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1.
高寒草甸退化对鹅绒委陵菜克隆生长特征的影响   总被引:5,自引:0,他引:5  
周华坤  赵新全  周立  刘伟  韩发  古松 《生态学报》2006,26(2):508-520
为了揭示高寒草甸典型匍匐茎克隆植物对不同生境的生态适应对策,验证生境适应假说,并为高寒草地的退化演替机理研究提供依据,以调查统计和比较样地法研究了江河源区高寒草甸退化对鹅绒委陵菜克隆生长特征的影响。研究表明,重度退化草甸的植物群落结构、功能以及土壤特征发生了明显的变化,继而对鹅绒委陵菜无性系的克隆生长行为和形态特性产生了影响。高寒草甸退化后鹅绒委陵菜的匍匐茎增多,分支强度加大。退化草甸内鹅绒委陵菜的基株高度小于未退化草甸,根长大于未退化草甸,基株的叶片数目问没有明显差别。退化草甸的分株高度显著小于未退化草甸,而分株叶数大于未退化草甸,根长小于未退化革甸且差异不显著。未退化草甸内鹅绒委陵菜无性系的问隔子长度、粗度和匍匐茎长度大于退化草甸,间隔子平均数目少于退化草甸,差异都不显著。随着鹅绒委陵菜无性系匍匐茎数目的增加,不论重度退化草甸与未退化草甸,用于鹅绒委陵菜克隆繁殖的能量投资也逐渐增加。鹅绒委陵菜在未退化草甸用于克隆繁殖的能量投资比例高于退化草甸,其中未退化草甸内鹅绒委陵菜基株的干重占无性系总生物量的比例略低于退化草甸,分株和匍匐茎的干重占无性系总生物量的比例高于退化草甸。高寒草甸退化对鹅绒委陵菜克隆生长特征的这些影响,与植物群落结构和功能的变化导致生境变异密切相关,是其对高寒草甸退化导致的资源和生境差异的反应,也是对资源利用达到的最合理状态,是一种选择适应的结果,有利于克隆繁殖潜力的发挥。同时为生境适应假说提供了又一例证。  相似文献   

2.
高寒草甸退化对短穗兔耳草克隆生长特征的影响   总被引:4,自引:2,他引:2  
以调查统计和比较样地法研究了江河源区高寒草甸退化对典型匍匐茎植物短穗兔耳草克隆生长特征的影响。结果表明,退化草甸的植物群落结构、功能以及土壤特征发生了明显地变化,继而对短穗兔耳草无性系的克隆生长行为和形态特性产生了影响。高寒草甸退化后短穗兔耳草的匍匐茎有所增多,分支强度加大。退化草甸内短穗兔耳草的基株高度小于未退化草甸,根长大于未退化草甸,基株的叶片数目间没有明显差别。退化草甸内短穗兔耳草的分株高度显著小于未退化草甸,分株叶数明显多于未退化草甸,而根长尽管大于未退化草甸,但差异不显著。短穗兔耳草匍匐茎长度在未退化草甸内明显大于退化草甸,匍匐茎茎生叶数和匍匐茎粗度也在未退化草甸大于退化草甸。短穗兔耳草在未退化草甸用于克隆繁殖的能量投资比例高于退化草甸,其中未退化草甸内短穗兔耳草基株的干重比例略低于退化草甸,分株和匍匐茎的干重比例高于退化草甸。高寒草甸退化对短穗兔耳草克隆生长特征的这些影响,是其对高寒草甸退化导致的资源和生境差异的反应,也是对资源利用达到的最合理状态,是一种选择适应的结果。  相似文献   

