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1.
对海北高寒草甸生态系统定位站矮嵩草(Kobresia humilis)和珠芽蓼(Polygonum viviparum)505nm处的吸光度值(A505/A652)的日变化和季节变化的测定发现:矮嵩草和珠芽蓼叶片内玉米黄质的相对含量在一个生长季内呈现单峰曲线变化,与海北站太阳辐射强度的季节变化呈正相关;玉米黄质的日变化也呈现单峰曲线,于中午14:00左右达到最大值,与太阳辐射强度的日变化呈正相关;玉米黄质在非辐射能耗散以及防止过氧化方面起着重要作用。 相似文献
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甘肃天祝高寒珠芽蓼草甸5月20日左右返青。地上生物量的变化呈单峰曲线,最大值在8月22日,干物质为548.39g/m2(489.06g/m2去灰分物质;下同);净第一性生产力为481.05g/m2·a干物质。地下生物量很大,6一9月平均接近6kg/m2,呈单谷曲线变化,最低值出现在7月20日,为4556.87g/m2干物质。地上部分最大生长率出现在月平均气温只有8—10℃的返青后一个月,平均绝对生长率为5.89g/m2·d干物质,平均相对生长率为0.152g/g·d干物质。春季地上部分的最大生长率与活根的很大消耗联系在一起。地上部分对太阳总辐射的转化率为0.155%,对生理辐射的转化率为0.316%,对≥0℃-≤0℃生长期的生理辐射的转化率为0.692%。地上部分在生长的第一个月对总辐射的表观转化率最高,平均为0.57%。 相似文献
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甘肃天祝高寒珠芽蓼草甸5月20日左右返青。地上生物量的变化呈单峰曲线,最大值在8月22日,干物质为548.39g/m~2(489.06g/m~2去灰分物质;下同);净第一性生产力为481.05g/m~2.a干物质。地下生物量很大,6—9月平均接近6kg/m~2,呈单谷曲线变化,最低值出现在7月20日,为4556.87g/m~2干物质。地上部分最大生长率出现在月平均气温只有8—10℃的返青后一个月,平均绝对生长率为5.89g/m~2.d干物质,平均相对生长率为0.152g/g.d干物质。春季地上部分的最大生长率与活根的很大消耗联系在一起。地上部分对太阳总辐射的转化率为0.155%,对生理辐射的转化率为0.316%,对≥0℃—≤0℃生长期的生理辐射的转化率为0.692%。地上部分在生长的第一个月对总辐射的表观转化率最高,平均为0.57%。 相似文献
4.
对海北高寒草甸生态系统定位站矮嵩草(Kobresia humilis )和珠芽蓼(Polygonum viviparum)505 nm处的吸光度值(A505/A652)的日变化和季节变化的测定发现:矮嵩草和珠芽蓼叶片内玉米黄质的相对含量在一个生长季内呈现单峰曲线变化,与海北站太阳辐射强度的季节变化呈正相关;玉米黄质的日变化也呈现单峰曲线,于中午14:00左右达到最大值,与太阳辐射强度的日变化呈正相关;玉米黄质在非辐射能耗散以及防止过氧化方面起着重要作用。 相似文献
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不同生境下珠芽蓼(蓼科)的繁殖策略比较 总被引:3,自引:0,他引:3
在青藏高原横断山区以海拔相同的高山流石滩和高寒草甸中的珠芽蓼(Polygonum viviparum)居群为研究对象,探讨该物种在不同生境条件下的繁殖策略以及无性繁殖和有性繁殖间的关系。结果发现,流石滩居群的珠芽蓼植株高度和珠芽数量显著低于高寒草甸居群,而珠芽和花总数量、花数量和每个花序上的花比例却显著高于高寒草甸居群。研究结果表明珠芽蓼在环境更为恶劣的高山流石滩生境中增加了对繁殖器官和花资源的投资,说明在高山植物中繁殖优先于营养生长,且有性繁殖比无性繁殖具有更为重要的作用。而对每个植株上花数量和珠芽数量的统计结果表明,两者呈显著的负相关关系,进一步证明了同一植株内无性繁殖和有性繁殖的权衡关系。 相似文献
7.
