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971.
Gas exchange, chlorophyll (Chl) fluorescence, and contents of some metabolites in two genotypes of jasmine (Jasminum sambac), single petal (SP) and double petal (DP) one, were analyzed during dehydration and re-hydration. Water stress significantly decreased net photosynthetic rate, stomatal conductance, and maximum photochemical efficiency (Fv/Fm) in both jasmine genotypes, but increased minimum fluorescence (F0) only in DP-jasmine. Water stress also decreased starch content, while increased contents of total soluble sugars and proline in leaves of both genotypes. SP-jasmine demonstrated higher drought tolerance as evidenced by maintaining higher gas exchange and photochemical efficiency and lower alteration of metabolites than DP-jasmine. Recovery analysis revealed that drought-induced injury in photosynthetic machinery in jasmine plants was reversible. DP-jasmine exhibited a slow recovery of drought-induced impairment in photosynthetic activity and associated metabolites, suggesting that this genotype had lower capacity to adapt to water limited condition. Higher yield stability of SP-than that of DP-jasmine under rain-fed condition finally confirmed higher drought tolerance of SP-jasmine.  相似文献   
972.
The transmembrane (TM) segment of the major coat protein from Ff bacteriophage has been extensively studied as an example of dimerization in detergent and lipid bilayer systems. However, almost all the information regarding this interaction has been gained through mutagenesis studies, with little direct structural information being available. To this end solution NMR has the potential to provide new insights into structure of the dimer. In order to evaluate the utility of this approach we have studied a selectively 15N-labeled peptide containing the TM segment of MCP (MCPTM) by solution NMR. This peptide was found to give rise to detergent concentration-dependent spectra that were assigned to monomeric and dimeric forms. The standard free energy of this interaction in SDS was estimated from these spectra and found to be consistent with weak but specific dimerization. In addition, similar spectra could be obtained in β-octyl glucoside with intermolecular paramagnetic relaxation experiments demonstrating a parallel arrangement of TM helices in the dimer. In both detergents backbone chemical shift differences between monomeric and dimeric forms of MCPTM showed that the largest changes occur around its GXXXG motif. The resulting structural model is consistent with observations made for MCP mutants previously characterized in biological membranes, opening the door to detailed structural characterization of this form of MCP. These results also have general implications for the study of weakly interacting TM segments by solution NMR since the use of similar sample conditions should allow structural data to be accessed for oligomeric states from a wide range systems that undergo biologically relevant but weak associations in the membrane.  相似文献   
973.
The protein harakiri (Hrk) is a pro-apoptotic BH3-only protein which belongs to the Bcl-2 family. Hrk appears associated to the mitochondrial outer membrane, apparently by a putative transmembrane domain, where it exerts its function. In this work we have identified a 27mer peptide supposed to be the putative membrane domain of the protein at the C-terminal region, and used infrared and fluorescence spectroscopies to study its secondary structure as well as to characterize its effect on the physical properties of phospholipid model membranes. The results presented here showed that the C-terminal region of Hrk adopts a predominantly α-helical structure whose proportion and destabilization capability varied depending on phospholipid composition. Moreover it was found that the orientation of the α-helical component of this C-terminal Hrk peptide was nearly perpendicular to the plane of the membrane. These results indicate that this domain is able of inserting into membranes, where it adopts a transmembrane α-helical structure as well as it considerably perturbs the physical properties of the membrane.  相似文献   
974.
The response of clonal growth and ramet morphology to water depth (from 60 to 260 cm) and sediment type (sand versus organic clay) was investigated for the stoloniferous submersed macrophyte Vallisneria natans in an outdoor pond experiment. Results showed that water depth significantly affected clonal growth of V. natans in terms of clone weight, number of ramets, number of generations, clonal radius and stolon length. V. natans showed an optimal clonal growth at water depths of 110–160 cm, but at greater depths clonal growth was severely retarded. A high allometric effect was exhibited in ramet morphology. Along the sequentially produced ramet generations, ramet weight and plant height decreased while stolon length and the root:leaf weight ratio increased. When using ramet generations as covariate, sediment type rather than water depth more strongly affected the ramet characteristics. For plants grown in clay, ramet weight, ramet height and stolon length were greater, and plants exhibited lower root:leaf weight ratio. These data suggest that water depth and sediment type have differential effects on clonal growth of V. natans: Water depth appears primarily to affect numerical increase in ramets and spatial spread, whereas sediment type mainly affects biomass accumulation and biomass allocation. Handling editor: S. M. Thomaz  相似文献   
975.
