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1.
根据黄土高原南北样带尺度的人工刺槐林(Robinia pseudoacacia)的年轮宽度资料,分析了该地区刺槐树木生长趋势,以及刺槐年表对气候响应随降雨梯度变化规律。研究结果表明延安以北的刺槐样点(绥德、神木)年轮指数近期趋于下降,树木有生长衰退现象;而延安以南刺槐样点(延安、富县、宜君、永寿)年轮指数近期趋于上升,树木无生长衰退现象。气候响应结果表明,刺槐年表对气候响应均以延安样点最为敏感,表现年表与温度的负相关关系,以及年表与降雨和干旱指数的正相关关系,而延安以北和以南刺槐样点对气候响应敏感性均较低。黄土高原中部延安地区地处森林草原过渡带,刺槐生长对外界环境变化最为敏感,年表中气候信号也较强;延安以南地区地处森林植被带,气候条件较为适宜刺槐林生长,因而年表中气候信号较弱;延安以北地区地处草原植被带,气候条件比较恶劣,刺槐生长对干旱气候已有一定适应性特征,因而年表中气候信号也较弱。  相似文献   

2.
根据北京东灵山辽东栎(Quercus wutaishanica)的年轮宽度资料,分析了该地区树木生长在1951—2010年时段对气候要素的响应特征。相关分析表明,夏季干旱胁迫是限制东灵山辽东栎树木生长的最为重要的气候要素,主要体现在与夏季(7—9月)温度的负相关关系和夏季降雨(7月)的正相关关系,另外春季(5月)温度对树木生长也有一定的限制性影响;年表与生长季节干旱指数普遍呈正相关关系,进一步证实了干旱胁迫对树木生长的限制性作用。滑动相关分析表明,年表与夏季温度负相关关系及与夏季降雨的正相关关系在近期趋于增强,这表明夏季干旱胁迫对树木生长影响作用有不断加强的趋势。辽东栎林是北京东灵山温带落叶阔叶林的优势群落,在暖干化气候不断发展背景下,辽东栎林生长的干旱胁迫效应将更加突出,对北京东灵山地区森林的生产力及固碳能力产生负面影响。  相似文献   

3.
运用树木年轮气候学方法,研究近40年河北坝上地区健康和衰退小叶杨人工林径向生长对气候响应敏感性差异,揭示健康和衰退杨树生长与气候关系的时间变异规律。结果表明:(1)衰退杨树径向生长对温度、降水等气候因素响应较健康杨树敏感。衰退杨树年表中的气候信号较强,与当年生长季(4、8-10月)的气温因素呈显著负相关,与上一年休眠期(9月-当年1月)和当年生长季(7月)的降水和相对湿度呈显著正相关。健康杨树年表中气候信号较弱,主要与上一年冬季(12月)和当年生长季(4月)的气温因素呈显著负相关,与上一年生长末期(8-11月)降水和相对湿度呈显著正相关。(2)从各年表与帕默尔干旱指数(PDSI)的响应强度来看,衰退杨树生长更易受夏季干旱胁迫影响。衰退杨树年表与上一年9月-当年3月、6-10月的PDSI呈显著正相关,而健康杨树径向生长与PDSI呈弱的正相关。(3)1975-2017年间,随气温升高,健康和衰退杨树生长对温度的敏感性下降;健康杨树生长对降水和PDSI的敏感性较为稳定,适应能力强,而衰退杨树生长对降水和PDSI的敏感性增强,适应能力变弱。综上所述,干旱胁迫是限制衰退杨树生长的主要因素,而健康杨树生长受气候影响较弱,能适应当地气候条件。衰退杨树对气候变化响应较健康杨树明显,在气候变暖背景下,衰退杨树生长的气候限制因子由温度转变为水分,导致河北坝上地区遭受干旱灾害时发生退化的趋势更加明显。  相似文献   