青藏东缘若尔盖高寒草甸中小型土壤动物群落特征及季节变化 总被引:3,自引:0,他引:3
中小型土壤动物是生态系统的重要组成部分。为了查明高寒草甸生态系统的中小型土壤动物群落特征及其变化动态,2008至2009年间,利用定位观测方法对青藏东缘若尔盖高寒草甸的中小型土壤动物进行了5次调查。结果为:(1)捕获中小型土壤动物9318只,隶属于3门7纲88类;平均密度为39941.67 个/m2;大类群中,线虫纲(Nematoda)的个体数占总个体数的91.50%,蛛形纲(Arachnida)(主要为蜱螨目)、弹尾纲(Collembola)、寡毛纲(Oligochaeta)和昆虫纲(Insecta)分别占3.73%、2.55%、1.12%和1.07%;(2)土壤动物的群落密度、类群数、密度-类群指数、Shannon指数、Simpson指数和Pielou指数均有显著的季节差异(P<0.01或P<0.05),表明高寒草甸生态系统的中小型土壤动物群落多样性对季节变化具有高度敏感性;(3)线虫纲、蛛形纲、弹尾纲、寡毛纲和昆虫纲的密度变化趋势基本一致,并均有显著的季节差异(P<0.05);(4)各季节间的Sorensen群落相似性系数低于Morisita-Horn相似性系数,表明季节变化对群落物种组成的影响相对较强,对优势类群个体密度的影响相对较弱;(5)中小型土壤动物群落的类群数和密度,以及弹尾纲、寡毛纲和昆虫纲的密度均与温度有显著的负相关(P<0.01或P<0.05),线虫和蛛形纲的密度与温度和降水均有不显著的负相关(P>0.05)。研究结果表明若尔盖高寒草甸的中小型土壤动物群落组成和多样性具有明显的季节特征,而温度是影响其季节变化的最主要气候因素;另外,从温度、降水及其年间变化对中小型土壤动物的影响可知全球气候变暖在短期内将会对高寒草甸土壤动物群落产生不利的影响。 相似文献
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高寒山区植物根抗氧化酶系统的季节变化与抗冷冻关系 总被引:5,自引:0,他引:5
在高寒山区(海拔2900m)和选取4种多年生草本植物,即无芒雀麦(Bromus inermis)、草地早熟禾(Poa sphyondylodes)、花誉麦(Bromus sinensis)和垂重申披碱草(Elymus nutans),测定了秋末、冬初、冬季、春季气温变化过程中其根中丙二醛(MDA)含量和抗氧酶活力(过氧化氢酶(CAT)、过氧化物酶(POD)、超氧物歧化酶(SOD))和抗坏血酸氧化酶(APX)变化,分析了抗氧酶系统在根抗冷适应中的作用,结果表明,随秋末降温植物根中MDA含量增加,尔后下降,在冬季和翌年春季保持相对稳定。从9月初到10月下旬,4种植物根中SOD、CAT、POD活力平均增加170%、130%和56%。在冬季下降,但仍远高于9月,在春季气温上升过程中酶活力上升。根能在组织结冰状况下生存与其具备完善的保护酶系统,能及时清除氧自由基抑制膜脂过氧化维持膜完整性有关,据降温过程中MDA含量和抗氧酶活力变化,可将根冷适应分为两个阶段,即第1阶段平均气温在0℃以上,抗氧酶活力增强,MDA增加阶段,第2阶段平均气温降至0℃以下,最低气温降到-15℃以下,抗氧酶活力下降,MDA无明显变化阶段。 相似文献
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疏勒河源高寒草甸土壤微生物生物量碳氮变化特征 总被引:3,自引:2,他引:3
土壤微生物生物量是土壤有机质的活性部分,是反映土壤质量和碳氮循环机制的重要指标。本文以青藏高原东北缘疏勒河源高寒草甸为研究对象,对土壤微生物生物量碳(SMBC, mg/kg)和微生物生物量氮(SMBN, mg/kg)的不同季节(春、夏、秋、冬)和土层(0—10、10—20、20—30、30—40、40—50 cm)变化特征及其影响因素进行研究。结果表明:(1)不同土层SMBC均表现为春季开始逐渐升高、夏季达到最大值、秋季逐渐降低、冬季值最小,而SMBN春季开始逐渐降低、夏季值最小、秋季逐渐升高、冬季达到最大值。(2)SMBC、SMBN随着土壤深度的增加而下降,0—10 cm层SMBC、SMBN显著高于40—50 cm层,且SMBC、SMBN0—10 cm层的季节变幅显著大于40—50 cm层。(3)0—50 cm土层SMBC/SMBN表现为春季开始逐渐升高、夏季达到最大值、秋季逐渐降低、冬季值最小,其季节变化范围为8.77—23.59,处于较高水平。(4)SMBC、SMBN、SMBC/SMBN的季节和土层变化主要受植被地下生物量和土壤温度的影响。(5)各土层SMBC/SOC均表现为春季开始逐渐升高、夏季达到最大值、秋季逐渐降低、冬季值最小,而SMBN/TN春季开始逐渐降低、夏季值最小、秋季逐渐升高、冬季达到最大值。除夏季土层间无显著差异外,SMBC/SOC与SMBN/TN均表现为0—10 cm层显著高于40—50 cm层。(6)0—50 cm土层SMBC/SOC夏秋季显著高于冬春季且其季节变化范围为0.58%—1.18%,而SMBN/TN秋冬季显著高于夏季且其季节变化范围为0.39%—0.72%。综上,季节变化和剖面深度均对SMBC、SMBN产生显著影响且0—10 cm土层对SMBC、SMBN的累积能力最强。 相似文献
11.
