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101.
用反相高效液相色谱法,以0.02mol醋酸铵-乙腈为流动相和梯度洗脱模式,从灰花纹鹅膏菌中分离纯化出三羟鹅膏毒肽(amanin),产品纯度达96%以上,三羟鹅膏毒肽的分子量为903.3.  相似文献   
102.
切断匍匐茎对臭柏叶绿素荧光特性的影响   总被引:9,自引:2,他引:9  
用荧光测定仪 (MINI-PAM)测定了切断匍匐茎对臭柏叶绿素荧光特性的影响。结果表明 :匍匐茎被切断前 (8月 15日 ) ,备切断处理的小枝与对照的PSⅡ实际光化学量子产量 (ΔF F′m)、表观光合电子传递速率 (ETR)及非光化学猝灭 (NPQ)值 ,除在 15 :0 0差异显著 (P <0 0 5 )外 ,其他时段差异不显著。切断匍匐茎处理第一天 (8月 16日 ) ,9:0 0和 18:0 0切断匍匐茎处理小枝的ΔF F′m 与对照间的差异显著 (P <0 0 5 ) ,9:0 0较对照平均低约 2 5 % ;ETR与对照间的差异虽不显著 ,但平均降幅达 13% ,午后差值减小 ;NPQ在 9:0 0和 12 :0 0与对照间的差异显著 (P<0 0 5 ) ,午前平均增幅高达 4 7% ,午后平均增幅减至 15 %。 8月 2 4日 ,切断匍匐茎处理小枝的ΔF F′m 与对照小枝之间差异显著率约为 33% (P <0 0 5 ) ,ETR的差异显著率约为 4 3% (P <0 0 5 ) ,NPQ的差异显著率约为 5 8% (P <0 0 5 )。 8月 2 4日切断匍匐茎处理样枝的气孔导度在 8:30仅为对照的 30 %左右 ,12 :0 0为 36 % ,12 :0 0后二者间的差距逐渐缩小 ,较对照平均约低 39%。 8月 19日切断匍匐茎处理样枝各部位的Fv Fm 值与对照间差异不显著 (P>0 0 5 ) ,表明不定根在消除切断匍匐茎所造成的不利干扰中发挥了明显的作用。  相似文献   
103.
近年来由于不可再生资源的日益枯竭,以及全球能源危机等问题,生物质资源的研究和利用受到人们的广泛关注。以往材料的制备与合成往往以石油及其衍生物为原料,过程繁琐、成本高昂、原料不可再生,且对生态环境造成了不可逆转的破坏,而生物质基材料因绿色、可再生、环境友好等,其设计与构筑已成为基础科技研究的前沿与热点。在过去的研究中,国内外学者以相关生物质为基础构筑“基石”,利用其本征结构及特性原位合成或与异质单元复合,构筑了大量的功能光学材料。功能光学材料的应用领域包括但不限于催化、光动能转换、生物成像、光电器件、海水淡化、信息防伪等。笔者对生物质基光学功能性材料方面的代表性成果进行梳理与总结,主要包括林木芳香生物质荧光材料、多糖生物质荧光材料、林木生物质光热材料、纳米纤维素光子晶体材料、生物质基光热材料,以及以上材料在食品检测、生物成像、加密打印、发光器件、光 热 动能转换领域中的应用,并且对该领域内存在的问题及未来发展方向作了展望。  相似文献   
104.
This paper took the upper-lower wide belt sander B229 with four-feet wide belts, manufactured in China, as the study target. By means of framework dynamic design, we study its vibration characteristics by commencing from the place having horizontal defects and used experimental modal analysis (EMA) and power spectrum density (PSD) to observe the sanding parts and the whole machine, respectively. In the modal test, we mainly adopted the cross spots testing method to get the frequency response function of the fixed spots to every excitation vibration spot, then applied the SISO frequency response function and the frequency response function fitting method to identify and complete parameter recognition, respectively. The typical frequency response function chart of the whole machine and its sanding parts, as well as its second-order mode charts of contacting roller, were obtained. Through PSD analysis, we can get the amplitude-frequency spectrum and drive frequency. Translated from Scientia Silvae Sinicae, 2005, 41(6): 132–137 [译自: 林业科学]  相似文献   
105.
