• 제목/요약/키워드: Photosynthetic efficiency

검색결과 271건 처리시간 0.036초

Ecosysteme de I′Etang de Berre (Mediterranee nord-occidentale) : Caracteres Generales Physiques, Chimiques et Biologiques

  • Kim, Ki-Tai
    • 환경생물
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    • 제22권2호
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    • pp.247-258
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    • 2004
  • Climatological, hydrological and planktonical research studies, measurements of primary production and photosynthetic efficiency from December 1976 to December 1978 have been carried out in two brackish lakes: Lake Etang de Berre and Lake Etang de Vaine located in the French Mediterranean coast, in the region of Carry-le-Rouet located on the north-west Mediterranean near Marseilles, and in fresh water inflows from 4 Rivers (Touloubre, Durance, Arc, Durancole) to Lake Etang de Berre. Physico-chemical parameters were measured for this study: water temperature, salinity, density, pH, alcalinity, dissolved oxygen (% saturation), phosphate, nitrate, nitrite, silicate etc. Diverse biological parameters were also studied: photosynthetic pigments, phaeopigments, specific composition and biomass of phytoplankton, primary pelagic production etc. Climatical factors were studied: air-temperature, solar-radiation, evaporation, direction (including strength) of winds, precipitation and freshwater volume of the four rivers. The changes in Lake ‘Etang de Berre’ ecosystem depend on the quality of the water in the Durance River, and on the effects of seawater near the entrance of the Caronte Canal. The water quality of the lake varies horizontally and vertically as a result of atmospheric phenomena, maritime currents and tides. The distribution of water temperatures is generally heterogeneous. Southeasterly winds and the Northeasterly Mistral wind are important in the origins of circulated and mixed water masses. These winds are both frequent and strong. They have, as a result, a great effect on the water environment of Lake Etang de Berre. In theory, the annual precipitation in this region is well over eight times the water mass of the lake. The water of the Durance River flows into Lake Etang de Berre through the EDF Canal, amounting to 90% of the precipitation. However, reduction of rainfall in dry seasons has a serious effect on the hydrological characteristics of the lake. The temperature in the winter is partially caused by the low temperature of fresh water, particularly that of the Durance River. The hydrological season of fresh and brackish water is about one month ahead of the hydrological season of sea water in its vicinity. The salinity of Lake Etang de Berre runs approximately 3$\textperthousand$, except at lower levels and near the entrance to the Caronte Canal. However, when the volume of the Durance River water is reduced in the summer and fall, the salinity rises to 15$\textperthousand$. In the lake, the ratio of fresh water to sea water is six to one (6:1). The large quantities of seston conveyed by rivers, particularly the Durance diversion, strongly reduce the transparency in the brackish waters. Although the amount of sunshine is also notable, transparency is slight because of the large amount of seston, carried chiefly by Tripton in the fresh water of the Durance River. Therefore, photosynthesis generally occurs only in the surface layer. The transparency progressively increases from freshwater to open seawater, as mineral particles sink to the bottom (about 1.7kg $m^{-2}a^{-1}$ on the average in brackish lakes). The concentration of dissolved oxygen and the rate of oxygen saturation in seawater (Carry-le-Rouet) ranged from 5.0 to 6.0 $m\ell$ㆍ.$1^{-1}$, and from 95 to 105%, respectively. The amount of dissolved oxygen in Etang de Berre oscillated between 2.9 and 268.3%. The monographs of phosphate, nitrate, nitrite and silicate were published as a part of a study on the ecology of phytoplankton in these environments. Horizontal and vertical distributions of these nutriments were studied in detail. The recent diversion of the Durance River into Lake Etang de Berre has effected a fundamental change in this formerly marine environment, which has had a great impact in its plankton populations. A total of 182 taxa were identified, including 111 Bacillariophyceae, 44 Chlorophyceae, and 15 Cyanophyceae. The most abundant species are small freshwater algae, mainly Chlorophyceae. The average density is about $10^{8}$ cells $1^{-1}$ in Lake Etang de Berre, and about double that amount in Lake Etang de Vaine. Differences in phytoplankton abundance and composition at the various stations or at various depths are slight. Cell biovolume V (equivalent to true biomass), plasma volume VP (‘useful’ biomass) and, simultaneously. the cell surface area S and S/V ratio through the measurement of cell dimensions were computed as the parameters of phytoplankton productivity and metabolism. Pigment concentrations are generally very high on account of phytoplankton blooms by Cyanophyceae, Chlorophyceae and Cryptophyceae. On the other hand, in freshwaters and marine waters, pigment concentrations are comparatively low and stable, showing slight annual variation. The variations of ATP concentration were closely related to those of chlorophyll a and phytoplankton blooms only in marine waters. The carbon uptake rates ranged between 38 and 1091 mg$Cm^{-2}d^{-1}$, with an average surface value of 256 mg; water-column carbon-uptake rates ranged between 240 and 2310 mg$Cm^{-2}d^{-1}$, with an average of 810, representing 290 mg$Cm^{-2}$, per year 45 000 tons per year of photosynthetized carbon for the whole lake. Gross photosynthetic production measured by the method of Ryther was studied over a 2-year period. The values obtained from marine water(Carry-le-Rouet) ranged from 23 to 2 337 mg$Cm^{-2}d^{-1}$, with a weighted average of 319, representing about 110 gCm$^{-2}$ per year. The values in brakish water (Etang de Berre) ranged from 14 to 1778 mg$Cm^{-2}d^{-1}$, with a weighted average of 682, representing 250 mg$Cm^{-2}$ per year and 38 400 tons per year of photosynthesized carbon for the whole lake.

