128 resultados para DELTA-PSI-M


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The psychrotrophic Antarctic alga, Chlorella vulgaris NJ-7, grows under an extreme environment of low temperature and high salinity. In an effort to better understand the correlation between fatty acid metabolism and acclimation to Antarctic environment, we analyzed its fatty acid compositions. An extremely high amount of Delta(12) unsaturated fatty acids was identified which prompted us to speculate about the involvement of Delta(12) fatty acid desaturase in the process of acclimation. A full-length cDNA sequence, designated CvFAD2, was isolated from C. vulgaris NJ-7 via reverse transcription polymerase chain reaction (RT-PCR) and RACE methods. Sequence alignment and phylogenetic analysis showed that the gene was homologous to known microsomal Delta(12)-FADs with the conserved histidine motifs. Heterologous expression in yeast was used to confirm the regioselectivity and the function of CvFAD2. Linoleic acid (18:2), normally not present in wild-type yeast cells, was detected in transformants of CvFAD2. The induction of CvFAD2 at an mRNA level under cold stress and high salinity is detected by real-time PCR. The results showed that both temperature and salinity motivated the upregulation of CvFAD2 expression. The accumulation of CvFAD2 increased 2.2-fold at 15A degrees C and 3.9-fold at 4A degrees C compared to the alga at 25A degrees C. Meanwhile a 1.7- and 8.5-fold increase at 3 and 6% NaCl was detected. These data suggest that CvFAD2 is the enzyme responsible for the Delta(12) fatty acids desaturation involved in the adaption to cold and high salinity for Antarctic C. vugaris NJ-7.

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Three different forms of PS I complexes were isolated from a siphonous marine green alga, Codium fragile, by Triton X-100 sucrose gradient centrifugation. Zone III had a Chl a/b>20, and designated as PS I. core complex CC I because it created only CP I band in mild PAGE. Zone IV and V had absorption at 436 and 674 nm, 467 and 650 nm, and 540 nm, suggesting the presence of Chl a, Chl b, siphonaxanthin and siphonein, Chl a/b were 3.23 and 2.4, respectively. Both CP I and CP I a bands were observed when they were subjected to mild PAGE. Therefore, Zone IV and V were different forms of PS I complexes that consisted of CC I and different amount of light-harvesting complex LHC I. Zone III contained only 66 and 56 ku peptides in SDS-PAGE, while Zone IV and V had 4 different LHC I peptides of 25, 26, 26.2 and 27.5 ku in addition to 66, 56 ku peptides. Fluorescence emission spectra showed that efficient energy transfer were kept among pigments in isolated PS I complexes. Excitation energy absorbed by Chl b, siphonaxanthin and siphonein can be transferred to Chl a.

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Polyunsaturated fatty acids (PUFAs) are important components of infant and adult nutrition because they serve as structural elements of cell membranes. Fatty acid desaturases are responsible for the insertion of double bonds into pre-formed fatty acid chains in reactions that require oxygen and reducing equivalents. In this study, the genome-wide characterization of the fatty acid desaturases from seven eukaryotic photosynthetic microalgae was undertaken according to the conserved histidine-rich motifs and phylogenetic profiles. Analysis of these genomes provided insight into the origin and evolution of the pathway of fatty acid biosynthesis in eukaryotic plants. In addition, the candidate enzyme from Chlamydomonas reinhardtii with the highest similarity to the microsomal Delta 12 desaturase of Chlorella vulgaris was isolated, and its function was verified by heterologous expression in yeast (Saccharomyces cerevisiae).

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Sediment samples were collected from the lower channel of the Yangtze River and the Yellow River and the contents of rare earth elements (REEs) were measured. In addition, some historical REEs data were collected from published literatures. Based on the delta Eu-N-I REEs pound plot, a clear boundary was found between the sediments from the two rivers. The boundary can be described as an orthogonal polynomial equation by ordinary linear regression with sediments from the Yangtze River located above the curve and sediments from the Yellow River located below the curve. To validate this method, the REEs contents of sediments collected from the estuaries of the Yangtze River and the Yellow River were measured. In addition, the REEs data of sediment Core 255 from the Yangtze River and Core YA01 from the Yellow River were collected. Results show that the samples from the Yangtze River estuary and Core 255 almost are above the curve and most samples from the Yellow River estuary and Core YA01 are below the curve in the delta Eu-N-I REEs pound plot. The plot and the regression equation can be used to distinguish sediments from the Yangtze River and the Yellow River intuitively and quantitatively, and to trace the sediment provenance of the eastern seas of China. The difference between the sediments from two rivers in the delta Eu-N-I REEs pound plot is caused by different mineral compositions and regional climate patterns of the source areas. The relationship between delta Eu-N and I REEs pound is changed little during the transport from the source area to the river, and from river to the sea. Thus the original information on mineral compositions and climate of the source area was preserved.

