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71.
Adams HD  Kolb TE 《Oecologia》2004,140(2):217-225
We sought to understand differences in tree response to meteorological drought among species and soil types at two ecotone forests in northern Arizona, the pinyon-juniper woodland/ponderosa pine ecotone, and the higher elevation, wetter, ponderosa pine/mixed conifer ecotone. We used two approaches that provide different information about drought response: the ratio of standardized radial growth in wet years to dry years (W:D) for the period between years 1950 and 2000 as a measure of growth response to drought, and 13C in leaves formed in non-drought (2001) and drought (2002) years as a measure of change in water use efficiency (WUE) in response to drought. W:D and leaf 13C response to drought for Pinus edulis and P. ponderosa did not differ for trees growing on coarse-texture soils derived from cinders compared with finer textured soils derived from flow basalts or sedimentary rocks. P. ponderosa growing near its low elevation range limit at the pinyon-juniper woodland/ponderosa pine ecotone had a greater growth response to drought (higher W:D) and a larger increase in WUE in response to drought than co-occurring P. edulis growing near its high elevation range limit. P. flexilis and Pseudotsuga menziesii growing near their low elevation range limit at the ponderosa pine/mixed conifer ecotone had a larger growth response to drought than co-occurring P. ponderosa growing near its high elevation range limit. Increases in WUE in response to drought were similar for all species at the ponderosa pine/mixed conifer ecotone. Low elevation populations of P. ponderosa had greater growth response to drought than high-elevation populations, whereas populations had a similar increase in WUE in response to drought. Our findings of different responses to drought among co-occurring tree species and between low- and high-elevation populations are interpreted in the context of drought impacts on montane coniferous forests of the southwestern USA.  相似文献   
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73.
濒危植物秦岭冷杉结实特性的研究   总被引:18,自引:1,他引:17       下载免费PDF全文
秦岭冷杉 (Abieschensiensis) 是松科冷杉属常绿乔木, 为我国特有珍稀濒危植物。该文在秦岭冷杉分布最为集中的秦岭地区分高、低 2个海拔高度采集当年球果和种子, 通过野外观察、室内实验和对比分析, 研究秦岭冷杉的结实特征以及球果和种子的基本性状, 并探讨这些特征在不同海拔高度的差异。结果表明, 与冷杉属其它树种相比, 秦岭冷杉球果和种子较大、单果种子数较多, 但空粒多、饱满度低。自然状况下饱满度为 12.0 %, 人工目视分选后饱满度 2 1.6 %, 风选后可达到 38.1%, 其余种子大部分为空粒、涩粒, 有少量虫粒。随海拔高度增加, 秦岭冷杉天然群体成龄个体中结实母树比例降低, 结实量减少。秦岭冷杉总体结实母树比例为 5 5 %, 低海拔处结实母树比例较高, 为 76 %, 高海拔结实母树比例为 34%。秦岭冷杉单株母树的平均结实量为 113个, 结实量小于 10 0个的母树占 6 4.5 %, 其中 5 0 %的母树结实量在 5 0~ 10 0个, 结实量在 10 0~ 2 0 0个的占 16.1%, 2 0 0个以上的占 19.4 %。 2 0 0个以上球果的个体均生长在低海拔区间, 高海拔处结实量多在 10 0个以下。方差分析表明, 两个海拔高度间球果和种子特征差异是显著的, 绝大部分球果和种子性状指标的平均值在低海拔处大于高海拔处。因此, 从结实特性以及球果和种子的特征来看, 低海拔处秦岭冷杉生殖生长好于高海拔处。  相似文献   
74.
The major initial triaging decision in acute coronary syndrome (ACS) is whether or not percutaneous coronary intervention (PCI) is the primary treatment. Current guidelines recommend primary PCI in ST-elevation ACS (STEACS) and initial antithrombotic therapy in non-ST-elevation ACS (NSTEACS). This review probes the question whether this decision can indeed be based on the ECG. Genesis of STE/NSTE ECGs depends on the coronary anatomy, collateral circulation and site of the culprit lesion. Other causes than ischaemia may also result in ST-segment changes. It has been demonstrated that the area at risk cannot reliably be estimated by the magnitude of the ST change, that complete as well as incomplete occlusions can cause STE as well as NSTE ECGs, and that STE and NSTE patterns cannot differentiate between transmural and non-transmural ischaemia. Furthermore, unstable angina can occur with STE and NSTE ECGs. We conclude that the ECG can be used to assist in detecting ischaemia, but that electrocardiographic STE and NSTE patterns are not uniquely related to distinctly different pathophysiological mechanisms. Hence, in ACS, primary PCI might be considered regardless of the nature of the ST deviation, and it should be done with the shortest possible delay, because ‘time is muscle’.  相似文献   
75.