4.
为明确黄土高原丘陵区第三副区典型流域-甘肃天水罗玉沟流域刺槐生长过程及其与气候关系随海拔变化的规律。利用树木年代学方法分别建立高、中、低3个海拔刺槐的标准年表,并分析不同海拔刺槐径向生长过程以及对气候变化的响应。研究结果表明:(1)中、低海拔刺槐径向生长与温度因素多为负相关,而高海拔刺槐径向生长与温度因素多呈正相关。高海拔刺槐生长与上一年生长季(6月)、休眠期(当年3—4月)和当年生长季(6月)均温、最低温和最高温呈显著正相关,其中受最低温影响最显著;中、低海拔刺槐与上一年生长季和当年生长季的均温、最高温和最低温呈显著负相关,低海拔受均温影响显著。(2)随海拔升高,刺槐径向生长与降水和相对湿度的正相关呈降低趋势。低海拔刺槐生长与上一年生长季(7—9月)和当年生长季(6—9月)降水、相对湿度呈显著正相关,中海拔刺槐与当年生长季(6—9月)降水、相对湿度呈显著正相关,而高海拔刺槐生长与上一年生长季(6—7月)相对湿度呈显著负相关。(3)低海拔刺槐与上一年6月—当年10月帕默尔干旱指数(PDSI)呈显著正相关;中海拔刺槐与上一年6月和当年2—10月PDSI呈显著正相关;高海拔刺槐与上一年6—...  相似文献   

5.
气候变暖抑制西藏拉萨河大果圆柏树木生长   总被引:5,自引:4,他引:1  
西藏拉萨河作为雅鲁藏布江最大的支流,近几十年气温已显著上升,将可能从不同的程度上影响流域内植被的生长动态。以拉萨河流域主要分布的树种—大果圆柏(Sabina tibetica)为研究对象,采用树木年轮学的方法对大果圆柏进行了年轮采样和处理,建立了树木年表,探讨了大果圆柏过去的生长动态特征,并用相关分析、偏相关分析和滑动相关分析的方法分析了不同气候因子与树木年轮宽度指数的关系。研究结果表明,大果圆柏树木年轮宽度指数与前一年6—10月和当年3—7月的降水、相对湿度和帕默尔干旱指数(PDSI)呈显著的正相关关系,而与前一年6—9月和当年3—8月的平均温度和平均最高温度以及当年5—7月的平均最低温度均呈显著的负相关关系,表明了气候变暖引起的干旱胁迫是导致近几十年来大果圆柏树木径向生长下降的主要原因。在未来气候变暖背景下,拉萨河大果圆柏林将可能出现生长下降,甚至死亡的现象,将潜在驱动区域森林减少。  相似文献   

6.
呼伦贝尔沙地樟子松年轮生长对气候变化的响应   总被引:2,自引:0,他引:2  
以内蒙古呼伦贝尔地区沙地樟子松为样本,建立了樟子松树木年轮宽度年表,应用相关分析和响应函数分析等年轮气候学方法,研究了樟子松径向生长对气候变化的响应。结果表明,樟子松年轮宽度与4月和6—9月平均温度呈显著负相关关系(P<0.05);与各月降水量多呈正相关关系,特别是与当年5—8月的月降水量呈显著正相关关系(P<0.05);树轮年表与前一年10月至当年10月的PDSI均呈显著正相关关系(P<0.05),其中与5月份PDSI的相关性最高。响应函数分析表明,年表与当年6—7月的平均气温、上一年10月和当年5—7月份的降雨存在显著的相关性,与5—7月份PDSI存在较显著的正相关性;综合来看,呼伦贝尔沙地樟子松生长同时受降水和温度的影响,其径向生长与气候因子间的关系属于降水敏感型,为区域降水重建提供了科学基础。  相似文献   

7.
以秦岭北麓南五台油松为样本,建立油松树轮宽度标准化年表(STD),研究油松径向生长与气候因子之间的相关性。结果表明: 秦岭北麓油松径向生长与前一年9月及当年5月水分因子呈显著正相关,与前一年11月温度因子呈显著正相关,与前一年10月、当年5月温度因子呈显著负相关。油松径向生长对不同气候因子响应均存在明显的滞后效应。油松径向生长与PDSI干旱指数具有较好的相关性,特别是与前一年9—12月、当年5月PDSI呈显著正相关。回归模型能较好地模拟树轮宽度指数与PDSI之间的关系,油松极宽窄轮的形成主要是干旱作用的结果。综合各种气候指标,PDSI能更好地反映研究区油松径向生长的特征。  相似文献   