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The equatorial Pacific upwelling zone has been suspected of playing an important role in the global atmospheric CO2 changes associated with glacial-interglacial cycles. In order to assess the influencing scope of the surface water deglacial delta(13)C minimum in the tropical low-latitude Pacific, the core DGKS9603, collected from the middle Okinawa Trough, was examined for 4513 C records of planktonic foraminifera N. dutertrei and G. ruber. The planktonic foraminiferal delta(13)C records show a clear decreasing event from 20 to 6 cal. kaBP., which is characterized by long duration of about 14 ka and amplitude shift of 0.4 x 10(-3). Its minimum value occurred at 15.7 cal kaBP. The event shows fairly synchrony with the surface water deglacial delta(13)C minimum identified in the tropical Pacific and its marginal seas. Because there is no evidence in planktonic foraminiferal fauna and 45180 records for upwelling and river runoff enhancement, the broad deglacial delta(13)C minimum event in planktonic foraminiferal records revealed in core DGKS9603 might have been the direct influencing result of the deglacial surface water of the tropical Pacific. The identification for the event in the Okinawa Trough provides new evidence that the water evolution in the tropical low-latitude Pacific plays a key role in large regional, even global carbon cycle.

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Hydrological statistical data, remote sensing images, and bathymetric charts were used to study the recent evolution of the Huanghe (Yellow) River delta under human-induced interventions. It was clear that water and sediment discharge from the Huanghe River had dropped rapidly since 1970, particularly after 1986. The water and sediment discharges for the period of 1986-2000 were found to have been reduced to only 29.2% and 31.2% of those in the period of 1950-69. This was caused by human factors in the upper and middle reaches of the Huanghe River, including water diversion, damming and reservoir construction, and water and soil conservation. Based on the results from visual interpretation of processed Landsat (MSS or TMJETM+) images dated from 1976 to 2001 and two digital elevation models generated from bathymetric charts surveyed in 1976 and 1992, we found that human-induced reduction of water and sediment discharge led to coastline retrogradation, with the maximum mean recession rate of -0.51 km yr-1 over the period of 1976-98, and seabed erosion beyond the -20 m isobath between 1976 and 1992. Other impacts of human activities on the recent evolution of the Huanghe River delta, including tidal flats shrinking, artificial coastline increasing, land surface sinking and so on, were also analyzed. We found that: (i) the whole delta, including subaerial and subaqueous, has turned from a highly constructive period to a destructive phase; (ii) channelization and dredging were two of the main causes of delta destruction; (iii) land loss in the Huanghe River delta caused by submersion will be increased in the near future; (iv) the Huanghe River delta was becoming more fragile and susceptible to natural hazards.

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This paper addresses the recent (1970s-1990s) processes of river mouth bar formation, riverbed aggradation and distributary migration in the Huanghe River mouth area, in the light of station-based monitoring, field measurements and remote sensing interpretation. The results show that the morphological changes of the river mouth bar have been closely associated with the largely reduced fluvial discharge and sediment load. Landforrn development such as bar progradation occurred in two phases, i.e. before and after 1989, which correspond to faster and lower bar growth rates, respectively. Fast riverbed aggradation in the mouth channel was strongly related to river mouth bar progradation. During 1976-1996, about 2.8% of the total sediment loads were deposited in the river channel on the upper to middle delta. Therefore, the river water level rose by a few meters from 1984 to 1996. The frequent distributary channel migration, which switched the radial channel pattern into the SE-directed pattern in the mid-1980s, was linked with mouth bar formation. Marine conditions also constrain seaward bar progradation. Furthermore, the history of river mouth bar formation reflects human impacts, such as dredging and dyking in order to stabilize the coastal area. (c) 2005 Elsevier B.V. All rights reserved.

