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1.
热带森林在全球碳循环过程中起着重要的作用,研究热带树木的生长动态及其对环境因子的响应,有助于预测全球变化下热带森林固碳能力的变化。目前对热带树木径向生长以及木质部发生季节动态的研究相对较少。利用微树芯和生长环法对西双版纳热带植物园内的落叶树种楝(Melia azedarach)2021年的年内径向生长和木质部发生季节动态进行监测,结合环境因子的监测,分析了楝的径向生长过程的驱动因子。结果表明:2021年楝的扩大细胞在3月1日(年积日(DOY):60.2±1.6)开始出现,细胞壁加厚在12月11日(DOY:345.4±3.1)结束,年生长量为7.76 mm,最大生长速率为0.039 mm/d。生长环监测显示,楝在3月18日(DOY:76.6±8.6)左右开始生长,10月13日(DOY:286.4±6.8)生长结束,年径向生长量为(6.25±2.35)mm,最大生长速率为(0.056±0.02)mm/d。楝的径向生长速率与降水(r=0.77,P<0.001)、平均温度(r=0.61,P<0.05)和最低温度(r=0.67,P<0.001)均呈显著正相关,与风速(r=-0.... 相似文献
2.
为了解热带地区树木的季节性生长动态和规律,在西双版纳热带季节雨林利用高精度生长仪和微树芯法对落叶树种多花白头树的径向生长季节动态进行监测。结合木质部非结构性碳水化合物和环境因子的监测,分析其形成层活动和径向季节动态的生理生态驱动因子。结果表明: 在2020年,生长仪的监测显示,多花白头树于5月底(儒略日DOY:149.3±7.2)开始生长,8月底(DOY:241.0±14.7)生长结束,年生长量为3.12 mm,最大生长速率为0.04 mm·d-1。而微树芯法显示,扩大细胞3月9日(DOY:69.2±6.2)开始出现,9月19日(DOY:262.8±2.8)细胞加厚结束,木质部生长量为1.76 mm,最大生长速率为0.009 mm·d-1。多花白头树径向日生长量与生长季的降水、相对湿度、日最低气温、深度为20 cm的土壤含水量和温度呈显著正相关,而与日最高气温、水汽压亏缺、最大风速和水汽压呈显著负相关。多花白头树边材淀粉含量和可溶性糖含量均在生长季开始之前保持较高水平,淀粉含量在3月底达到最低,而可溶性糖含量5月中旬达到最低,随着生长季的结束淀粉和可溶性糖的含量分别在10月中旬和12月底达到最高。 相似文献
3.
以滇西北白马雪山亚高山寒温性针叶林的常绿树种长苞冷杉和落叶树种大果红杉为对象,采用高精度生长仪监测了2个树种的年内径向生长动态,分析其径向生长的季节动态特征及其对环境因子的响应。结果表明: 大果红杉和长苞冷杉的径向生长主要发生在4—8月,6月是生长最快的时期。与长苞冷杉相比,大果红杉径向生长的开始时间较早,停止生长时间稍晚,其生长季持续时间明显长于长苞冷杉。大果红杉最大生长速率和年生长量均略高于长苞冷杉。长苞冷杉日生长量与降水量呈显著正相关,与饱和水汽压亏缺、空气温度呈显著负相关;而大果红杉的日径向生长量与降水量呈显著正相关,与土壤体积含水量和饱和水汽压亏缺呈显著负相关。长苞冷杉和大果红杉的径向生长均受到水分的限制,大果红杉对水分条件更敏感。在全球变暖的背景下,植物蒸腾作用和土壤蒸发散的增加,可能进一步加剧土壤水分丧失和植物可利用水分下降,进而导致长苞冷杉和大果红杉更易受到干旱胁迫。 相似文献
4.