8.
相较天然林,人工林生态系统对全球性气候变化更敏感。本文利用树木年代学方法,以东北半干旱地区油松人工林为对象建立油松年轮宽度年表,研究油松生长的动态变化及其径向生长与气象因子的相关关系,探讨升温对油松生长及分布的影响。结果表明: 研究区油松年轮宽度主要与生长季5—7月的平均温度呈显著负相关,与生长季早期4月和生长季5—7月的平均降水量和PDSI呈显著正相关,水分可利用性是限制研究区油松径向生长的主要因子。自西南向东北随着年降水量增加,各样点油松径向生长对年均温的敏感性增强,与年降水量的相关关系由显著正相关转变为负相关,说明偏干旱的西南部地区油松生长受水分限制更严重。气候变暖导致的干旱胁迫使得研究区西南部的部分人工林油松生长呈衰退状态。随着暖干化的持续,研究区油松分布边界将发生局地收缩,适宜生长的边界将向北移动。  相似文献   

9.
任丽媛  李宗善  王晓春 《生态学报》2019,39(3):1041-1051
紫花苜蓿作为黄土高原退耕还林还草工程的重要人工草本物种,对控制水土流失、植被固碳和生态环境改善等方面都发挥着重要生态作用;但是苜蓿草地在黄土高原普遍出现生长不可持续的特征,在第6年左右植被出现明显生长衰退现象。本研究在黄土高原4个降水梯度(280、400、500 mm和550 mm)的地点采集紫花苜蓿和自然对照草本物种:委陵菜的根部年轮样品,并分析了紫花苜蓿与委陵菜的年轮宽度和导管大小随年龄的变化趋势特征及与气候要素的相关关系。研究结果表明:在气候暖干化环境下,紫花苜蓿和委陵菜的年轮宽度随年龄增加都有不断下降的趋势,且在降水量偏低样点下降更为显著,这是由于植株在降水量偏低地点易遭受严重水分胁迫,以致无法满足生长所需的水分而造成根部生长速率明显减缓。紫花苜蓿根部导管大小随年龄增加均有明显下降趋势,在降水量偏低的样点下降趋势更加显著;这表明水分胁迫随年龄增加逐渐加剧,紫花苜蓿导管大小逐年下降以致不能满足自身生长的水分需求,植被生长呈衰退趋势,且在降雨偏低地区,苜蓿生长衰退出现时间较早。自然草本委陵菜根部导管大小随年龄增加均有明显上升趋势且在降水量偏低样点上升趋势更显著,这表明委陵菜通过增大根部导管大小、增加输水能力来满足随年龄增加不断上升的水分需求,这也说明委陵菜导管结构特征较好的适应了黄土高原干旱半干旱环境,生长处于可持续发展状态。  相似文献   

10.
不同土壤水分下刺槐和油松的生理特征   总被引:13,自引:0,他引:13  
在适宜土壤水分(70%θf)、中度干旱(55%θf)和严重干旱(40%θf)3种土壤水分条件下研究了黄土高原常见造林树种刺槐(Robinia pseudoacacia L.)和油松(Pinus tabulaeformis Carr.)的生长及水分利用特性.结果表明:干旱胁迫使2树种的成活率、干物质累积和光合速率均显著下降.在适宜水分下刺槐的单叶水分利用率(WUE)最高,严重干旱下最低.刺槐和油松的枝条快速生长期主要集中在3-6月,在中度干旱条件,2个树种均可良好生长;在严重干旱下2个树种的生长均受到显著抑制,但刺槐受影响较大,油松受影响较小.在3种土壤水分条件下刺槐耗水量、生物量及水分利用率均显著高于油松.2树种在中度干旱下的总WUE最高,严重干旱下最低.刺槐属于高耗水树种,油松属于低耗水树种,油松的耐旱性强于刺槐.研究结果表明,刺槐在黄土高原缺水地区不适宜大面积栽植,只能用于水分条件较好的立地条件下造林.油松应尽可能在含水量较高的阴坡或沟坡地带造林.  相似文献   

