• 제목/요약/키워드: Chlorophyll Content

검색결과 1,197건 처리시간 0.027초

Salicylic acid가 닭의장풀의 광합성에 미치는 영향 (The Effect of Salicylic Acid (SA) on the Photosynthetic Activity in Commelina communis L.)

  • 이준상
    • 환경생물
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    • 제17권3호
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    • pp.359-364
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    • 1999
  • 살리실릭산(SA)이 닭의장풀의 잎의 생장, 엽록소 함량, 광합성능, 기공전도도에 미치는 영향을 조사하였다. Hoagland 용액에 SA를 처리한 후 3주 동안 배양한 닭의장풀은 잎의 길이, 너비, 면적이 크게 감소하였다. 1 mM SA를 1, 2주 처리 시에 엽면적 생장이 약 10%억제되었으며, 3주 째에는 22%억제하였다. SA는 또한 2주 째는 47%그리고 3주 째는 53%엽록소 함량을 감소시켰다. SA를 처리한 샘플의 엽록소 a/b는 3주 째에 약 3으로 크게 증가하였다. SA를 분리 엽록체에 직접 처리하여 전자전달활성을 직접 측정하였다. PSII+PSI, PSII 그리고 PSI활성에 SA가 영향을 주지 않았다. 이는 SA가 직접 광합성 기작에는 영향을 주지 않는 다는 것을 나타낸다. 그러나, SA를 오랜 기간 처리하면 광합성의 감소는 매우 뚜렷하게 관찰되었다. Hoagland 용액에 SA를 처리한 후 3주 동안 배양한 닭의장풀에 다양한 빛 광도(100~1000$\mu$mo1 m­$^2$$^1$)를 조사하면 약 23~65%의 광합성능의 저하가 나타났다. 기공전도도가 유사한 반응을 보여주었다. SA처리구의 기공은 거의 닫혔다. 여러 광조건에서 기공전도도가 같다는 것은 SA가 기공의 조절 기능을 상실하게 한 것으로 보여진다. 이들 결과들로부터 광합성능에 대한 SA의 효과는 SA자체에 의한 것이 아니라 간접적인 대사 경로를 통해 매개되는 것으로 추측된다.

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Hosta 품종의 절엽 수명에 관한 연구 (Studies on the Leaf Vase Life of Hosta Cultivars)

  • 홍훈기;이종석
    • 생물환경조절학회지
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    • 제19권4호
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    • pp.223-228
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    • 2010
  • Hosta 품종 중에서 관상가치가 있는 21종을 선정하여 절엽 소재로 개발하고자 2009년 7월 1일부터 8월 15일까지 광도 750Lux, 온도 $28{\pm}2^{\circ}C$, 습도 52% 의 실내 환경 조건에서 수명을 조사하였다. H. 'June'의 절엽 수명이 29일로 가장 길었으며 10일 이상 수명을 유지한 품종은 'Remember Me', H. lancifolia var. grandiflora, 'Grand Marquee', 'Dress Blue', 'Blue Dimples', 'Frosted Dimples' 'Birchwood Park's Gold', 'Krossa Regal', 'Paradise Power'였다. 이 10가지 품종의 특정은 엽록소 함량이 높고, 경과시간에 따른 엽록소 함량의 변화가 적었으며, 물 흡수력이 높았다. 또한 처리 후 일정기간 엽록소 함량이 증가하였으며, 다른 Hosta, 속 품종에 비해 수명이 길어 화훼장 식용 절엽으로 개발이 가능한 품종으로 선발되었다.

AgNO3 처리(處理)가 개나리의 SO2 가스 피해(被害) 경감(輕減)에 미치는 영향(影響) (Effect of AgNO3 Pretreatment on Reducing SO2 Injury in Forsythia koreana Nakai)

  • 구자형
    • 농업과학연구
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    • 제9권2호
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    • pp.453-460
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    • 1982
  • 개나리에 있어서 $AgNO_3$ 용액살포(溶液撒布)가 $SO_2$가스의 피해경감(被害輕減)에 미친는 효과(效果)를 시험(試驗)하였던 바 다음과 같은 결과(結果)를 얻었다. 1. $AgNO_3$ 용액(溶液)은 살포농도(撒布濃度)가 200 ppm 이상으로 되면 잎의 뒷면에 미세(微細)한 흑색반점(黑色斑點)을 발생(發生)시켰으며 100ppm으로 처리(處理)되었을 때 $SO_2$가스 피해(被害)로 일어나는 낙엽현상(落葉現狀)과 가시피해(可視被害)를 현저(顯著)히 경감(輕減)시켰다. 2. $AgNO_3$ 용액살포(溶液撒布)는 $SO_2$가스 피해(被害)로 발생(發生)되는 pH의 저하(低下)와 chlorophyll 함량(含量)의 감소현상(減少現狀)을 억제(抑制)시켰으며, peroxidase의 활성(活性)을 증가(增加)시켰다. 3. $AgNO_3$ 용액(溶液)의 살포(撒布)는 $SO_2$가스의 흡수(吸收)와 기공(氣孔)의 개폐(開閉)에 영향(影響)을 미치지 않았다.

