24 resultados para Picea crassifolia

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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In many plant species, leaf morphology varies with altitude, an effect that has been attributed to temperature. It remains uncertain whether such a trend applies equally to juvenile and mature trees across altitudinal gradients in semi-arid mountain regions. We examined altitude-related differences in a variety of needle characteristics of juvenile (2-m tall) and mature (5-m tall) alpine spruce (Picea crassifolia Kom.) trees growing at altitudes between 2501 and 3450 m in the Qilian Mountains of northwest China. We found that stable carbon isotope composition (delta C-13), area- and mass-based leaf nitrogen concentration (N-a, N-m), number of stomata per gram of nitrogen (St/N), number of stomata per unit leaf mass (St/LM), projected leaf area per 100 needles (LA) and leaf mass per unit area (LMA) varied nonlinearly with altitude for both juvenile and mature trees, with a relationship reversal point at about 3 100 m. Stomatal density (SD) of juvenile trees remained unchanged with altitude, whereas SD and stomatal number per unit length (SNL) of mature spruce initially increased with altitude, but subsequently decreased. Although several measured indices were generally found to be higher in mature trees than in juvenile trees, N-m, leaf carbon concentration (C.), leaf water concentration. (LWC), St/N, LA and St/LM showed inconsistent differences between trees of different ages along the altitudinal gradient. In both juvenile and mature trees, VC correlated significantly with LMA, N-m, N-a, SNL, St/LM and St/N. Stomatal density, LWC and LA were only significantly correlated with delta C-13 in mature trees. These findings suggest that there are distinct ecophysiological differences between the needles of juvenile and mature trees that determine their response to changes in altitude in semi-arid mountainous regions. Variations in the fitness of forests of different ages may have important implications for modeling forest responses to changes in environmental conditions, such as predicted future temperature increases in high attitude areas associated with climate change.

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The disjunct distribution of forests in the Qinghai-Tibetan Plateau (QTP) and adjacent Helan Shan and Daqing Shan highlands provides an excellent model to examine vegetation shifts, glacial refugia and gene flow of key species in this complex landscape region in response to past climatic oscillations and human disturbance. In this study, we examined maternally inherited mitochondrial DNA (nad1 intron b/c and nad5 intron 1) and paternally inherited chloroplast DNA (trnC-trnD) sequence variation within a dominant forest species, Picea crassifolia Kom. We recovered nine mitotypes and two chlorotypes in a survey of 442 individuals from 32 populations sampled throughout the species' range. Significant mitochondrial DNA population subdivision was detected (G(ST) = 0.512; N-ST = 0.679), suggesting low levels of recurrent gene flow through seeds among populations and significant phylogeographical structure (N-ST > GST, P < 0.05). Plateau haplotypes differed in sequence from those in the adjacent highlands, suggesting a long period of allopatric fragmentation between the species in the two regions and the presence of independent refugia in each region during Quaternary glaciations. On the QTP platform, all but one of the disjunct populations surveyed were fixed for the same mitotype, while most populations at the plateau edge contained more than one haplotype with the mitotype that was fixed in plateau platform populations always present at high frequency. This distribution pattern suggests that present-day disjunct populations on the QTP platform experienced a common recolonization history. The same phylogeographical pattern, however, was not detected for paternally inherited chloroplast DNA haplotypes. Two chlorotypes were distributed throughout the range of the species with little geographical population differentiation (G(ST) = N-ST = 0.093). This provides evidence for highly efficient pollen-mediated gene flow among isolated forest patches, both within and between the QTP and adjacent highland populations. A lack of isolation to pollen-mediated gene flow between forests on the QTP and adjacent highlands is surprising given that the Tengger Desert has been a geographical barrier between these two regions for approximately the last 1.8 million years.