11.
Plant responses to drought and their subsequent rehydration can provide evidence for forest dynamics within the context of climate change. In this study, the seedlings of two native species (Vitex negundo var. heterophylla, Quercus acutissima) and two exotic species (Robinia pseudoacacia, Amorpha fruticosa) to China were selected in a greenhouse experiment. The gas exchange, stem hydraulic parameters, plant osmoprotectant contents and antioxidant activities of the seedlings that were subjected to sustained drought and rehydration (test group) as well as those of well‐irrigated seedlings (control group) were measured. The two native species exhibited a greater degree of isohydry with drought because they limited the stomatal opening timely from the onset of the drought. However, the two exotic species showed a more ‘water spender’‐like strategy with R. pseudoacacia showing anisohydric responses and A. fruticosa showing isohydrodynamic responses to drought. Severe drought significantly decreased the leaf gas exchange rates and hydraulic properties, whereas the instantaneous water use efficiency and osmoprotectant contents increased markedly. Most of the physiological parameters recovered rapidly after mild drought rehydration, but the water potential and/or supply of nonstructural carbohydrates did not recover after severe drought rehydration. The results demonstrate that the xylem hydraulic conductivity and shoot water potential jointly play a crucial role in the drought recovery of woody plants. In brief, the native species may play a dominant role in the future in warm‐temperate forests because they employ a better balance between carbon gain and water loss than the alien species under extreme drought conditions.  相似文献   

12.
吕刚  王磊  张卓  王锋柏  汤家喜  杜昕鹏  董亮  杨聪 《生态学报》2019,39(17):6372-6380
为揭示辽西低山丘陵区不同年龄荆条冠层降雨截留的变化规律,采用人工模拟降雨动态监测荆条冠层降雨截留情况,并建立了经验模型。结果表明:荆条冠层未截留量与降雨量呈线性显著正相关,且随年龄增加,未截留量的增加速率减小;250 min时未截留率趋向稳定为1年生91.87% > 2年生89.75% > 3年生85.08% > 4年生79.00%,未截留率与降雨量显著正相关;荆条截留量随着降雨量的增加而增加,在250 min时4年生为(5.25±0.49)mm > 3年生(3.73±0.65)mm > 2年生(2.60±0.23)mm > 1年生(1.93±0.55)mm,且1、2年生荆条截留量趋向稳定;250 min后冠层截留率逐渐变小并趋向稳定值,4年生21.00% > 3年生14.92% > 2年生10.25% > 1年生8.13%;荆条附加截留量4年生为(0.27±0.03)mm > 3年生(0.17±0.04)mm > 2年生(0.14±0.01)mm > 1年生(0.09±0.02)mm。揭示了不同年龄荆条冠层截留降雨的基本规律,验证了附加截留量,为进一步研究荆条的生态水文效应提供了科学的理论依据,对水土保持树种优选和辽西地区水土流失治理具有一定的指导意义。  相似文献   

13.
为选择耐旱性较强的园林绿化植物,选择6种常见的园林植物:金银木(Lonicera maackii)、紫荆(Cercis chinensis)、紫薇(Lagerstroemia indica)、荆条(Vitex negundo var.heterophylla)、胡枝子(Lespedeza bicolor)和构树(Broussonetia papyrifera),进行盆栽控水试验,对植株外观形态和土壤含水率、叶片叶绿素含量、超氧化物歧化酶(SOD)活性、丙二醛(MDA)含量进行比较。结果表明,随干旱胁迫时间的延长,土壤含水量均呈下降趋势,金银木、胡枝子和荆条的长势较好;紫薇、紫荆和构树出现叶片萎蔫、掉落现象,6种植物叶片的光合色素含量呈先上升后下降的趋势,除紫薇外,SOD活性总体均呈上升趋势,MDA含量持续上升。可见,金银木、胡枝子和荆条的耐旱性较强,紫薇、紫荆和构树的耐旱性较弱。  相似文献   