차나무, 동백나무, 귤나무 잎에서 엽록소 형광 및 $CO_2$ 흡수능의 비교 분석 (Chlorophyll Fluorescence and $CO_2$ Fixation Capacity in Leaves of Camellia sinensis, Camellia japonica, and Citrus unshiu)

  • 오순자;이진호;고광섭;고석찬
    • 환경생물
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    • 제30권2호
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    • pp.98-106
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    • 2012
  • 본 연구는 차나무(Camellia sinensis L.)와 동백나무(C. japonica L.), 제주지역의 주요 과수작물인 귤나무(Citrus unshiu M.) 잎을 대상으로 엽록소형광과 $CO_2$ 흡수능을 비교 분석하여 탄소흡수원으로서의 가치를 평가하고자 하였다. 차나무의 $CO_2$ 고정율은 같은 과의 동백나무보다 높고 과수작물인 귤나무와 유사하였다. 기공전도도 ($g_s$)는 3종 모두 새벽에는 높고 이후 저녁 시간까지 계속하여 감소하였다. 엽육 내 $CO_2$ 농도 ($C_i$)는 3종 모두 새벽(06:00)에 높고 낮에 감소하였다가 저녁에 다시 증가하는 경향을 보였으며, 잎의 증산율 (E)은 낮 시간에 높아졌다가 저녁에 감소하였다. 차나무에서 광계II의 광화학적 효율(Fv/Fm)은 낮시간에 다소 낮아졌다가 저녁에 다시 증가하는 양상을 보였다. 이러한 낮시간의 Fv/Fm 감소는 광억제의 결과로 보이며 그 감소폭이 동백나무보다 적어 빛이나 고온 등에 내성을 가지고 있음을 알 수 있다. 엽면적당 활성상태의 반응중심의 상대적 밀도를 의미하는 RC/CS는 3종 모두 낮시간에 감소하였다. ABS/RC, TRo/RC, ETo/RC와 DIo/RC는 차나무와 동백나무에서 낮시간에 증가하였으며, 귤나무에서도 낮시간에 증가하였으나 유의성이 없는 것으로 나타났다. 일동화율은 차나무가 $320.1mmol\;m^{-2}d^{-1}$로 가장 높았으며, 귤나무와 동백나무는 각각 $292.5mmol\;m^{-2}d^{-1}$$244.8mmol\;m^{-2}d^{-1}$로 나타났다. 이상의 결과를 토대로 차나무는 광합성율이 높고 낮 시간의 광억제도 낮을 뿐만 아니라, 귤나무보다 수분요구량이 낮고 수분이용효율은 높아 탄소흡수원으로서 유용한 작물수종인 것으로 보인다.