了解树木生长对气候的响应对过去气候重建和预测其对未来气候变化的响应都至关重要。就珍稀濒危树种而言,这还会有助于对其的有效保护。在中国红豆杉属珍稀濒危植物中,密叶红豆杉(Taxus fuana)分布面积最小,野外生存压力大,属于极小种群植物。运用年轮生态学方法,对西藏吉隆地区开热和吉普两地的密叶红豆杉种群进行树轮盘采样,分析了吉隆地区密叶红豆杉径向生长与温度和降水相关气候因子的相关性,旨在揭示影响密叶红豆杉生长的主要气候因子。结果表明,两个种群径向生长对温度的响应不同。开热种群密叶红豆杉径向生长与各月温度多呈显著正相关;吉普种群密叶红豆杉径向生长与各月温度的相关性较弱,且多为负相关,尤以3月份的最显著。两个种群的径向生长对降水的响应也不同。冬季休眠期(12月)的降水对开热种群密叶红豆杉径向生长呈负相关,而生长季初期(5月)和生长季末期(9月)的降水呈正相关。各月的降水对吉普种群密叶红豆杉的径向生长未表现出显著的影响。研究结果可为探讨气候变化下密叶红豆杉的适宜分布区、以及密叶红豆杉的保护和可持续管理提供参考。 相似文献
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研究采用树木生长环在哀牢山中山湿性常绿阔叶林持续9年(2009—2017年)监测了2个常绿树种(厚皮香,Ternstroemia gymnanthera;南亚枇杷,Eriobotrya bengalensis)和2个落叶树种(西桦,Betula alnoides;珍珠花,Lyonia ovalifolia)的树干月生长量,采用逻辑斯蒂生长模型(Logistic model)模拟树木径向生长量和物候参数,并分析了年、季尺度上径向生长与主要气候因子的关系。结果表明:1)4个树种年平均生长量为6.3 mm,落叶树种年平均生长量(10.6 mm/a)显著高于常绿树种(3.0 mm/a);2)雨季(5—10月)是哀牢山中山湿性常绿阔叶林树木生长的主要时期,4个树种雨季平均生长量为5.9 mm,占全年总生长量的93%,其中落叶树种雨季生长量占全年的96%,而常绿树种雨季生长量占全年的86%;3)常绿树种生长季长度为169天,长于落叶树种(137天),而落叶树种最大生长速率(0.14 mm/d)显著高于常绿树种(0.03 mm/d),最大径向生长速率能很好地预测树种年生长量;4)低温、雾日和光合有效... 相似文献
6.
滇西北是我国西南地区气候变化最为显著的地区之一,过去几十年来气候呈现快速变暖趋势。高山松(Pinus densata)是该地区主要的针叶树种,研究高山松径向生长对气候因子的响应,有助于深入认识该地区亚高山针叶林对气候变化的适应能力。在滇西北白马雪山1 hm2永久性样地内采集了161棵高山松树木样芯(322个),运用传统树木年轮学原理及方法,建立高山松年轮宽度差值年表,分析年表与样地附近气象站1957—2020年气候因子的相关性。结果表明:1)高山松的径向生长与冬季及春季(前一年11月至当年4月)温度呈正相关关系,与当年5月份最高温度和平均温度呈负相关;2)高山松径向生长与当年4—6月降水量显著正相关,与5月相对湿度呈正相关,与5—8月标准化降水蒸散指数(SPEI6)呈正相关;3)滑动相关分析表明,白马雪山高山松径向生长-气候关系不稳定,冬季温度对高山松生长的限制作用在减弱,说明冬季低温限制在一定程度上解除;而夏秋季温度对高山松径向生长的相关性由弱的负相关转为近年来的显著正相关;对夏季相对湿度和标准化降水蒸散指数的敏感性降低。研究结果可为探讨气候变化下高山松自然林的... 相似文献
7.