白杨派杂种无性系及其亲本光合和生长对盐胁迫的反应   总被引:13,自引:0,他引:13  
以白杨派单交和双交杂种无性系1年生扦插苗为材料,分析不同盐胁迫条件下无性系的生长及光合系统的反应,并对无性系间的差异进行比较.研究表明:盐胁迫对叶片生长、苗高生长及苗木生物量积累均产生不同程度的影响.随着盐浓度升高,各项生长指标迅速下降,但下降的幅度不同,苗木生物量积累受影响最大.茎叶生长对盐胁迫的敏感性大于根系生长,从而导致根/(茎 叶)生物量随盐胁迫的发展而升高.盐胁迫下4个无性系的净光合速率(Pn)日变化基本上都呈单峰曲线,但随胁迫加强,Pn值迅速降低.盐胁迫下,叶位从幼到老,Pn表现为单峰型变化,中部功能叶Pn值最大,嫩叶和老叶较小,盐胁迫对无性系嫩叶Pn几乎无影响,却显著降低中部功能叶和老叶的Pn值,且随着胁迫时间延长,对叶片Pn的影响加强.盐胁迫降低各无性系的叶绿素含量,且使叶绿素荧光诱导动力学曲线发生明显变化,其参数qN(荧光非光化学猝灭系数)值随盐浓度增加而上升,而qp(荧光光化学猝灭系数)、Fv/Fo(PSⅡ潜在活性)值随盐浓度增加而下降.盐胁迫对双交杂种无性系B430影响最小,单交无性系毛新杨和亲本新疆杨次之,亲本毛白杨对盐胁迫反应最敏感.  相似文献   
106.
夏季遮荫改善大田牡丹叶片光合功能的研究   总被引:24,自引:0,他引:24  
利用气体交换和叶绿素荧光分析技术,研究大田牡丹叶片在自然光照和夏季遮荫处理下光合作用日变化.结果表明:自然光下夏季牡丹叶片的净光合速率(Pn)明显低于春季,2个生长季节Pn日变化差异明显,即春季的Pn日变化呈"单峰型"曲线,夏季的Pn日变化为"双峰型"曲线,有明显的光合"午休";羧化效率(CE)变化趋势与Pn相似;表观量子效率(AQY)中午降低,下午逐渐回升;光系统Ⅱ(PSⅡ)最大光化学效率Fv/Fm和最大荧光Fm日变化为倒"单峰型"曲线,中午明显降低;与夏季自然光下相比,夏季遮荫处理(遮光50%)的牡丹叶片Pn、AQY、CE升高;气孔限制值(Ls)和叶温(t1)降低;Fv/Fm和Fm中午下降幅度显著减小.这些结果说明:夏季晴天中午高温、强光下,牡丹叶片PSⅡ反应中心发生了可逆失活,PSⅡ功能下调,光合作用的光抑制明显发生,遮荫可减轻光抑制,改善光合功能以增加光合产物积累.  相似文献   
107.
尚德库 《林业研究》1997,8(1):54-58
lNTRoDUCTIONTheon-sitcnon-dcstructit'cmcasurcl11cntofu.oodmoisbocontcntattTactsgrcatintcrcsts.Itpla3'simpor-tantpartsinthescicntificrcscarchsucl1asonthchcatandmasstransportproccssesint"ooddri'ing.thcim-pregnationofliquidinxt'ood.thcmoisturccontcntdistri-b…  相似文献   
108.