가을철 차광 처리에 따른 진달래와 영산홍의 생리적 반응 (Physiological Responses of Rhododendron mucronulatum and R. indicum with Shading Treatment in Autumn Season)

  • 이경재;송기선;정영숙;윤택승;홍성권;김재현;이상우;김종진
    • 원예과학기술지
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    • 제28권3호
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    • pp.403-408
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    • 2010
  • 본 실험은 비닐온실 내에서 0%, 35%, 55%, 75% 차광처리에 따른 진달래($Rhododendron$ $mucronulatum$ Turcz.)와 영산홍($R.$ $indicum$ (L.) Sweet) 묘목의 생리적 반응을 조사하기 위하여 수행되었다. 차광처리는 생육 후반기인 2008년 9월 9일부터 11월 5일까지 시행되었다. 차광처리는 9월의 낮 온도를 0.9-$1.7^{\circ}C$, 10월에는 0.8-$1.7^{\circ}C$ 정도를 낮추는 효과가 관측되었다. 차광처리 전 진달래 및 영산홍의 함수율은 각각 68.5%, 66.3%이었으며, 차광처리 기간 후 75% 차광 하의 진달래의 함수율은 66.2%로써 3.4%가 감소하였으며, 영산홍은 65.9%로써 0.6%가 감소하였다. 두 수종 모두 차광 수준이 높아질수록 감소율이 낮아지는 유사한 경향을 보였다. 영산홍의 광합성능력은 차광 수준이 높아질수록 높았는데 75% 차광에서 $9.63{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$로 가장 높았다. 한편, 세포간극 내 $CO_2$의 농도, 기공전도도 및 증산율 역시 전광 하의 묘목에 비하여 차광처리에 따라 높았는데 55%, 35% 및 75% 차광순이었다. 수분이용효율은 전광의 묘목이 차광처리 묘목에 비하여 상대적으로 높은 것으로 조사되었다. 차광처리를 받지 않은 진달래 잎색은 자주색에 가까운 색으로 변색한 반면, 차광처리 수준이 높을수록 육안으로도 녹색이 지속되고 있는 것이 관찰되었다. 이러한 차광 수준별 진달래 잎색의 변화를 Munsell Color Chart로 정리한 결과 전광의 경우 R(red)과 Y(yellow) chart의 색이 많은 반면 차광 수준이 높을수록 G(green), Y의 chart에 속하는 비율이 높아 여전히 녹색을 많이 띄고 있었다.

오존에 노출된 자작나무류의 기공개폐와 광합성 반응 (Stomatal and Photosynthetic Responses of Betula Species Exposed to Ozone)

  • 이재천;김장수;한심희;김판기
    • 한국농림기상학회지
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    • 제6권1호
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    • pp.11-17
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    • 2004
  • 본 연구는 오존에 노출된 자작나무류의 기공 반응, 광합성 및 내부 $CO_2$ 농도 변화간의 연관성을 밝히고자 수행하였다. 거제수나무, 물박달나무, 박달나무, 자작나무, 사스래나무는 온실에서 양묘하여 포트로 옮겨 심고, 100ppb의 오존 농도에서 하루 8시간씩 5주 동안 오존에 노출시켰다. 순광합성은 오존 노출 초기부터 수종간, 처리간 차이가 있었으나, 기공전도도와 증산량은 오존 처리 3주 후부터 수종간, 처리간 차이가 있었다. 내부 $CO_2$ 농도는 수종간 차이가 없었으나, 처리간 차이는 크게 나타났으며, 물박달나무를 제외한 4개 수종의 내부 $CO_2$ 농도는 오존 처리구가 대조구보다 높았다. 탄소고정효율과 광호흡속도는 수종간 또는 처리간에 큰 차이를 나타냈으며, 모든 수종에서 대조구보다 오존 처리구가 낮았다. 자작나무류는 장기적인 오존 노출로 광합성과 관련된 rubisco 활성이 감소하여, 내부 $CO_2$ 농도가 증가하면서 기공이 eke히는 것으로 판단된다.

폐쇄형 묘생산 시스템의 에너지 수지 분석 (Analysis of Energy Balance in Closed Transplants Production System)