为探讨杉木径向变化的季节动态及其气候响应特征,利用径向生长仪连续2年(2016—2017年)监测了江西中部杉木的径向变化过程,分析了径向变化的日动态、季节动态规律及其与气候因子的相关性。结果表明: 杉木日径向昼夜变化呈白天收缩、夜间膨胀的格局;2017年径向生长开始时间比2016年提前一个月,但旱季持续的水分亏缺使生长季也早一个月结束;在主要生长季内(4—9月),无论湿季与旱季,径向增长量与降雨、相对湿度呈显著正相关,与光合有效辐射、饱和水汽压差呈显著负相关,而水分亏缺量的气候相关性与径向增长量相反;旱季严重缺水时土壤含水量对径向变化的影响显著增强。水分条件始终是影响杉木径向变化的关键因素,夏季干旱时可通过提高土壤含水量等有效途径促进杉木径向生长。 相似文献
8.
全球气候变化导致的区域森林生长衰退和死亡普遍发生,并对森林生态系统结构和组成以及主要生态系统服务功能产生重要影响,然而相关研究在国内还显偏少。根据黄土高原延安羊圈沟小流域人工刺槐林健康和衰退个体分别构建了刺槐健康和衰退树轮年表,并对人工刺槐林健康和衰退年表特征及对气候响应敏感性进行了对比分析。结果表明刺槐衰退年表质量较低,其年表统计参量,包括平均敏感度、样芯间相关系数、信噪比和样本群体代表系数均要低于刺槐健康年表。刺槐衰退年表在生活史早期(1985-2007年)与生长健康年表的波动趋势相类似,而在生活史晚期(2008-2016年)与健康年表指数出现生长分离现象,生长速率明显偏低。年表与气候要素响应分析表明刺槐生长衰退年表对气候要素响应敏感性要低于刺槐生长健康年表,但是两者均含有干旱胁迫气候信号,主要体现在与温度呈负相关关系,与降雨和干旱指数的正相关关系。年表与极端气候年份的时序叠加分析表明,生长健康和衰退年表对极端干旱年份响应敏感性均较高,表明极端干旱胁迫条件对刺槐生长健康和衰退个体均有抑制性影响;生长健康年表对极端湿润年份响应敏感性明显高于衰退年表,表明刺槐健康个体比衰退个体更能有效利用湿润年份有利条件,而具有较高的生长速率。研究揭示出黄土高原健康和衰退刺槐个体生长趋势变化及对气候响应敏感性均存在明显差异性,将为气候变化背景下人工刺槐林生长衰退和死亡预测模型建立提供科学依据,因而对黄土高原人工刺槐林生态恢复和保护及可持续经营具有科学价值。 相似文献
9.
树木径向生长对气候因子的响应是树轮气候学的基础。在我国西北地区,虽然已有大量的树轮-气候响应研究,但是响应分析多基于数理统计结果,缺乏对树木生长过程的理解。基于此,于2013年到2015年在祁连山东部吐鲁沟国家森林公园内通过Dendrometer连续监测了树轮气候重建中常用树种青杄的径向生长,通过平均值法提取2013到2015年生长季内不同时间尺度(1天、7天、10天)的平均径向生长量及对应时间段的平均气候状况。不同时间尺度径向生长量和气候因子的相关分析结果表明,时间尺度的延长削弱了树干水分昼夜变化的干扰,但水分仍然是青杄径向生长的限制因子。为了进一步分析青杄径向生长与气候关系随时间的变化情况,以31天为窗口将日径向生长量与气候要素每隔一天进行滑动相关,结果显示:5、7月青杄的径向生长与降水的关系稳定,都呈显著正相关,但是6月降水的年际变率较大,导致树木可利用水分的变幅也较大,因而树木径向生长与6月水分的响应关系不稳定,存在较大的年际差异,而这可能是一些树轮-气候响应研究中轮宽与6月降水关系不显著的原因。 相似文献
10.