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배양 조건에 따른 Spirulina piatensis의 성장 및 phycocyanin 함량 변화 (Content of Phycocyanins and Growth of Spirulina platensis with Culture Conditions)

  • 주동식;정충국;이창호;조순영
    • 한국수산과학회지
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    • 제33권5호
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    • pp.475-481
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    • 2000
  • 미세조류 S. platensis의 성장 및 색소 축적에 대한 배양 조건의 영향을 실험한 결과, 배양 온도 및 빛 강도는 각각 $35^{\circ}C,\;3500 lux$가 가장 적절한 배양 조건이었으며, 온도가 다소 낮은 $30^{\circ}C$ 조건에서는 빛 강도가 3500 lux보다 다소 높은 조건도 고려해볼만 하였다. 빛 강도 및 온도 조건에서의 phycocyanin 색소 함량은 조류의 성장 정도와 직접적인 상관을 나타내었으며, chlorophyll-a 함량과는 특별한 상관성을 가지지 않았다. 배지 중의 $NaHCO_3$ 첨가 농도는 $1.0{\%}$가 조류의 성장 및 색소 축적에 가장 좋은 조건임을 알 수 있었고, 그 이상의 농도에서는 오히려 phycocyanin 색소 생산능이 저하됨을 알 수 있었다. 탄소원인 $Na_2CO_3$$0.2{\~}0.3{\%}$ 농도 수준에서 가장 높은 조류의 성장과 phycocyanin을 축적하는 것으로 나타났으며, 첨가 농도가 높아져도 phycocyanin 색소 생산능은 증가되지 않았다. 한편, 질소원으로 첨가되는 $NaCO_3$농도도 $0.2{\~}0.3{\%}$ 범위에서 첨가하는 것이 균체의 성장이나 색소 생산에 바람직한 조건으로 확인되었으며, 과도한 첨가는 성장과 phycocyanin 색소 생산능이 낮아지는 것을 확인할 수 있었다. 전체적으로 chlorophyll-a는 phycocyanin 색소 함량이 증가하면 증가하는 상관을 가졌으나 그 함량은 미미하였다.

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Verification on Cold-Tolerance of Some Fruit Trees as Species for Urban Greening Plants

  • Lee, Jin-Hee;Oh, Hee-Young;Kwon, O-Man
    • 한국환경과학회지
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    • 제26권10호
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    • pp.1155-1166
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    • 2017
  • This study selected commonly known species of fruit trees, and re-selected the species that endure the stress of extreme cold weather and physiologically restore themselves to the previous state until the following year. Then we could go ahead to propose the species that were appropriate as urban greening plants in weather condition of any part of the country. To do this, we conducted an experiments for six species of fruit trees based on the preference of the general public and recommendation of the experts; Morus alba (English name: mulberries), Diospyros kaki (English name: Persimmon), Prunus persia (English name: Peach), Elaeagnus umbellata var. coreana (English name: Korean Autumn Olive), Malus domestica 'Alps Otome' (English name: Alps Otome), and Prunus mume (English name: Blue Plum). The experiment verifies whether the trees survive without any stress from the cold weather under the national climate conditions (one in the suburbs of Seoul: Yongin city, one in the central Chungcheong region: Daejeon city, and in the southern Gyeongsang region: Jinju city in Korea). The experiment lasted for a year from August 2016 to August 2017. The levels of electrolytic efflux, chlorophyll content, plant height, fresh weight, and dry weight were measured four times (on August of 2016, January, February, and August of 2017) for each tree planted bare ground outdoors. Results showed that Diospyros kaki, Prunus persia, and Malus domestica 'Alps Otome' were proven durable and resistant to winters of all three areas (one in the suburbs of Seoul: Yongin city, one in the central Chungcheong region: Daejeon city, and in the southern Gyeongsang region: Jinju city in Korea). Especially, the increase of chlorophyll content and the reduction of electrolytic efflux were noticeable in Prunus persia than in the other two species, proving itself as the most cold-tolerant among the six species used in the experiment. In addition, interpreting from the physiological restoration data of one-year span before and after getting through winterer, Prunus persia was proven to be the most cold-tolerant species.