Tree growth is largely driven by climate conditions in arid and alpine areas. A strong change in climate from warm-dry to warm-wet has already been observed in northwest China. However, little is known about the impacts of regional climate variability on the radial growth of trees along elevations of the eastern Tianshan Mountains. Consequently, we developed three tree-ring width chronologies of Schrenk spruce (Picea schrenkiana Fisch. et Mey.) ranging in elevation from 2159 to 2552 m above sea level (a.s.l.), which play an important role in the forestry ecosystem, agriculture, and local economy of Central Asia. In our study, the correlation analyses of growth-drought using the monthly standardized precipitation-evapotranspiration index (SPEI) at different temporal scales demonstrated that drought in growing season was the main factor limiting tree growth, regardless of elevation. The relationships between radial growth of Schrenk spruce and main climate factors were relatively stable by moving correlation function, and the trend of STD chronologies and basal area increment (BAI) also showed a synchronous decline across the three elevations in recent decades. And meanwhile, slight differences in responses to climate change in radial growth along elevations were examined. The drought stress increased as elevations decreased. Radial growth at the higher elevation depended on moisture availability due to high temperature, as indicated by the significant negative correlation with mean temperature in the late growing season of the previous year (August-September, p < 0.001). However, radial growth at the lower elevation were restricted by drought stress due to less precipitation and higher temperatures, as demonstrated by the significant negative correlation with mean temperature but positive with total precipitation in the early growing season of the current year (April-May, p < 0.05). In addition, the decline of radial growth (BAI) at the higher elevation (3.710 cm2 yr−1/decade, p < 0.001) was faster than that of the middle elevation (2.344 cm2 yr−1/decade, p < 0.001) and the lower elevation (3.005 cm2 yr−1/decade, p < 0.001) since 2000, indicating that the trees at higher elevation of a relatively humid environment were more susceptible to the effects of climate change due to their poor adaptability to water deficit. Therefore, the forest ecosystems would be suppressed as a result of increasing drought stress in the future, especially in the high-elevation forests of arid and semi-arid areas.  相似文献   
76.
77.
Abstract. Secondary succession and seed bank formation was studied in a formerly grazed, abandoned, eastern Hungarian sandy steppe‐meadow (Pulsatillo‐Festucetum). The vegetation was sampled at different elevations of a sand dune which became partly invaded by the tree Robinia pseudo‐acacia ca. 10 yr ago. Pre‐abandonment vegetation records were used as historic references. Though composition of the non‐invaded grassland only changed moderately, dominance of tall grasses (Elymus hispidus, Poa angustifolia) increased significantly at the cost of annuals and low stature perennials. In the stand invaded by Robinia most grassland species were lost and replaced by nitrophytes. Vertical position influenced species abundance, but affected the composition only moderately. Fine‐scale zonation of the vegetation also changed with time. Species richness of the above‐ground vegetation and the seed density of soil samples at the lower elevation were slightly greater than at the higher sites. Seed banks of sensitive grassland specialists (e.g. Pulsatilla pratensis subsp. hungarica) disappeared during grass encroachment. Following extinction from above‐ground vegetation, restoration must rely on dispersal from adjacent areas. In contrast, several annuals and perennials, which survived this degradation stage in the above‐ground vegetation, possessed seed banks. Many of these species became extinct from the vegetation during the Robinia invasion but left viable persistent seeds. This fact is promising for restoration of the Potentillo‐Festucetum sandy pasture. Competitive weedy species and sprouting Robinia can, however, limit seedling establishment.  相似文献   
78.
松属的思茅松(Pinus kesiya var. langbianensis)、云南松(P. yunnanensis)和高山松(P. densata)是组成中国西南不同海拔针叶森林的主要树种,然而这三个树种在发育速度尤其是高生长方面表现出明显的差异。为了弄清引起这些变异的生理和形态学原因,本文将三种松树种植于同一环境下,对其光合作用、生物量分配、生长速率和叶片性状进行了研究。研究发现,与来源于高海拔的树种相比,低海拔的树种有更高的株高、以及更大的干物质重量、相对生长速率、叶质比、茎质比和比叶面积,但叶片氮含量、碳含量和根质比较低。高海拔树种的光合速率并不明显低于低海拔树种。相对生长速率和树高均与叶质比呈显著正相关,与根质比负相关,但与最大光合速率没有显著关系。这些结果表明,生物量的分配式样和长期的形态特性能够更好地预测不同海拔松树的生长表现。  相似文献   
79.
种子重量与海拔的关系是植物生态学中重要而尚存争议的问题。本文对中国123科853种2879份野生植物种子的重量在海拔上的变化特点以及二者之间的相互关系进行了深入研究,结果显示:种子重量总体上与海拔呈负相关,种子重量级别多样性和生活型多样性随海拔上升呈阶梯状下降。但7级种子中,只有100级种子的重量与海拔呈负相关;7种生活型中,只有灌木和匍匐草本的种子重量与海拔呈负相关;在种水平上,只有82%的物种种子重量与海拔存在相关性。本研究揭示了我国种子重量与海拔之间的复杂关系,以及遗传和环境对种子重量的影响,对植物育种、森林管理以及入侵植物的防治具有一定指导意义。  相似文献   
80.
陈家亮  夏宇希  曹威  陈凯  王召军 《生物磁学》2014,(8):1500-1502,1506
目的:探讨微伏T波电交替增高与STEMI患者PCI术后室性心律失常的发生关系。方法:选择我院2011年4月-2013年4月收治的68例STEMI患者,所有患者均成功进行了直接PCI,且阻塞远端血流均达到TIMI3级。所有患者于手术后进行了24小时动态心电图检查,并测定微伏T波电交替值。结果:36例发生NSVT患者较未发生32例患者最大微伏T波电交替明显升高,(68.1±6.4VS31.9±3.8μV,P〈0.05)。最大T波电交替值大于45μV预测非持续性室速发生的敏感性为75%,特异性为72%;阳性预测值为70%。阴性预测值77%(AUC=0.84)。经过进一步比较分析发现,ST段抬高的程度与非持续室速的发生无关(AUC=0.61)。结论:微伏T波电交替可预测STEMI患者PCI术后室性心律失常的发生。  相似文献   
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