Diggle P 《American journal of botany》1997,84(2):154-169
Preformation, the initiation of organs one or more years prior to maturation and function, is reported to be common and crucial for plant survival in arctic and alpine environments, yet the phenomenon is remarkably little studied. In order to understand the role of preformation in the ecology and evolution of tundra species, this investigation takes a developmental and architectural approach to the analysis of plant growth and reproduction in the alpine perennial Polygonum viviparam L. Analyses show that the extent and duration of preformation in P. viviparam are extraordinary. Four years are required for each leaf and inflorescence to progress from initiation to functional and structural maturity. This single salient feature of development has profound consequences for basic architecture, dynamics of resource allocation, and the timing of plant responses to environmental variation. As a consequence of the protracted duration of leaf and inflorescence development, five cohorts of primordia, initiated in successive years, are borne simultaneously by an individual plant. In the year prior to maturation leaves reach 30% of their maximum size, and the maximum potential reproductive output of each inflorescence is determined. Thus, developmental processes that affect final morphology and resource allocation occur at least 1 yr before functional maturity. From the developmental and architectural models constructed for P. viviparum, a 1-yr delay in measurable plant responses to environmental variation is predicted. The models also apply generally to arctic and alpine species and provide a mechanistic explanation for observed patterns of productivity at the community and ecosystem scale. 相似文献
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Grazing by domestic herbivores is generally recognized as a major ecological factor and an important evolutionary force in grasslands. Grazing has both extensive and profound effects on individual plants and communities. We investigated the response patterns of Polygonum viviparum species and the species diversity of an alpine shrub meadow in response to long-term livestock grazing by a field manipulative experiment controlling livestock numbers on the Qinghai-Tibet Plateau in China. Here, we hypothesize that within a range of grazing pressure, grazing can alter relative allocation to different plant parts without changing total biomass for some plant species if there is life history trade-offs between plant traits. The same type of communities exposed to different grazing pressures may only alter relative species' abundances or species composition and not vary species diversity because plant species differ in resistant capability to herbivory. The results show that plant height and biomass of different organs differed among grazing treatments but total biomass remained constant. Biomass allocation and absolute investments to both reproduction and growth decreased and to belowground storage increased with increased grazing pressure, indicating the increasing in storage function was attained at a cost of reducing reproduction of bulbils and represented an optimal allocation and an adaptive response of the species to long-term aboveground damage. Moreover, our results showed multiform response types for either species groups or single species along the gradient of grazing Intensity. Heavy grazing caused a 13.2% increase in species richness. There was difference in species composition of about 18%--20% among grazing treatment. Shannon-Wiener (H') diversity index and species evenness (E) index did not differ among grazing treatments. These results support our hypothesis. 相似文献
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青海高原矮嵩草和珠芽蓼的光合适应性比较(英文) 总被引:3,自引:0,他引:3
对生长在两个海拔地带 (3 2 0 0m ,3 980m)的矮嵩草 (KobresiahumilisSerg.)和珠芽蓼 (PolygonumviviparumL .)叶片的叶绿素荧光特性及其叶绿体超微结构进行了比较研究。海拔升高 ,矮嵩草和珠芽蓼叶片的Fv/Fo、Fv/Fm和Rfd值均增大 ,且矮嵩草的Fv/Fo、Fv/Fm 和Rfd值均大于珠芽蓼。叶绿体超微结构的结果显示 ,海拔升高 ,珠芽蓼和矮嵩草的叶绿体都表现出一定程度的变形 ,但珠芽蓼的叶绿体变形和类囊体膜肿胀现象更为显著。研究表明 ,矮嵩草和珠芽蓼光合作用对高山胁迫环境具有很强的适应性 ,且矮嵩草的适应能力比珠芽蓼强。 相似文献
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The chlorophyll fluorescence parameters of Kobresia humilis Serg. and Polygonum viviparum L. grown at two different altitudes (3200 m, 3980 m) were measured and the ultrastructure of chloroplasts were observed for studying the photosynthetic adaptability of plants to the influences of stress conditions in alpine environment. Rfd -values, the vitality index, in leaves of K. humilis and P.viviparum grown at 3980 m were higher than those at 3200 m. The higher ratio of Fv/Fo and Fv/Fm in leaves of K. humilis and P.viviparum indicated that the rate of photosynthetic conversion of light energy increased at higher altitude. Ratios of Fv/Fo and Fv/Fm and Rfd -values in K.humilis were higher than that in P.viviparum grown at the same altitude. There were more irregular chloroplasts in leaves of both species grown at higher altitude. Many irregular chloroplasts such as swollen thylakoid, deformed chloroplast envelope, were observed in P.viviparum grown at 3980 m, but few in K. humilis . These results were discussed in relation to the photosynthetic adaptability of alpine plants and the different adaptive competence between K.humilis and P.viviparum. 相似文献
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珠芽蓼果实营养成分分析 总被引:7,自引:0,他引:7
本文对珠芽蓼果实的营养成分进行了分析.结果表明,珠芽蓼果实含有丰富的蛋白质、总糖、氨基酸和矿质元素,是一种值得有效开发的野生植物资源. 相似文献
16.
