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141.
根据威海市区黑松林的调查结果,分析了该群落的组成和结构特征。在11500m2的样地里有维管束植物105种,它们隶属于39科89属,其中被子植物37科;裸子植物1科;蕨类植物1科。该群落以单种科和寡种科占绝大多数,单种属有75种,占总数的71%,种数大于2的有13科,占总数的33%。该群落分为乔木层、灌木层及草本层3个层次,乔木层主要以黑松Pinusthunbergli、麻栎QuercusacutissimaCarr.等种类组成,灌木层主要以麻栎组成,草本层种类较少,以禾本植物为主。该群落中、高位芽植物占优势,缺乏隐芽植物。叶型以中、小型叶为主,缺乏大型叶植物。TWINSPAN将115个样方分为11个群落类型。调查结果表明本地区黑松林群落结构简单,不同黑松林群落结构差异较小,且物种丰富度低,是人为干扰强烈所致。  相似文献   
142.
大气CO2体积分数升高对油松叶片光合生理特性的影响   总被引:2,自引:0,他引:2  
近年来大气CO2体积分数不断升高,虽然CO2体积分数升高对植物影响的研究已取得一定进展,但目前针对城市森林树种的相关研究甚少。利用开顶式气室研究了大气CO2体积分数升高对沈阳市城市森林主要树种油松(PinustabulaefomisCarr.)光合生理特性的影响。结果表明,整个生长季内,与对照相比,在大气CO2体积分数为700×10-6条件下,油松叶片的Chla、Chlb及Chl(a b)质量分数提高,Chla/Chlb值降低,而类胡萝卜素质量分数则呈现出降低—升高—降低的趋势;整个处理期间,净光合速率显著提高,提高幅度为23.68%~133.18%(P<0.05或P<0.01);可溶性蛋白质量分数增加,并随着处理时间延长增加幅度增大,在通气40d时就达到差异极显著水平(P<0.01);大气CO2体积分数升高促进了油松叶片中可溶性糖、淀粉的积累;实验中并未观察到光合下调现象。  相似文献   
143.
铈对马尾松离体胚DNA、RNA及蛋白质合成的影响   总被引:2,自引:0,他引:2  
用含30mgL^-1CeCl3的培养瘁培养马尾松离体胚,采用^3H-T、^3H-U和^3H-Leu标记技术测定:结果表明,CeCl3明显提高马尾松离体胚在培养过程中对DNA、RNA和蛋白质前体的吸收,以及合成这些生物大分子的能力。CeCl3处理在15h开始迅速吸收DNA前体和合成DNA,比CK提前5h。CeCl3处理在10h开始迅速吸收RNA前体和合成RNA,比CK提前5h,CeCl3处理5h,蛋白质合成前体的吸收量和蛋白质合成量明显高于CK。图6参19  相似文献   
144.
IntroductionItisgenerallyassumedthatacidrain,biosphericozone,metalfalloutorsomeotherpollutantscauseforestdeclinethroughphytotoxemiaswhichshowspecificsymptomsofdisease.Ithasbeenshownexperimentallythatsuchdiseasesymptomsmayreallydevelopintreeswhentheya…  相似文献   
145.
In the Crimea Mountain population of Pinus pallasiana D. Don, the genetic structure of adult plants and embryos was studied along an elevation gradient (150, 400, 600, and 900 m a.s.l.). Ten polymorphic loci of six enzyme systems were examined. The degree of differentiation of plants from different elevations and their progeny with respect to genetic structure proved to be low, indicating the absence of strict isolation barriers that would interfere with gene flow along the elevation gradient.  相似文献   
146.
Chinese pine, Pinus tabulaeformis Carr., a species that ranges broadly across northeastern to southwestern China, plays a vital role in the maintenance of the structure and function of these ecosystems. In this study, we examined the genetic diversity of five widespread populations in Shanxi Plateau, the distribution center of Chinese pine, using 15 random amplified polymorphic DNA (RAPD) primers and five inter simple sequence repeat (ISSR) primers in 140 individual tree samples. Similar genetic differentiation results were obtained from the data of RAPD and ISSR. Based on the two sets of data, Nei’s genetic diversity was 0.2842 and 0.3078 and Shannon’s indices of diversity were 0.4332 and 0.4468. Genetic diversity at the species level was found high relative to that for other genera of Pinaceae. The greatest diversity was observed in the Lingkong Mountain population (0.3860), while the lowest was recorded in the Luya Mountain population (0.3352), most likely as a result of natural adaptation and anthropogenic perturbation. The relative magnitude of differentiation among populations (G ST) was 0.1491 and 0.1356, respectively, implying that most genetic variation was within the populations (∼0.8509), rather than among populations. Published in Russian in Ekologiya, 2008, No. 1, pp. 36–42. The article was translated by the authors.  相似文献   
147.