14.
阿尔泰山萨彦岭4种优势树种径向生长对气候因子的响应   总被引:2,自引:0,他引:2  
康剑  蒋少伟  黄建国 《生态学报》2020,40(17):6135-6146
气候变化深刻地影响森林树木的生长,而树种对气候变化敏感度的差异可能影响了气候变化下的森林生态系统响应。因此,研究优势树种间生长对气候变化的敏感度差异,对正确认识气候变化下林分生长动态及分布格局十分重要。基于树木年代学的方法,研究了阿尔泰山萨彦岭西伯利亚落叶松(Larix sibirica)、西伯利亚红松(Pinus sibirica)、西伯利亚冷杉(Abies sibirica)以及西伯利亚云杉(Picea obovata)4种优势树种的径向生长-气候关系。结果显示:(1)西伯利亚冷杉径向生长与上一年10-11月、当年1-9月的干旱指数、2-4月的降水显著正相关,与1月的平均温和最高温呈显著负相关关系,与当年4、6月份的水汽压正相关;(2)西伯利亚落叶松径向生长与上一年8月和当年8月的平均温、最高温以及当年8月的最低温显著负相关,而与当年6月的最低温则正相关,与8月份的水汽压显著负相关;(3)西伯利亚红松径向生长与3月降水、7月最低温、上一年10月的水汽压显著正相关;(4)西伯利亚云杉径向生长与6月平均温、最高温、水汽压正相关,与上一年10-11月、当年2-4月和9月的干旱指数正相关,同时与3、4月的降水量显著正相关。西伯利亚冷杉和西伯利亚云杉、西伯利亚云杉和西伯利亚落叶松、西伯利亚云杉和西伯利亚红松对于特定气候因子表现出相似的响应结果,与年表间相关性的结果一致。但差异也是明显的,西伯利亚冷杉和西伯利亚云杉对区域水分变化敏感,而西伯利亚落叶松和西伯利亚红松主要对区域温度变化敏感。综上所述,气候变化下,该区域优势树种对气候变化响应的差异可能导致区域林分动态和格局的改变,因此,多树种径向生长-气候关系研究有助于正确反映森林动态。研究结果可以为区域森林管理与生态保护工作提供理论依据。  相似文献   

15.
为揭示黄土高原中部不同树种径向生长对气候变化的响应及应对极端干旱能力的差异,构建延安任家台林场油松、狼牙刺和黄刺玫树轮宽度年表,利用帕默尔干旱指数(PDSI)定义极端干旱事件,计算干旱频率及强度;利用树轮宽度量化径向生长应对极端干旱事件的抵抗力(Rt)、恢复力(Rc)及恢复弹力(Rs)。结果表明,油松与5月平均气温和平均最高气温显著负相关,与9月平均最高气温显著正相关,与前一年11月降水和7月相对湿度显著正相关;狼牙刺与前一年9月平均气温,当年7月平均最高气温,8月平均气温和平均最高气温显著负相关;黄刺玫与7月平均气温和平均最高气温显著负相关;3个树种径向生长均与PDSI正相关。干旱程度加剧使树木抗旱性降低,导致油松、狼牙刺Rt和Rs减弱。树种间差异表现为,Rt:狼牙刺油松,Rc:油松狼牙刺黄刺玫,Rt:黄刺玫狼牙刺。  相似文献   

16.
Vitex negundo L. var. heterophylla (Franch.) Rehder (Lamiaceae) is an important tree species for soil and water conservation, yet the reproductive ecology of this species remains to be elucidated. To investigate the reproductive traits of V. negundo var. heterophylla, the phenology, morphological characteristics (a suite of characters was assessed: floral morphology, nectar production, pollen viability, and stigma receptivity) and mating system of this species were systematically revealed for the first time in this study. Phenological observations, morphological measurements, and nectar production analysis were conducted during anthesis. Pollen viability and stigma receptivity at different flowering stages were measured by biochemical methods. Finally, genetic analysis based on SSR markers was used to reveal the mating system; outcrossing index and pollen‐ovule ratio were also calculated to help analysis. V. negundo var. heterophylla showed several obvious characteristics of outcrossing, such as abundant and attractive flowers, secreting nectar, and emitting scent. In addition, mechanisms such as homogamy and a short anther‐stigma distance that can promote self‐fertilization were also identified in this species. The coexistence of selfing and outcrossing characteristics demonstrates a predominantly outcrossed mixed mating system (outcrossing rate, t = 95%). The scientific information provided by this study may contribute to conservation of V. negundo var. heterophylla from a reproductive perspective.  相似文献   