Jun Chen Yasuo Yamamura Yoshimichi Hori Masae Shiyomi Taisuke Yasuda Hua-kun Zhou Ying-nian Li Yan-hong Tang 《Ecological Research》2008,23(4):657-663
We investigated how the high small-scale species richness of an alpine meadow on the Qinghai-Tibet Plateau, China, is maintained.
This area is characterized by strong wind and severe cold during long winters. In winter, most livestock is grazed on dead
leaves in small pastures near farmers’ residences, whereas in the short summer, livestock is grazed in mountainous areas far
from farmers’ residences. The number of plant species and the aboveground biomass were surveyed for three adjacent pastures
differing in grazing management: a late-winter grazing pasture grazed moderately from 1 February to 30 April, an early-winter
grazing pasture grazed lightly from 20 September to late October, and a whole-year grazing pasture grazed intensively throughout
the entire year. In each pasture, we harvested the aboveground biomass from 80 or 100 quadrats of 0.01 m2 along a transect and classified the contents by species. We observed 15.5–19.7 species per 0.01 m2, which is high richness per 0.01 m2 on a worldwide scale. The species richness in the two winter grazing pastures was higher than that in the whole-year grazing
pasture. The spatial variation in species richness and species composition in the two winter grazing pastures in which species
richness was high was greater than that in the whole-year grazing pasture in which species richness was lower. Most of the
leaves that are preserved on the winter grazing pastures during summer are blown away by strong winds during winter, and the
remaining leaves are completely exhausted in winter by livestock grazing. A pasture with a high richess is accompanied by
a high spatial variation in species richness and species composition. There is a high possibility that the characteristic
of spatial variation is also caused by traditional grazing practices in this area. 相似文献
17.
高寒草甸植物物候对温度变化的响应 总被引:4,自引:0,他引:4
植物物候是植物为适应其生长环境而呈现的规律性变化,是气候变化的指示器。为了解高寒植物物候对温度变化的响应,利用1997—2010年青海湖海北高寒草原生态监测站群落优势种矮嵩草物候观测资料和同时段的气象资料,应用偏最小二乘(PLS)回归定量分析了植物物候期变化特征、趋势及其与气温间的相互关系。结果表明:①1997—2010年青海湖地区年均温度总体上升,倾向率为0.5℃/10a,其中年均最高温度和最低温度呈现出非对称型变化,最低温度显著升高且高于年均温升幅,倾向率为0.7℃/10a(P0.05),而年均最高温度无明显变化。②1997—2010年间,矮嵩草平均返青期和枯黄期分别为4月18日和10月2日,矮嵩草返青期推迟,枯黄期提前,生长季长度缩短。③影响矮嵩草返青的关键时期为每年的1月和3—4月,1月温度升高影响植物休眠进程进而延迟返青,而3—4月温度升高有利于热量积累使返青提前;影响矮嵩草枯黄的关键时期为7月上中旬和8月,期间温度升高使枯黄期提前。④根据PLS分析和相关分析,最低温度在各关键时期内显著影响植物物候,而最高温度仅在8月对枯黄期影响通过显著性检验,因此最低温度是影响高寒草地矮嵩草物候期的关键因子。 相似文献
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采用RP-HPLC法建立了同时测定珠芽蓼中牡荆素、槲皮苷、槲皮素三种黄酮的方法,色谱柱为kromasilC18(250 mm×4.6 mm,5μm),以甲醇-水(含0.25%磷酸)为流动相梯度洗脱,流速1 mL/min,检测波长360 nm。结果表明,牡荆素、槲皮苷和槲皮素质量浓度在8~40、5~50μg/mL和5.33~52μg/mL范围内与色谱峰面积均呈良好的线形关系,平均回收率分别为100.3%、98.9%和100.4%,日内稳定性偏差分别为0.78%,0.51%和0.38%,日间稳定性偏差为2.6%,1.9%和2.1%。该方法简单、准确,可为珠芽蓼的质量控制提供科学依据。 相似文献