났다. $CaCl_2$ 의 농도가 높아짐에 따라 산딸나무의 피해가 가중되었는데, $CaCl_2$ 처리에 따른 생리적 반응은 총엽록소함량, 엽록소 a:b, 광합성속도, 양자수율, 기공전도도, $F_V/F_M$, NPQ의 감소를 가져왔다. 반면 광보상점과 암호흡속도의 증가를 나타냈다. 기공의 닫힘으로 인한 엽육내 $CO_2$ 농도 저하와 이로 인한 광합성속도의 감소가 1차적으로 일어나고 이후 물질대사량의 감소, 광화학계의 피해가 동반되는 것을 알 수 있었다. 모든 $CaCl_2$ 처리농도에서 산딸나무의 생리적 활동이 급격히 저하되는 경향으로 볼 때 $CaCl_2$ 에 민감한 수종으로 판단된다.

실외 온난화 처리에 따른 낙엽송 묘목의 생리 및 생장 반응 (Effect of Experimental Warming on Physiological and Growth Responses of Larix kaempferi Seedlings)

  • 안지애;장한나;박민지;한승현;황재홍;조민석;손요환
    • 한국기후변화학회지
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    • 제7권1호
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    • pp.77-84
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    • 2016
  • Seedling stage is particularly important for tree survival and is easily influenced by warming. Therefore, air temperature being increased due to climate change may affect physiological traits and growth of seedlings. This study was conducted to investigate the physiological and growth responses of Larix kaempferi seedlings to open-field experimental warming. 1-year-old and 2-year-old L. kaempferi seedlings were warmed with infrared lamps since April 2015 and April 2014, respectively. The seedlings in the warmed plots were warmed to maintain the air temperature to be $3^{\circ}C$ higher than that of the control plots. Physiological responses (stomatal conductance, transpiration rate, net photosynthetic rate and total chlorophyll content) and growth responses (root collar diameter (RCD), height and biomass) to experimental warming were measured. Physiological and growth responses varied with the seedling ages. For 2-year-old L. kaempferi seedlings, stomatal conductance, transpiration rate and net photosynthetic rate decreased following the warming treatment, whereas there were no changes for 1-year-old L. kaempferi seedlings. Meanwhile, total chlorophyll content was higher in warmed plots regardless of the seedling ages. Net photosynthetic rate linked with stomatal conductance also decreased due to the drought stress and decrease of photosynthetic efficiency. In response to warming, RCD, height and biomass did not show significant differences between the treatments. It seems that the growth responses were not affected as much as physiological responses were, since the physiological responses were not consistent, nor the warming treatment period was enough to have significant results. In addition, multifactorial experiments considering the impact of decreased soil moisture resulting from elevated temperatures is needed to explicate the impacts of a wide range of possible climate change scenarios.

Studies on Cytological Characteristics of Elymus humidus as Genetic Resources Compared to Common Wheat (Triticum aestivum L.)

  • Ji-Yoon Han;Seong-Wook Kang;Sejin Oh;Yumi Lee;Myoung-Jae Shin;Sukyeung Lee;Seong-Woo Cho
    • 한국작물학회지
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    • 제68권3호
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    • pp.216-223
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    • 2023
  • This study aimed to identify and compare the characteristics of Elymus humidus on common wheat (Triticum aestivum L. cv. Chinse Spring, CS). The seed length, width, height, and weight of E. humidus were smaller than those of the CS. In particular, the germination rate of E. humidus was substantially lower than that of CS. In the anatomical dissection of the leaf, E. humidus showed a considerably different xylem diameter of the main vascular bundle in the main vein; however, there was no difference in the phloem of the main vascular bundle compared with the xylem and phloem of the main vascular bundle in the main vein of CS, although E. humidus showed a leaf structure similar to that of CS. In addition, E. humidus had a thinner epidermis than that of CS. Regarding stomatal traits, E. humidus showed a graminoid stomata type similar to that of CS. On the adaxial and abaxial sides, the density, length, and width of the stomata in E. humidus were smaller than those in CS, whereas the distance between stomata in E. humidus was greater than that in CS. The chromosomes of E. humidus were classified as long and short based on their respective lengths. Long chromosomes were classified based on the ratio of the long arm to the short arm e.g., 1:1 or 2:1. Short chromosomes showed the same trend and some short chromosomes were microsatellites. To evaluate genetic diversity, 38 barley EST markers with polymorphisms between E. humidus and CS were selected from 236 barley EST markers.