  • 김진국;김용현;이명규;최유화
    • 생물환경조절학회지
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    • 제12권3호
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    • pp.147-152
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    • 2003
  • 본 연구는 감자 플러그묘를 생산하기 위하여 시작품으로 제작된 폐쇄형 묘생산 시스템내의 전기에너지 소모를 분석하고, 에너지 수지를 구명하고자 수행되었다. 기온 20$^{\circ}C$, 상대습도 90%, 광주기 16/8 h, PPF 50 ${\mu}$mol${\cdot}m^{-2}{\cdot}s^{-l}$의 조건 하에서 5일 동안 발근과정을 거친 감자 경삽묘는 상대습도와 PPF를 각각 70%, 200 ${\mu}$mol${\cdot}m^{-2}{\cdot}s^{-l}$로 조절한 가운데 15일간 육묘되었다. 폐쇄형 묘생산 시스템내의 전기에너지 소비는 인공광원 46%, 컴프레서 35%, 가열기 16%, 송풍기 2%, 가습기 1% 로 나타났다. 전기에너지 이용효율과 단피복사 에너지 이용효율은 각각 0.005과 0.054 로 나타났다. 향후 폐쇄형 시스템에서의 전기에너지 소모량을 절감시키면서 에너지 이용효율을 증대시키는 빙안이 모색된다면 감자 플러그묘 생산을 위한 폐쇄형 시스템의 실용성은 더욱 높아질 것이다.

광, 온도, 수분 변화에 따른 음나무 엽의 생리반응(II) - 광도변화에 따른 기공증산, 수분이용효율, 수증기압결핍 - (Effects of Light, Temperature, Water Changes on Physiological Responses of Kalopanax pictus Leaves(II) - Characteristics of Stomatal Transpiration, Water Efficiency, Vapor Pressure Deficit of Leaves by the Light Intensity -)

  • 한상섭;전두식;심주석
    • Journal of Forest and Environmental Science
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    • 제21권1호
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    • pp.92-97
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    • 2005
  • 1. 상엽의 기공증산속도는 광도가 증가함에 따라 계속적인 증가를 나타냈지만, 중엽과 하엽은 광도 약 $100{\mu}mol\;m^{-2}S^{-1}$ 이상에서 기공증산의 포화가 나타났다. 포화광도 $1,200{\mu}mol\;m^{-2}S^{-1}$)에서 기공증산은 상엽($1.29mmol\;H_2O\;m^{-2}S^{-1}$) > 중엽($0.56mmol\;H_2O\;m^{-2}S^{-1}$) > 하엽($0.31mmol\;H_2O\;m^{-2}S^{-1}$)순위였다. 2. 엽의 수분이용효율은 광도 $600{\mu}mol\;m^{-2}S^{-1}$ 까지 빠르게 증가하다가 그 이상의 광도에서는 감소한 반면, 중엽과 하엽은 광도 $400{\mu}mol\;m^{-2}S^{-1}$ 까지는 증가하였지만 그 이상의 광도에서는 증가를 보이지 않았다. 3. 엽의 광도증가에 따른 수증기압결핍은 직선적으로 감소하는 경향을 나타냈다.

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Chlorosis of Ogura-CMS Brassica rapa is due to down-regulation of genes for chloroplast proteins

  • Jeong, Seok-Won;Yi, Hankuil;Song, Hayoung;Lee, Soo-Seong;Park, Youn-Il;Hur, Yoonkang
    • Journal of Plant Biotechnology
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    • 제44권2호
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    • pp.115-124
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    • 2017
  • Cytoplasmic male sterility (CMS) is a maternally inherited trait leading to loss of the ability to produce fertile pollen and is extensively used in hybrid crop breeding. Ogura-CMS was originally generated by insertion of orf138 upstream of atp8 in the radish mitochondrial genome and transferred to Brassica crops for hybrid breeding. Gene expression changes by dysfunctional mitochondria in Ogura-CMS result in pollen developmental defects, but little is known about gene expression patterns in vegetative tissue. To examine the interaction between nuclear and organellar regulation of gene expression, microarray and subsequent gene expression experiments were conducted with leaves of $F_1$ hybrid Chinese cabbage derived from self-incompatible (SI) or Ogura-CMS parents (Brassica rapa ssp. pekinensis). Out of 24,000 genes deposited on a KBGP24K microarray, 66 genes were up-regulated and 26 genes were down-regulated by over 2.5 fold in the CMS leaves. Up-regulated genes included stress-response genes and mitochondrial protein genes, while genes for ascorbic acid biosynthesis and thylakoid proteins were down-regulated. Most of the major component genes for light reactions of photosynthesis were highly expressed in leaves of both SI and CMS plants, but most of the corresponding proteins were found to be greatly reduced in leaves of CMS plants, indicating posttranscriptional regulation. Reduction in thylakoid proteins and chlorophylls led to reduction in photosynthetic efficiency and chlorosis of Ogura-CMS at low temperatures. This research provides a foundation for studying chloroplast function regulated by mitochondrial signal and for using organelle genome introgression in molecular breeding.