Influence of Benomyl on Photosynthetic Capacity in Soybean Leaves

  • Roh, Kwang-Soo;Oh, Mi-Jung;Song, Seung-Dal;Chung, Hwa-Sook;Song, Jong-Suk
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제6권2호
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    • pp.100-106
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    • 2001
  • This investigation was performed to study the influence of benomyl on photosynthetic pigments and enzymes in soybean leaves. Chlorophyll and pheophytin levels were reduced by benomyl 45 days after greening. These results indicate that chlorophyll a and b, and pheophytin must be controlled by benomyl. SDS-PAGE analysis showed that 50 and 14.5 kD polypeptides represented as large and small subunits of rubisco. In the both of these subunits, the band intensity of the control was significantly higher than that after benomyl treatment, indicating that these two subunits are affected by benomyl. Benomyl strongly inhibited both the activity and content of rubisco as its concentration was gradually increased. However, it remains unclear whether this reduction of rubisco level was due to a reduced level of rubisco activase. Two major polypeptides of 46 and 42 kD were identified as rubisco activase subunits by SDS-PAGE. The intensity of these two bands was shown to be higher in the control than after benomyl treatment. These results indicate that the rubisco decrease resulting from increased benomyl concentrations was caused by rubisco activase. A significant decrease in both the activity and content of rubisco activase by benomyl was also observed. There results suggest that the decrease in rubisco level caused by benomyl is accompanied by a decrease in both the activity and content of rubisco activase.

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Effects of elevated CO2 concentration and increased temperature on leaf quality responses of rare and endangered plants

  • Jeong, Heon-Mo;Kim, Hae-Ran;Hong, Seungbum;You, Young-Han
    • Journal of Ecology and Environment
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    • 제42권1호
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    • pp.1-11
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    • 2018
  • Background: In the study, the effects of elevated $CO_2$ and temperature on the nitrogen content, carbon content, and C:N ratio of seven rare and endangered species (Quercus gilva, Hibiscus hambo, Paliurus ramosissimus, Cicuta virosa, Bupleurum latissimum, Viola raddeana, and Iris dichotoma) were examined under control (ambient $CO_2$ + ambient temperature) and treatment (elevated $CO_2$ + elevated temperature) for 3 years (May 2008 and June 2011). Results: Elevated $CO_2$ concentration and temperature result in a decline in leaf nitrogen content for three woody species in May 2009 and June 2011, while four herb species showed different responses to each other. The nitrogen content of B. latissimum and I. dichotoma decreased under treatment in either 2009 and 2011. The leaf nitrogen content of C. virosa and V. raddeana was not significantly affected by elevated $CO_2$ and temperature in 2009, but that of C. virosa increased and that V. raddeana decreased under the treatment in 2011. In 2009, it was found that there was no difference in carbon content in the leaves of the six species except for that of P. ramosissimus. On the other hand, while there was no difference in carbon content in the leaves of Q. gilva in the control and treatment in 2011, carbon content in the leaves of the remaining six species increased due to the rise of $CO_2$ concentration and temperature. The C:N ratio in the leaf of C. virosa grown in the treatment was lower in both 2009 and 2011 than that in the control. The C:N ratio in the leaf of V. raddeana decreased by 16.4% from the previous year, but increased by 28.9% in 2011. For the other five species, C:N ratios increased both in 2009 and 2011. In 2009 and 2011, chlorophyll contents in the leaves of Q. gilva and H. hamabo were higher in the treatment than those in the control. In the case of P. ramosissimus, the ratio was higher in the treatment than that in the control in 2009, but in 2011, the result was the opposite. Among four herb species, the chlorophyll contents in the leaves of C. virosa, V. raddeana, and I. dichotoma did not show any difference between gradients in 2009, but decreased due to the rise of $CO_2$ concentration and temperature in 2011. Leaf nitrogen and carbon contents, C:N ratio, and chlorophyll contents in the leaves of seven rare and endangered species of plant were found to be influenced by the rise and duration of $CO_2$ concentration and temperature, species, and interaction among those factors. Conclusions: The findings above seem to show that long-term rise of $CO_2$ concentration, and temperature causes changes in physiological responses of rare and endangered species of plant and the responses may be species-specific. In particular, woody species seem to be more sensitive to the rise of $CO_2$ concentration and temperature than herb species.

Changes in Photosynthetic Characteristics during Grain Filling of a Functional Stay-Green Rice SNUSG1 and its $F_1$ Hybrids