Polycyclic aromatic hydrocarbons (PAHs) comprise an important group of air pollutants, with three-ring components (PAH-3) often dominating. Spatiotemporal variation in atmospheric PAH-3 can be analyzed by biomonitoring but high vapour pressure and low octanol-air-partitioning of PAH-3 cause dynamic accumulation on plant surfaces. This study for the first time shows that PAH-3 exhibit systematic accumulation trends on pine needles of 3-48 months of exposure time at six sites in Germany. Correlation of needle exposure time with PAH-3 concentration was r2 = 0.83 for phenanthrene and methylphenanthrenes, r2 = 0.77 for cyclopenta[def]phenanthrene, r2 = 0.60 for dibenzothiophene, r2 = 0.57 for dimethylphenanthrenes and r2 = 0.32 for retene. Variations in PAH-3 for summer and winter collected needles emphasize vegetation-air-partitioning influence on cumulative PAH-3 loads. PAH-3 ratios calculated for needle cohorts indicate persistence of original PAH patterns thus demonstrating the source-diagnostic potential of pine needle biomonitoring, which is utilized in part II of this study where spatial distribution of PAH-3 is investigated and related to emission sources.  相似文献   
148.
Changes of genetic structures due to viability selection are likely to occur in populations exposed to rapidly and extremely changing environmental conditions after catastrophic events. However, very little is known about the extent of selective responses and in particular the proportion of the genome involved in putatively adaptive reactions for non-model plants. We used amplified fragment length polymorphisms (AFLPs) in order to investigate genetic differences between pine (Pinus sylvestris) trees which were partially exposed to extreme environmental conditions. Genetic variation patterns of pines exposed to high radiation in the Chernobyl exclusion zone with or without phenotypic stress symptoms were compared to control trees with a similar origin. Six percent of the investigated loci (15 of 222 loci) were identified as candidates for selective responses. Moderate differentiation was observed between groups of trees showing either weak or strong phenotypic responses to high radiation levels.  相似文献   
149.
黄河流域秦岭主要林分凋落物的水文生态功能   总被引:16,自引:0,他引:16  
用水量平衡场和收获法研究了秦岭松栎林带主要林型凋落物在生态系统水分循环和营养循环中的功能。26龄锐齿栎林、24龄油松林和24龄华山松林凋落物现存量平均值为17.475t/hm2,排序为华山松林>油松林>锐齿栎林。3种林分年凋落物平均值为4.179t/hm2,前者是后二者的1.4倍,但凋落物现存量不及后二者一半。生长季节,3种林分凋落物层蓄留量平均值为44.81mm,占同期大气降水量的4.47%,阔叶林较针叶林高。地面蒸发量及其蒸发率为:无林裸地>阔叶林地>针叶林地,无凋落物覆盖>凋落物覆盖;针叶林地表蒸发季节变化相对稳定,阔叶树的变化较大。3种林分凋落物N、P、K、Ca和Mg含量平均值分别为1.08%、0.07%、0.37%、1.37%和0.21%,锐齿栎林较大,油松林和华山松林则差异不大。凋落物主要营养元素积累量平均值为502.5kg/hm2,排序为:油松林>华山松林>锐齿栎林。锐齿栎林、油松林和华山松林5种营养元素年吸收量、归还量分别为334.4kg/hm2和147.2kg/hm2,195.5kg/hm2和66.9kg/hm2及138.8kg/hm2和80.4kg/hm2,不同林分营养元素的年吸收量和归还量也存在一定差异。锐齿栎林不仅对林地营养元素要求较高,而且循环较快。  相似文献   
150.
在秦岭南坡火地塘林区天然次生油松林内选取上、中、下3个坡位,采用静态箱-气相色谱法对土壤CO_2、CH_4、N_2O通量进行了1年的监测.结果表明,坡位间土壤质地和水分的差别是引起不同坡位CO_2与N_2O通量差异的主要原因:下坡位土质为壤土,水分适宜,CO_2平均排放量为(156.49±9.72)mg·m~(-2)·h~(-1),CH_4平均吸收量为(77.43±14.27)μg·m~(-2)·h~(-1),都处于3个坡位间最高水平;中坡位土质为粉砂壤土,土壤粒径小,透气性差,CO_2排放量和CH_4吸收量均为3个坡位间的最小值,N_2O平均排放量为(9.57±0.66)μg·m~(-2)·h~(-1),为3个坡位间的最高值,且显著高于上坡位土壤N_2O通量(p0.01);上坡位土质为砂壤土,土壤孔隙度大且地表植被少,N_2O平均排放量为(5.59±0.74)μg·m~(-2)·h~(-1),为3个坡位间的最小值.总体来说,油松林土壤是CO_2、N_2O的排放源,是CH_4的吸收汇.3个坡位CO_2年通量具有明显的季节规律,表现为倒"S"形变化,且与土壤温度显著正相关(p0.01).受冻融循环的影响,N_2O主要在非生长季大量排放;生长季末期,受降雨事件影响,油松林中坡位出现N_2O吸收峰值.生长季上、下坡位CH_4吸收峰值的出现同样伴随着降雨事件的发生,非生长季,中坡位因土壤水分过高而出现短暂的CH_4排放现象.不同坡位土壤温室气体的全球增温潜势(Global Warming Potential,GWP)从大到小依次是上坡位、下坡位和中坡位.  相似文献   
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