3.
受气候暖干化和旅游干扰等因素影响,滇西北高寒草甸出现了明显的退化趋势。为探究滇西北高寒草甸退化过程中植物地上形态和生产力的变化规律,在香格里拉市依据游径宽度确定了3个草甸退化梯度:一级退化(R1),二级退化(R2)和对照(CK),并于2018年7月进行野外调查,获取禾本科、莎草科和杂类草3个功能群植物的株高、开展度、叶长、叶宽、叶片长宽比等地上形态指标及植株地上生物量数据,构建各功能群植物生存状态指数(Vegetation living state, VLS)。结果表明:1)禾本科植物的植株高度、植株开展度、叶片长度和叶片长宽比随退化程度增加而减小。莎草科植物的植株高度、叶片长度和叶片长宽比随退化程度增加而减小。杂类草植物的所有的地上形态指标均随退化程度增加而减小;2)随退化程度增加,3个功能群植物的地上生物量均显著下降(P0.05);3)随退化程度增加,禾本科、莎草科和杂类草植物的VLS均减小。退化梯度上3个功能群植物的VLS排序也发生了变化:CK样地中植物VLS的排序为杂类草莎草科禾本科;R1和R2样地中,莎草科植物的VLS显著高于禾本科和杂类草,但禾本科和杂类草植物之间的VLS没有显著差异;4)草甸植物VLS与植物地上生物量之间的线性回归关系随退化程度增加而减弱。研究表明不同功能群植物地上形态的差异性变化可能增加滇西北退化高寒草甸植物生产力预测的不确定性。  相似文献   

4.
青藏高原区退化高寒草甸植被和土壤特征   总被引:4,自引:0,他引:4  
高寒草甸约占青藏高原草地的46.7%,是我国草地生态系统重要的组成部分。近年来,在气候变化和人为活动的影响下,高寒草甸生态系统退化严重,植被和土壤均呈现出不同的退化趋势。在大空间尺度上表现为草地覆盖度下降,杂草类植被增加,土壤退化甚至沙化;在微观尺度上,退化高寒草甸的土壤粒径、土壤微生物和土壤酶也发生改变。本研究从高寒草甸物种多样性、植物群落结构、植被生物量、土壤物理性质、土壤微生物、土壤酶和土壤养分等方面,分析了高寒草甸生态系统退化过程中植被和土壤的变化特征,提出当前研究中存在的一些不确定性和有待深入研究的问题,为全面了解高寒草甸的退化机制和规律、有效干预高寒草甸生态系统和恢复生态功能提供科学依据。  相似文献   

5.
青藏高原典型草地植被退化与土壤退化研究   总被引:4,自引:0,他引:4  
采用野外样方调查和室内分析法,探讨了青藏高原不同退化程度高寒草原和高寒草甸植被群落结构、植物多样性、地上-地下生物量、根系分配及土壤理化特性差异。研究表明:(1)随着退化程度加剧,高寒草原禾草优势地位未改变,高寒草甸优势种莎草逐渐被杂类草取代。(2)随着退化程度加剧,高寒草原地上生物量显著降低(P0.05),高寒草甸地上生物量先保持稳定再下降。高寒草甸地下生物量较高寒草原地下生物量对退化响应更敏感。(3)高寒草原退化过程中,莎草地上物生量变化不明显(P0.05),禾草地上生物量贡献率由88.12%减少至53.54%,杂类草地上生物量贡献率由0.08%增加至42.81%;高寒草甸退化过程中,禾草和杂类草地上生物量先增加后减小,莎草地上生物量占比由69.15%减少至0.04%,杂类草地上生物量占比由12.56%增加至92.61%。(4)随着退化程度加剧,高寒草原根系向浅层迁移,高寒草甸根系向深层迁移。(5)退化对高寒草甸土壤含水量(θ)、土壤有机碳(SOC)、总氮(TN)及土壤容重(BD)影响均比高寒草原更强烈。本研究对青藏高原退化草地恢复治理具有重要的参考价值。  相似文献   