  • Fu, Jin-Dong;Lee, Byun-Woo
    • Journal of Crop Science and Biotechnology
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    • 제11권1호
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    • pp.75-82
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    • 2008
  • Functional stay-green is a beneficial trait that may increase grain yield through the sustained photosynthetic competence during monocarpic senescence in cereal crops. The temporal changes of photosynthesis and related characteristics throughout the grain filling period of a stay-green japonica rice "SNU-SG1" was compared in growth chamber conditions with three high-yielding cultivars(HYVs) and their $F_1$ hybrids with SNU-SG1. SNU-SG1 exhibited a typical characteristic of functional stay-green in terms of chlorophyll degradation and photosynthetic competence during grain filling. According to the photosynthesis-light response curve measured at 10 and 35 d after heading for the flag leaf, SNU-SG1 exhibited higher initial light conversion efficiency and thus higher gross photosynthetic rate at light saturation compared to HYVs. Light saturation point was not different among genotypes, ranging from 1000 to 1500 ${\mu}mol$ photon $m^{-2}s^{-1}$. Net photosynthetic rate at light saturation($P_{max}$) of the upper four leaves in SNU-SG1 was much higher and sustained longer throughout grain-filling than HYVs and $F_1$ hybrids. The sustained high photosynthetic competence of SNU-SG1 during grain filling was ascribed to the longer maintenance of high mesophyll conductance that resulted from not only high chlorophyll content and its delayed degradation but also the slow degeneration of photosystem II(PS II) as judged by chlorophyll fluorescence($F_v/F_m$) of flag leaves. $F_1$ hybrids showed slow degeneration of photosystem II similar to the male parent SNU-SG1 while chlorophyll degradation pattern close to female parents, thus exhibiting a little higher $P_{max}$ than female parents. These results suggest that SNU-SG1 has a typical functional stay-green trait that can be utilized for increasing rice yield potential through the improved dry matter production during grain filling.

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Effect of Ionic Copper Toxicity on the Growth of Green Alga, Selenastrum capricornutum

  • Kim, Mi-Kyung;Ralph E. H. Smith
    • Journal of Microbiology and Biotechnology
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    • 제11권2호
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    • pp.211-216
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    • 2001
  • The growth of Selenastrum capricornutum in culture was investigated as a function of ionic copper concentrations to verify the toxicity and physiological variation. In a $Cu^{++}$ excess culture (E: $Cu^{++}$ of $130{\mu}g/l$), the growth rate (K)(0.32) was lower than that of the control culture (C: $Cu^{++}$ of $0.065{\mu}g/l$) (0.61) after 8 days and the exponential growth rate ($R_E$) was also found to be lower in culture E (1.1) than culture C (2.9). On the contrary, the K of S. capricornutum in trace $Cu^{++}$ culture ($T_1$ and $T_2$, 0.72) after 6 days tended to be more increased than culture C (0.68). From 8 to 14 days of culture, the amounts of chlorophyllls a and b were increased in culture C (chlorophyll a, $106->126{\mu}g/g$ dry wt; chlorophyll b, $158->208{\mu}g/g$ dry wt; chlorophyll b were decreased in culture E (chlorophyll a, $309->235{\mu}g/g$ dry wt; chlorophyll b, $405->352{\mu}g/g$ dry wt). The amounts of chlorophylls in ionic copper trace culture ($T_1$ and $T_2$) [(chl a/b) of $T_1$: $384/620\;{\mu}g/g$ dry wt; (chl a/b) of $T^2$:$320/467{\mu}g/g$ dry wt] were increased more than the culture C($260/387{\mu}g/g$ dry wt). Howeveer, when photosynthetic rates were normalized to the dry weight of algae, the control culture continued to showed higher values than the treated culture ($T_1$). An appropriate amount of ionic copper ($T_1:\;26\;{\mu}g/l$) stimulated the grwoth of S. capricornutum than the ionic copper content of $13\;{\mu}g/l$ ($T_2$), while the excess amount of ionic copper ($130\;{\mu}g/l$) resulted in the highest toxicity to the growth of S. capricornutum.

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참기름 첨가에 의한 어유 보강 에멀젼의 클로로필에 의한 광산화 개선 효과와 산화 방지제 함량 변화 (Improvement of Chlorophyll-photosensitized Oxidation of Fish Oil-enriched Emulsion by Sesame Oil Addition and Antioxidant Content Changes)

  • 안소진;이 에드월드;최은옥
    • 한국식품과학회지
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    • 제46권2호
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    • pp.127-134
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    • 2014
  • 참치유 보강 에멀젼에 첨가된 참기름은 클로로필의 존재 하에 $25^{\circ}C$, 1,700 lux의 빛에서 에멀젼 유지의 광산화를 유의하게 감소시켰다. 또한 참기름의 첨가는 에멀젼의 광산화 중 산성 조건에서 클로로필로부터 전환된 페오피틴의 분해속도를 낮추어 일중항산소 생성이 많았을 가능성에도 불구하고 일중항산소와 라디칼 소거능을 가진 인지방질, 토코페롤, 폴리페놀 화합물을 제공함으로써 참치유 보강 에멀젼 유지의 산화안정성을 개선하였으며 인지방질, 토코페롤에 비해 폴리페놀 화합물이 더 큰 영향을 주었다. 리그난 화합물은 에멀젼의 광산화 중 변화를 보이지 않아 물리적 기전에 의한 일중항산소 소거 작용을 암시하였다.