西双版纳石灰山热带季节性湿润林内几种植物的水分利用策略 总被引:7,自引:0,他引:7
对两双版纳生境严酷的石灰山热带季节性湿润林内几种植物(潺槁木姜子、羽叶白头树、高榕、豆果榕、清香木等)的水分利用策略进行了研究.结果表明,石灰山热带季节性湿润林内土壤水势在于热季(2月~4月)75 cm深度处达到最低值,为-O.055MPa,雨季(5~10月)在30 cm处出现最低值为-O.039MPa.测定不同深度土壤体积含水量昼夜变化表明,白大和夜间各层深度土壤体积含水量没有显著变化(P>0.05),说明本林内植物没有水分再分配现象的发生.通过对雨水、土壤水、地下水、雾水、穿透水以及植物木质部水分的稳定性同位素分析得出,在干季,滴落雾水能够补给土壤表层水,在雨季,降雨则是地下水的主要水分输入.植物在昼夜尺度上虽然没有对水分进行时空区分利用,但是植物有更为长久有效的水分利用策略,即植物通过自身发达的根系统利用深层土壤水和地下水.目前,热带雨林的乱砍滥伐,森林片段化特别严重,尤其是生长在石灰山严酷生境的热带季节性湿润林受到破坏后,森林的重建和恢复是相当困难的.因此,对脆弱石厌山热带季节性湿润林的保护是十分必要的,而对石灰山热带季节性湿润林植物的水分利用方式和策略的研究将为此目标提供理论依据. 相似文献
11.
树干径向变化的多尺度研究提供了树木生长及其和环境因子关系的详细信息,有助于准确评估全球气候变化背景下森林生态系统碳汇变异。以往树干径向变化研究主要集中在温带和热带地区,且大多数研究方法基于时间分辨率较粗的树木年轮法,然而缺少亚热带地区高时间分辨率树干径向变化的研究。利用树干径向变化记录仪连续监测亚热带地区马尾松13个月的树干径向变化动态,探索不同时间尺度树干径向变化规律及与环境因子的关系。结果表明:(1)在日尺度,马尾松径向变化模式为白天收缩夜晚膨胀,秋冬季节夜晚膨胀没有春夏季明显。(2)在季节尺度,马尾松树干径向变化可分为4个时期,其中3-8月是主要生长月份,4月是累计生长量最大的月份。(3)在日尺度上,相对湿度和饱和水汽压亏缺是调节马尾松径向变化主要环境因素;在季节尺度上,土壤温度对树干径向变化的影响大于空气温度,降水量与相对湿度等水分因素对树干径向生长的促进作用在生长季中后期更为明显。研究结果有助于深入理解亚热带季风气候区树干径向变化及其对环境变化的响应,为气候变化背景下亚热带地区的植树造林设计和森林可持续管理提供依据。 相似文献
12.
Dendrometer measurements provide time series composed of the rhythm of water storage fluctuations over the year and seasonal tree growth. For slow-growing trees, however, difficulties have been found in the identification of crucial events such as growth onset, stem growth period and cessation, rendering it necessary to define what can be measured and at which time scale. Time scale means the time interval (from one day to one month) at which stem radius variation is extracted. In this study, two conifer species were monitored by an automatic band dendrometer to assess several time scales and analysis approaches. Data were collected from 8 trees of Picea abies (L.) Karst and Larix decidua L., growing at 1020 and 2080 m a.s.l. in the eastern Italian Alps, from 2000 to 2003. Time series of stem radius variation were extracted with different approaches, such as the stem cycle, daily mean and daily maximum. Several approaches can be used, as very similar time series of stem radius variations were produced with high coefficients of correlation among the series. At lower altitude, the approximate onset was identified at the beginning of May with a 10-day time scale, when the distribution of stem radius variation differed from zero. The main growth period, from May to June–July, corresponded mainly with earlywood cell formation. At higher altitude, a time scale of at least 15 days facilitated identification of the main period of stem growth only, corresponding with earlywood cell formation. Even if latewood cells were produced in August at both altitudes, the variability in stem radius changes was higher than the amount of growth in terms of cell-wood production. For a slow-growing species in a cold environment, an understanding of the growth period, assessed with several time scales, is necessary when using time series of stem radius variation to assess growth and climate relationships. The period used for growth and climate analysis should correspond only with the main period of stem growth. 相似文献
13.