Low dissolved oxygen (DO) levels often occur during summer in tidal creeks along the southeastern coast of the USA. We analyzed rates of oxygen loss as water-column biochemical oxygen demand (BOD5) and sediment oxygen flux (SOF) at selected tidal creek sites monthly over a 1-year period. Ancillary physical, chemical and biological data were collected to identify factors related to oxygen loss. BOD5 rates ranged from 0.0 mg l?1 to 7.6 mg l?1 and were correlated positively with organic suspended solids, total suspended solids, chlorophyll a concentrations, temperature, and dissolved oxygen, and negatively with pH and nitrate + nitrite. SOF rates ranged from 0.0 to 9.3 g O2 m?2 d?1, and were positively correlated with temperature, chlorophyll a, and total suspended solids, but negatively with dissolved oxygen. Both forms of oxygen uptake were seasonally dependent, with BOD5 elevated in spring and summer and SOF elevated in summer and fall. Average oxygen loss to sediments was greater and more variable than oxygen loss in the water column. Oxygen deficits at three of five locations were significantly related to BOD5 and SOF, but not at two sites where ground water discharges were observed. Correlation and principal component analyses suggested that BOD5 and SOF responded to somewhat different suites of environmental variables. BOD5 was driven by a set of parameters linked to warm season storm water inputs that stimulated organic seston loads, especially chlorophyll a, while SOF behaved less strongly so. Runoff processes that increase loads of organic material and nutrients and ground water discharges low in dissolved oxygen contribute to occurrences of low dissolved oxygen in tidal creeks.  相似文献   
976.
The classical model of colony dynamics developed by Macevicz and Oster predicts that optimal colony fitness in annual eusocial insects is achieved by a bang-bang strategy of reproduction: exclusive production of workers (ergonomic phase) followed by exclusive production of sexuals (reproductive phase). We propose an alternative model that assumes colony development in discrete broods and a limited overall investment potential of the queen. Based on the costs for producing eggs, workers, and sexuals and efficiency of individuals we predict the optimal number of workers and sexuals in the colony for each brood of the colony cycle that maximizes overall colony fitness. To link our model assumptions to the real world we chose model parameters according to field data of the halictid bee Lasioglossum malachurum. However, our model is representative of a large number of species with an annual life cycle and with discrete broods. Our model shows that the optimal partitioning of resources, i.e. the optimal workers/sexuals ratio depends on rearing cost for sexuals as well as productivity of workers but not on the queens’ total investment, egg cost, or rearing cost for workers. In complete accordance to Macevicz and Oster we predict a bang-bang reproduction strategy despite the differences in the basic assumptions. Potential deviations from this strategy and transitions from social to solitary breeding are discussed in the framework of our model. Received 31 October 2006; revised 29 March 2007; accepted 17 April 2007.  相似文献   
977.
对河西走廊荒漠植物的群落类型、盖度、密度、重要值、地上生物量等进行了调查,收集整理各区域的气候资料,对它们的关系进行了初步研究。结果显示:(1)物种种类组成、总密度与海拔、经度呈正相关,与纬度呈负相关,在走廊的东南→西北方向上呈递减趋势。(2)在活动积温(>10℃)>3 200℃的荒漠地区,灌木(包括半灌木)在群落中占有绝对优势,其重要值可达到100;当活动积温在3 000℃左右时,群落往往是一些过渡类型,或以草本为优势种、以半灌木或灌木为伴生种,或以半灌木为优势种、以多年生草本为伴生种。(3)在年降水量110 mm以上的荒漠地区,植物群落生活型主要为半灌木或多年生草本;在年降水量110 mm以下的地区,生活型主要为小灌木或一年生草本;在年降水量小于50 mm的极端干旱地区,只有在雨季时有一年生草本生长。表明荒漠生态系统植被稀疏,生物量小,对气候因子,特别是降水变化敏感,对其保育显得尤为重要。  相似文献   
978.
本文通过选用特定的吸附柱层析活性炭纯化油茶皂苷。以总皂苷的得率及纯度为考察指标,确定活性炭吸附柱层析富集油茶总皂苷的性能、洗脱参数及再生使用情况。结果表明,水洗之后再以90%乙醇洗脱较好;香草醛.浓硫酸为检测方法检测下,总皂苷解吸得率为62.9%,总洗脱率为92.4%,纯度为50.1%以上;该类柱层析活性炭在分离纯化及脱色方面作用较显著,工艺简便、成本低,适合工业化生产。  相似文献   
979.
在暗培养条件下,黄芩愈伤组织生长和次级代谢物合成的最佳培养条件:在基本培养基MS中氮源浓度为60mmol/L(NH4 ∶NO3-为1∶1),KH2PO41.5mmol/L,附加80g/L蔗糖,0.3mg/LIAA、2mg/L6-BA和200mg/L蛋白胨,(25±1)℃。培养40d后收获愈伤组织生物量达28.7g/L,总黄酮的含量为354.6mg/g,黄芩苷的含量为167.4mg/g。并发现蔗糖作为一种最佳碳源,在黄芩次级代谢物合成过程中起着至关重要的作用。  相似文献   
980.
葡萄叶中总黄酮的提取工艺研究   总被引:1,自引:0,他引:1  
张纵圆  彭秧 《生物技术》2007,17(6):58-60
目的:从葡萄叶中提取总黄酮。方法:采用正交试验法研究葡萄叶总黄酮的最佳提取工艺条件,考察了乙醇浓度、回流温度、回流时间及料液比四因素对葡萄叶总黄酮提取率的影响。结果:确立了葡萄叶总黄酮最佳提取条件为:45%的乙醇为溶剂、液料比为1:40、提取温度为60%、提取时间2h,在最佳工艺条件下葡萄叶总黄酮含量为5.329mg/g。  相似文献   
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