Using attached and detached leaves ofAcer palmatum Thunb. andRhaphiolepsis umbellata Makino, pulse-modulated chlorophyll fluorescence and CO2 exchange were measured. Quantum yield of photosynthesis was determined from the fluorescence parameter(Fm′−Fs)/Fm′, where (Fm′−Fs) was defined as the difference between steady state chlorophyll fluorescence (Fs) and maximum fluorescence (Fm′) elicited by a saturating light pulse. The rate of electron transport through photosystem II (total electron flow) was calculated from the product of quantum yield andA (PFD), whereA is the rate of absorbed photons as given by leaf absorptance, and PFD is the photon flux density at the leaf surface. The rate of electron transport dependant on CO2 uptake (assimilative electron flow) was calculated from the gross photosynthetic rate in a leaf. The difference between the rates of total and assimilative electron transport was denoted as the rate of non-assimilative electron transport which depends on photorespiration and oxygen reduction. Available data provided quantitative information on the rate of non-assimilative electron flow in intact leaves. When leaf photosynthesis ofA. palmatum was measured under sunlight, the rates of total and assimilative electron transport were determined to be approximately 900 and 150 μmol equiv. e/mg Chl·h, respectively. The difference (750 μmol equiv. e/mg Chl·h) was attributed to the activity of non-assimilative electron flow. The ratio of total to assimilative electron flow was found to increase gradually with rising in irradiance. The results suggest that non-assimilative electron flow occurred at much higher rate than assimilative electron flow at high irradiance. Implications of the results are briefly discussed in relation to photosynthesis limitation in tree leaves.  相似文献   
109.
Heiskanen  Juha 《New Forests》2004,27(2):101-114
Norway spruce (Picea abies (L.) Karst.) is shade-tolerant and sensitive to high irradiance, summer frosts and winter desiccation, which can impair its reforestation success. In this study, artificial pre- and post-planting shading was examined to determine their effects on post-planting shoot and root growth as well as the vigor of one- and two-year-old Norway spruce seedlings. Three planting experiments were carried out on open nursery fields (Exp. 1, 2) and on a mounded forest clearcut in central Finland (Exp. 3). Before planting, the seedlings were stored over winter either in a freezer or on open fields under snow cover. For two weeks prior to planting, half of the seedlings were placed in the open and the other half under a horizontal shade netting (light transmittance 56 %) (Exp. 1, 2). All seedlings were planted with or without a vertical post-planting shade, which was located on the southern side. Post-planting shading enhanced shoot growth and reduced damage (better visual vigor and needle color and less pine-weevil damage) on Norway spruce seedlings for at least two years after planting (Exp. 2, 3). Those seedlings, that had been stored over winter in the open and kept in shade prior to planting seemed to benefit most from post-planting shading (Exp. 2). However, post-planting shading may give variable results, depending on the seedling quality and weather conditions after planting, and may even reduce shoot growth if no pre-planting shading is used (Exp. 1). Shoot growth may also be improved at the expense of root growth (Exp. 3). The costs of manufacturing and installing post-planting shades may limit their use in practice, for example, to selected regeneration sites where there is high risk of frost damage but where no alternative silvicultural procedure (shelterwood or nurse crop) has been used.  相似文献   
110.
Lignin Characterization of Triploid Clones of Populus tomentosa Carr.   总被引:2,自引:0,他引:2  
In order to understand the structural characteristics of lignin in triploid clones ofPopulus tomentosa and its changes in the processes of pulping and bleaching, milled wood lignin (MWL), lignin carbohydrate complex (LCC) and the residual lignin from kraft pulp (KP) and sulfite pulp (SP) were isolated and analyzed by Fourier transform infrared (FTIR) spectrum and ^13C nuclear magnetic resonance (NMR). The most diagnostic peaks were assigned and the differences were discussed. The spectral patterns reveal that triploid P tomentosa shows the specific features of hardwood from temperate areas, but in the spectrum of FTIR, the strength ratio orAl270 cm^-1 to A1226 cm^-1 is 0.88, higher than the average of hardwood from temperate areas, which will make the lignin delignification more difficult during pulping and bleaching. The LCC from triploid P tomentosa is mainly composed of xyloglucan and glucuronic acid, and other glucides have much lower ratio. In LCC FTIR, there are three peaks at 1 427, 1 329 and 1 046 cm^-1, indicating that both semi-cellulose and cellulose could exist in LCC, and that there might be relationships between cellulose and lignin. Compared with the residual lignin from KP and SP, the condensed structure in KP is more than that in SP.  相似文献   
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