Emanuel H. Martin Vedasto G. Ndibalema Francesco Rovero 《African Journal of Ecology》2017,55(1):37-46
The increasing use of camera trapping coupled to occupancy analysis to study terrestrial mammals has opened the way to inferential studies that besides estimating the probability of presence explicitly consider detectability. This in turn allows considering factors that can potentially confound the estimation of occupancy and detection probability, including seasonal variations in rainfall. To address this, we conducted a systematic camera trapping survey in the Udzungwa Mountains of Tanzania by deploying twenty camera traps for 30 days in dry and wet seasons and used dynamic occupancy modelling to determine the effect of season on estimated occupancy and detection probability for species with >10 capture events. The sampling yielded 7657 and 6015 images in dry and wet seasons, respectively, belonging to 21 mammal species. Models with no season dependency and with season‐dependent detectability were best supported, indicating that neither colonization nor extinction varied with seasons and hence occupancy did not vary. Only bush pig (Potamochoerus larvatus) showed a significant decrease in detectability from dry to wet seasons. Our study indicates that seasonal variation in rainfall may have limited effect on occupancy and detectability of resident mammals in Udzungwa rainforests; however, it remains a factor to consider when designing future studies. 相似文献
14.
采用红外气体分析法(IRGA)原位监测了西双版纳热带季节雨林11种优势树种树干呼吸速率、1 cm深树干温度以及林内空气变化情况。研究发 现,11种优势树种的树干呼吸具有相同的季节规律,并且雨季均大于干季时的树干呼吸。树种间树干呼吸速率差异显著,在0. 823~2.727 μmol&;#8226;m-2&;#8226;s-1。树干1.3 m处所测南北方向树干呼吸无显著性差异。树干呼吸与树干温度显著相关(0.552<0.92),呈良好的自然指数回归关 系,Q10值为1.90~3.03。20 ℃时各树种的RT(总树干呼吸)速率为0.771~2.570μmol&;#8226;m-2&;#8226;s-1。 相似文献
15.
D. M. Bhat 《Journal of biosciences》1992,17(3):325-352
Phenological observations on tree species in tropical moist forest of Uttara Kannada district (13ℴ55′ to 15ℴ31′ N lat; 74ℴ9′ to 75ℴ10′ E long) during the years 1983–1985 revealed that there exists a strong seasonality for leaf flush, leaf drop and reproduction. Young leaves were produced in the pre-monsoon dry period with a peak in February, followed by the expansion of leaves which was completed in March. Abscission of leaves occurred in the post-monsoon winter period with a peak in December. There were two peaks for flowering (December and March), while fruit ripening had a single peak in May–June, preceding the monsoon rainfall. The duration of maturation of leaves was the shortest, while that of full ripening of fruits was the longest. Mature flowers of evergreen species lasted longer than those of deciduous species; in contrast the phenophase of ripe fruits of deciduous species was longer than that of evergreen species. 相似文献
16.
ABSTRACT Edge effects along tropical forest–pasture margins are thought to cause a shift toward early successional characteristics of the understory forest vegetation. We tested this idea by sampling vegetation at five forest sites in northeast Costa Rica each of which had edges that were established over 20 yr earlier. Four of these sites had been selectively logged. We sampled woody plants >0.2 and ≤1.3 m height in 54 m2 within 0.2 ha plots at edges (N=14), and at 150 m (N=11) and 300 m from edges (N=9). Composition and diversity did not vary with edge distance. Abundance of tree regeneration, mainly of canopy and emergent species, increased at edges. Abundance of lianas and slow‐growing tree species did not differ significantly across the sampling locations. Weighted mean wood density varied little, with a reduction at edges for canopy species. Palms were less abundant at edges, but not less species rich. At edges, these plant assemblages maintain many of the characteristics of forest interior vegetation, though the changes observed may indicate ongoing functional change. Degradation of forest–pasture edges is not a universal feature of tropical forest fragmentation, and forests with high rates of natural turnover might have a high capacity to maintain themselves within forest edges alongside pasture. 相似文献
17.