Growth of Runner Plants Grown in a Plant Factory as Affected by Light Intensity and Container Volume

  • Park, Seon Woo;Kwack, Yurina;Chun, Changhoo
    • 원예과학기술지
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    • 제35권4호
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    • pp.439-445
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    • 2017
  • Transplant production in a plant factory with artificial lighting provides several benefits; (1) rapid and uniform transplant production, (2) high production rate per unit area, and (3) production of disease free transplants production. To improve the growth of runner plants when strawberry transplants are produced in a plant factory, we conducted two experiments to investigate (1) the effect of different light intensity for stock and runner plants on the growth of runner plants, and (2) the effect of different container volume for runner plants on their growth. When the stock and runner plants were grown under nine different light conditions composed of three different light intensities (100, 200, and $400{\mu}mol{\cdot}m^{-2}{\cdot}s^{-1}$ PPF) for each stock and runner plants, increasing the light intensity for stock plants promoted the growth of runner plants, however, the growth of runner plants was not enhanced by increasing the light intensity for runner plants under same light intensity condition for stock plants. We also cultivated runner plants using plug trays with four different container volumes (21, 34, 73, and 150 mL) for 20 days after placing the stock plants, and found that using plug trays with lager container volume did not enhance the growth of runner plants. These results indicate that providing optimal condition for stock plants, rather than the runner plants, is more important for increasing the growth of the runner plants and that the efficiency of strawberry transplant production in a plant factory can be improved by decreasing light intensity or container volume for runner plants.

식물생산공장식 양액재배시 근권부 온도가 장미의 생육 및 품질에 미치는 영향 (Effect of Root Zone Temperature on the Growth and Quality of Single-Stemmed Rose in Cutted Rose Production Factory)

  • 이혜진;이용범;배종향
    • 생물환경조절학회지
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    • 제13권4호
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    • pp.266-270
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    • 2004
  • 장미 식물공장식 양액재배는 고품질의 절화를 대량으로 계획 생산할 수 있는 시스템으로 장미 수출증가에 따라 기존의 재배 방식에서 식물공장 형태로의 전환이 필수적이다. 또한 식물공장에서의 경제적이고, 효율적인 생산을 위한 지하부 환경의 최적 관리 기술 개발이 절실한 실정이다. 따라서 장미 식물공장에 적합한 single-stemmed rose 수경재배시 배양액의 온도과 같은 지하부 환경요인이 장미의 생육과 품질에 미치는 영향을 알아보고자 실험하였다. 배양액의 온도에 따른 'Red Velvet'의 광합성률, 증산량, 생육 및 수량이 $15\~20^{\circ}C$에서 높게 나타나 적정 배양액 온도임을 알 수 있었다. 반면에 'Vital'은 $10\~15^{\circ}C$에서 생육이 가장 왕성하고 $30^{\circ}C$의 고온에서는 거의 생육이 이루어지지 않아 'Red Velvet'과는 달리 고온의 배양액에 대한 적응력이 낮은 것으로 나타났다.

β-Carotene Production from Dunaliella salina Cultivated with Bicarbonate as Carbon Source

  • Xi, Yimei;Wang, Jinghan;Xue, Song;Chi, Zhanyou
    • Journal of Microbiology and Biotechnology
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    • 제30권6호
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    • pp.868-877
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    • 2020
  • Bicarbonate has been considered as a better approach for supplying CO2 to microalgae cells microenvironments than gas bubbling owing to cost-effectiveness and easy operation. However, the β-carotene production was too low in Dunaliella salina cultivated with bicarbonate in previous studies. Also, the difference in photosynthetic efficiency between these two carbon sources (bicarbonate and CO2) has seldom been discussed. In this study, the culture conditions, including NaHCO3, Ca2+, Mg2+ and microelement concentrations, were optimized when bicarbonate was used as carbon source. Under optimized condition, a maximum biomass concentration of 0.71 g/l and corresponding β-carotene content of 4.76% were obtained, with β-carotene yield of 32.0 mg/l, much higher than previous studies with NaHCO3. Finally, these optimized conditions with bicarbonate were compared with CO2 bubbling by online monitoring. There was a notable difference in Fv/Fm value between cultivations with bicarbonate and CO2, but there was no difference in the Fv/Fm periodic changing patterns. This indicates that the high concentration of NaHCO3 used in this study served as a stress factor for β-carotene accumulation, although high productivity of biomass was still obtained.