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About 214 trees in 9 sampling sites, representing 5 endemic conifer species, were collected from the western Sichuan Province and eastern Qinghai Province, China. In this study, structure we try to investigate tree-ring sensitivity to climate in order to obtain primary information of reconstructing past climate from the trees in this region. All the 5 species present distinct ring boundaries ^ few ABS(absent rings) and available for cross-dating,which are all past the test by program COFECHA. Statistics for all the 8 tree-ring width residual chronologies present significant inter-correlation between series and high values of mean sensitivity. As well as the maximum latewood density of Picea crassifolia Kom and Pinus densata Mast. These results indicate usefulness of these chronologies for dendrochronological studies. Pearson correlation analyses were applied to provide a basic estimate of the causal relationships between tree-ring width and climate factors. We found some significant relationships between tree-ring width> maximum density and temperature as well as precipitation. Especially, there is high correlation between the maximum density of the Picea crassifolia Kom and the index of moisture, the ratio of precipitation and temperature, which can indicate well the climate; however the higher correlation can be see between the maximum density of Pinus densata Mast and the total temperature from June to September. Regardless of tree species, chronologies in our study region presented accordant variations of which may reveal strong common climate signal. Thus these chronologies are shown to be dependable for building tree-ring network in the nearly future. However, there are limitations in this study, only monthly mean of temperature and precipitation were available. Also, for this typical subtropical mountain system, meteorological stations are usually located in valley and biased to represent moisture conditions on the slopes. Thus the estimation of precipitation both in temporal and spatial domain was rather restricted. Further study, such as wood anatomy, physiology and densitometry, are needed for better understanding the environmental and climatic history in this area.

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花粉是种子植物受精过程中雄性生殖细胞的载体,在有性生殖过程中起着非常重要的作用。花粉与柱头、花柱、子房等都有相互作用,起识别作用的是细胞壁蛋白,而花粉粒的壁有明显的两层:内壁和外壁。裸子植物花粉与被子植物相比具有萌发时间长、生长缓慢、授粉-受精时间长等特点。花粉的内壁与外壁在花粉萌发和生长过程中的功能仍然缺乏研究,但是迄今为止现有的分子生物学技术在获得裸子植物花粉壁突变体方面并没有发挥作用。本研究以裸子植物白皮松(Pinus bungeana)和青杄(Picea wilsonii)花粉为材料建立裸子植物花粉脱壁的体系,包 括脱外壁花粉和花粉原生质体的制备,即将花粉的两层壁逐层剥离,并在此基础上进行了细胞学研究。 本文首先建立了裸子植物脱外壁花粉的分离技术。实验表明低浓度的酶组合短暂酶解后,辅以机械研磨,可以释放出大量的脱外壁花粉。其中在这两种裸子植物中的处理稍有不同,白皮松的脱外壁花粉在含12%蔗糖,0.5%纤维素酶和0.3%离析酶的溶液,pH 5.8 ,孵育半小时,辅以一定力度机械研磨的方法获得,而青杄脱外壁花粉的条件是0.8%纤维素酶和0.5%离析酶、12%蔗糖的溶液,其它条件类似。 其次我们成功建立了一种快速、有效、可重复的分离白皮松和青杄花粉原生质体的系统,分离频率可高达70%。对白皮松而言,最好的分离条件是2% 纤维素酶、1.5%离析酶、15%蔗糖、pH 5.8,黑暗、24℃条件下轻微振荡、酶解6 小时。3%纤维素酶和2%离析酶组合比较适宜青杄花粉原生质体的分离,同时需要较低浓度的蔗糖溶液(12%)。青杄花粉原生质体要远大于白皮松花粉原生质体,前者直径为80µm,后者为40µm。强烈的FDA 荧光显示很好的活性。在制备的过程中,酶的浓度、酶的配比、酶解时间、渗透压调节剂、起始材料对分离率都有影响。 运用免疫荧光标记技术显示,脱外壁花粉的表面存在纤维素、果胶质、阿拉伯半乳聚糖蛋白(AGPs)和凝集素结合位点,其中纤维素在整个表面都有分布,但在萌发孔附近的荧光最强;白皮松脱外壁花粉表面有胼胝质的存在,主要位于靠近气囊的部位,而青杄脱外壁花粉表面未能检测到胼胝质;酸性果胶质在白皮松脱外壁花粉靠近萌发孔处的荧光稍弱于其它部位,而在青杄脱外壁花粉的表面近极端的荧光要强于远极端;白皮松脱外壁花粉表面有酯化果胶的沉积,而青杄脱外壁花粉表面缺失酯化果胶;白皮松和青杄两种植物脱外壁花粉表面均有阿拉伯半乳糖的分布,而白皮松脱外壁花粉的荧光要远强于青杄;白皮松和青杄脱外壁花粉表面有伴刀豆凝集素(Conconavalin agglutinin, Con A )和大豆凝集素(soybean agglutinin, SBA )结合位点的分布,而缺失麦胚凝集素(wheat germ agglutinin, WGA)结合位点。另外,傅立叶红外光谱(FTIR) 分析结果也同样支持上述结论。