研究了西双版纳热带季节雨林1 hm2(hectare)动态监测样地1993年与2007年之间树种组成和群落结构的变化。对样地中胸径≥5 cm的乔木进行了每木调查。目前其树种组成的热带分布科、属所占比例分别为91%和94%,具有较高比例的热带植物区系性质。在1993年与2007年两次调查之间,树种数量由145种增至179种,仅有1到2个个体的稀有树种所占比例从54%降为51.1%。从森林的垂直结构来看,A、B、C三层的个体死亡率分别为12.8%、12.9%和19.0%,各层树木的增长率分别为-8.5%、-1.4%和44.8%。与此相对应,C层小径级的树木所占比例有较大提高。虽然小径级的树木在种类和数量上比例增大,但个体数量和种类组成相对稳定的A、B层优势树种变化不大,维持了群落结构的稳定性。14 a间,群落中新增加的具有先锋性质的树种不超过5个。1993年时,A、B两层尚有先锋树种存在,2007年已经从A、B两层中退出。因此,从14 a间树种组成和群落结构的变化来看,虽然具有树木的死亡和增补,但其物种成分和群落结构的总体格局没有明显的变化,处于动态平衡过程中。 相似文献
18.
Understanding tree growth in response to rainfall distribution is critical to predicting forest and species population responses to climate change. We investigated inter‐annual and seasonal variation in stem diameter by three emergent tree species in a seasonally dry tropical forest in southeast Pará, Brazil. Annual diameter growth rates by Swietenia macrophylla demonstrated strong positive correlation with annual rainfall totals during 1997–2009; Hymenaea courbaril growth rates demonstrated weak positive correlation, whereas Parkia pendula exhibited weak negative correlation. For both Swietenia and Hymenaea, annual diameter growth rates correlated positively and significantly with rainfall totals during the first 6 mo of the growing year (July to December). Vernier dendrometer bands monitored at 4‐wk intervals during 3–5 yr confirmed strong seasonal effects on stem diameter expansion. Individuals of all three species expanded in unison during wet season months and were static or even contracted during dry season months. Stems of the deciduous Swietenia contracted as crowns were shed during the early dry season, expanded slightly as new crowns were flushed, and then contracted further during 3–5 wk flowering periods in the late dry season by newly mature crowns. The three species’ physiographic distribution patterns at the study site may partially underlie observed differences in annual and seasonal growth. With most global circulation models predicting conditions becoming gradually drier in southeast Amazonia over the coming decades, species such as Swietenia that perform best on the ‘wet end’ of current conditions may experience reduced growth rates. However, population viability will not necessarily be threatened if life history and ecophysiological responses to changing conditions are compensatory. 相似文献
19.
通过萌发实验法对西双版纳地区的一类热带季节雨林 (番龙眼、千果榄仁 )和 2类次生林(白背桐林、中平树林 )的土壤种子库的季节变化进行了探讨。结果表明 :该地区的土壤种子库动态具有明显的季节性。季节雨林的土壤种子库储量相对稳定 ,土壤上层 ( 0~ 2 cm )的种子储量在雨季末期较大。2类次生林土壤种子库的变化则相反 ,土壤种子库中的种子种类在旱季末期较雨季末期多 ,土壤上层的种子储量在旱季末期较大。各样地均有一些种类只出现在旱季末期或雨季末期。种子在土壤种子库的动态与植物的繁殖物候和所处的环境紧密相关 ,不同种类植物的土壤种子库由于植物本身的生物学特性、传播方式和所处环境的影响而表现出不同的动态模式 相似文献