17.
In this paper, we analyze the relationships among the tree-ring chronology, meteorological drought (precipitation), agricultural drought (Palmer Drought Severity Index PDSI), hydrological drought (runoff), and agricultural data in the Shanxi province of North China. Correlation analyses indicate that the tree-ring chronology is significantly correlated with all of the drought indices during the main growing season from March to July. Sign test analyses further indicate that the tree-ring chronology shows variation similar to that of the drought indices in both high and low frequencies. Comparisons of the years with narrow tree rings to the severe droughts reflected in all three indices from 1957 to 2008 reveal that the radial growth of the trees in the study region can accurately record the severe drought for which all three indices were in agreement (1972, 1999, 2000, and 2001). Comparisons with the dryness/wetness index indicate that tree-ring growth can properly record the severe droughts in the history. Correlation analyses among agricultural data, tree-ring chronology, and drought indices indicate that the per-unit yield of summer crops is relatively well correlated with the agricultural drought, as indicated by the PDSI. The PDSI is the climatic factor that significantly influences both tree growth and per-unit yield of summer crops in the study region. These results indicate that the PDSI and tree-ring chronology have the potential to be used to monitor and predict the yield of summer crops. Tree-ring chronology is an important tool for drought research and for wider applications in agricultural and hydrological research.  相似文献   

18.
Knowledge of tree growth/climate response relationships is important to dendroecological studies and dendroclimatic reconstructions, particularly in the Southeastern Coastal Plain where few such studies have been attempted. To this end, we developed tree-ring chronologies of total ring width, earlywood width, and latewood width from longleaf pine (Pinus palustris Mill.) at three sites in the Southeastern Coastal Plain to examine the climate–growth relationships for this tree species. The length of these chronologies is unprecedented for southern pine chronologies in the Southeast. We compared the tree-ring chronologies to monthly temperature, precipitation, Palmer drought severity index (PDSI), and Palmer hydrological drought index (PHDI) data from the pertinent climate divisions. We found that PDSI and PHDI have the highest correlation with longleaf pine growth, and the strongest relationships between longleaf pine growth and these variables occur between July and November. Precipitation in the spring and summer was also positively related to growth at all sites. The relationship between temperature and growth was the weakest among all climate variables, but warm summer temperatures had a consistent, negative relationship with longleaf pine growth. The climate signal in the latewood was generally more robust than for total ring width and earlywood width.  相似文献   

19.
Four North American trees are becoming invasive species in Western Europe: Acer negundo, Prunus serotina, Quercus rubra, and Robinia pseudoacacia. However, their present and future potential risks of invasion have not been yet evaluated. Here, we assess niche shifts between the native and invasive ranges and the potential invasion risk of these four trees in Western Europe. We estimated niche conservatism in a multidimensional climate space using niche overlap Schoener's D, niche equivalence, and niche similarity tests. Niche unfilling and expansion were also estimated in analogous and nonanalogous climates. The capacity for predicting the opposite range between the native and invasive areas (transferability) was estimated by calibrating species distribution models (SDMs) on each range separately. Invasion risk was estimated using SDMs calibrated on both ranges and projected for 2050 climatic conditions. Our results showed that native and invasive niches were not equivalent with low niche overlap for all species. However, significant similarity was found between the invasive and native ranges of Q. rubra and R. pseudoacacia. Niche expansion was lower than 15% for all species, whereas unfilling ranged from 7 to 56% when it was measured using the entire climatic space and between 5 and 38% when it was measured using analogous climate only. Transferability was low for all species. SDMs calibrated over both ranges projected high habitat suitability in Western Europe under current and future climates. Thus, the North American and Western European ranges are not interchangeable irrespective of the studied species, suggesting that other environmental and/or biological characteristics are shaping their invasive niches. The current climatic risk of invasion is especially high for R. pseudoacacia and A. negundo. In the future, the highest risks of invasion for all species are located in Central and Northern Europe, whereas the risk is likely to decrease in the Mediterranean basin.  相似文献   

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