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测定了管藻目绿藻刺松藻和假根羽藻的叶状体、叶绿体及类囊体膜的吸收光谱和低温荧光光谱,并同软丝藻等5种非管藻目绿藻和菠菜进行了比较。证实绿藻普遍缺少作为高等植物 PSI 标志的 730nm 的低温长波荧光,其长波发射峰在 710 ~ 715nm 以及 695nm 荧光也不明显。采用和的 PAGE 法从刺松藻、假根羽藻、软丝藻和菠菜中分别得到 11 种、11 种、7 种和 9 种色素蛋白复合物,并测定了各复合物的分子量、Chl a/b、叶绿素的分布、多肽组成和结构关系,以及吸收光谱、低温荧光发射和激发光谱等各种光谱特性。刺松藻和假根羽藻的 CPIa_(1-2) 复合物的荧光发射主峰分别在 698、690 和 685nm,软丝藻 CPIa 在 715nm,菠菜 CPIa_(1-2) 分别在 729 和 722nm。两种管藻目绿藻的 LHCI 与 CII 的结合程度较菠菜和软丝藻更紧密,其 CPI 复合物中仍含有一定量的,710 ~ 715nm 荧光呈隐现状态。用二次 PAGE 法将刺松藻和假根羽藻的 CPIa 和 CIP 再分离,得到 PSI 的捕光复合 LHCI,为管藻黄素-Chl a/b-蛋白复合物, Chl a/b=1.2,含有 27.5、26.2、26 和 24.5kDa 四种多肽,77K 荧光峰在 682 ~ 683nm。LHCI 没有发射高等植物 730nm 荧光的相应组分是管藻目绿藻缺少 730nm 荧光的主要原因。核心复合物 CCI 含有 67 和 56kDa 两种多肽,与软丝藻和菠菜相似,但 3 种藻类核心复合物的 77K 荧光峰在 715nm,而菠菜在 720nm。刺松藻和假根羽藻有 LHCI 存在时,715nm 荧光峰不明显,随着 LHCI 的解离,荧光逐渐显现。刺松藻 PSI 中与 CCI 结合最紧密的是 LHCI 的 27.5 和 24.5kDa 多肽,两个 26 kDa 多肽的结合较为松散。用差速离心法对刺松藻、假根羽藻、软丝藻及菠菜的 PSI 颗粒进行了初步的分离。PSI 粗提物的 77K 长波荧光发射峰分别在 710、712、713 和 730nm,与 PAGE 法得到的结果相符。刺松藻和假根羽藻的 PSII 核心复合物 CPa 与菠菜相同,都含有两个 33kDa 核心多肽及 40 ~ 47 kDa 的内天线蛋白。从两种管藻目绿藻中首次分离到 6 种 LHCII 捕光复合物,其中 LHCP_(1-3),四种都是管藻黄素- Chl a/b-蛋白复合物, Chl a/b=0.7 ~ 0.9。刺松藻和假根羽藻中含量最高、最稳定的捕光复合物是分子量最大的 LHCP_1 由 34.4、31.5、29.5、28.1 和 26.5kDa 多肽构成,其中 34.4 和 31.5kDa 多肽在菠菜和软丝藻中没有对应组分。LHCP_1 再分离结果表明,分子量较小的捕光复合物都是 LHCP_1 的组成部分,但分子量最小的 Fca_1 和 Fca_2 与其它复合物的关系尚不确定。31.5 和 29.5 kDa 多肽是 LHCP_1 的核心,34.4、28.1 和 26.5kDa 多肽位于外侧;整个 LHCP_1 以 28.1 和 26.5kDa 多肽与 CCII 紧密结合,构成 PSII。根据刺松藻和假根羽藻光系统结构及其特异性的研究结果,提出了一个管藻目绿藻 PSI 和 PSII 色素蛋白复合物结构关系模型,并与高等植物的模型做了比较。讨论了光合作用两个光系统结构和特性的进化过程,指出 730nm 低温荧光峰不能作为管藻目乃至非管藻目绿藻 PSI 的表征。管藻目绿藻同杂色藻类在这方面有相似性。

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Open-top chambers were used to estimate the possible effects of global warming on delta C-13 of seven plant species grown in alpine meadow ecosystem. The delta C-13 values of plant species were lower after long-term growth in open-top chambers. In the course of experiment, temperature significantly increased inside the chambers by 4 degrees C. Plant species grown at a lower elevation above sea level had higher delta C-13 values as compared to those grown at a higher elevation. This was in accordance with the effect of open-top chamber on delta C-13 values in plants. Greater availability of CO2 and lower water vapor as indicated by an increase in discrimination against (CO2)-C-13, probably result in more negative delta C-13 values of plants because higher stomatal conductance increases availability of CO2 and causes greater discrimination against (CO2)-C-13. The plant species studied could be the indicator species for testing global warming by the change in carbon isotope ratios at the two growth temperatures.