6.
疏叶骆驼刺母株与子株间的水分整合   总被引:2,自引:0,他引:2       下载免费PDF全文
在未灌溉的土地上, 疏叶骆驼刺(Alhagi sparsifolia)通常不能进行有性繁殖, 克隆繁殖是其种群维持和延续的唯一方式。因此, 克隆性及其相关克隆性状(如水分整合)在疏叶骆驼刺自然种群的维持过程中可能扮演了极其重要的角色。该文通过疏叶骆驼刺母株和子株之间的间隔子切断和给母株补充水分的方法, 研究了母株和子株在各处理下的水势、叶形态和植株生长变化情况。结果表明: (1)间隔子切断后, 疏叶骆驼刺母株和子株正午水势均明显增大(p < 0.01), 说明间隔子切断使得母株和子株水分亏缺值都增大。(2)给母株补水后, 间隔子切断组和间隔子相连组中的母株水势均有明显增加, 同时间隔子相连组的子株水势明显增加(p < 0.01), 而间隔子切断组子株水势没有明显变化(p > 0.05)。(3)间隔子切断组的子株叶片含水率明显低于间隔子相连组子株, 而其株高、冠幅、分枝数和基径的增长量都明显小于间隔子相连组的子株(p < 0.01)。疏叶骆驼刺母株和子株间存在水分整合, 母株会通过根系向子株传输水分。研究成果对塔克拉玛干沙漠南缘的植被恢复以及水资源的合理利用有着重要的意义。  相似文献   

7.
 通过不同蝴蝶花(Iris japonica)起始源株密度的控制实验, 探讨源株对克隆植物蝴蝶花克隆繁殖、生长和生物量分配的影响。结果表明: 1)克隆数量特征: 1个起始源株处理(O)蝴蝶花新分株数显著高于2个起始源株(T)及4个起始源株处理(F), 而新分株死亡率显著低于后二者; 随着起始源株数增加(竞争增强), 一级与二级子株数显著降低。随着源株竞争增强, 克隆细根茎与根的长度、表面积、体积与根(茎)长密度逐渐降低。2)叶片特征: 随着源株竞争增强, 母株重度枯萎与总枯萎叶片数显著增加, 子株中度枯萎、重度枯萎与总枯萎叶片数显著增加; 源株竞争增强, 源株叶面积、源株与子株叶片数显著降低, 而源株叶面积比(leaf area ratio, LAR)显著增加。3)生物量及分配: 随着源株竞争增强, 细根茎、粗根茎、克隆繁殖、地上部分、地下部分及总生物量显著降低, 细根茎与地下部分分配降低, 母株粗根茎分配与地上部分分配显著增加。总的看来, 随着蝴蝶花源株竞争增强, 植株叶片生长状况受到更大的影响, 植株生长受限, 克隆繁殖减弱, 而其通过增加LAR, 提高叶片效率与增加母株粗根茎分配, 降低生长强度与消耗, 储备资源, 以待来年的生长与繁殖。  相似文献   

8.
不同放牧强度对鹅绒委陵菜克隆生长特征的影响   总被引:6,自引:0,他引:6  
在中国科学院海北高寒草甸生态系统定位站,对通过17 a不同放牧强度干扰后金露梅灌丛草甸内鹅绒委陵菜克隆生长特征进行实地调查统计研究.结果显示:长期放牧并增加放牧强度后,植物群落的高度、盖度和草场质量指数下降.随着放牧强度增大,鹅绒委陵菜无性系匍匐茎数目增加,分枝强度加大;基株变矮,逐渐由直立、半直立型变为匍匐状,形态可塑性明显;根长有逐渐增加的趋势;放牧强度对鹅绒委陵菜无性系分株高度、根长和分株叶数影响不显著;间隔子有变短、变粗的趋势,间隔子数目和分株数目有增加的趋势,但影响不显著;轻牧和不牧样地中用于鹅绒委陵菜克隆生长的平均能量投资(分株和匍匐茎的干重及其所占比例)小于重牧样地.表明随放牧强度增大,鹅绒委陵菜无性繁殖能力增强,呈现出典型的生态适应策略.  相似文献   

9.
杨军  刘秋蓉  王向涛 《应用生态学报》2020,31(12):4067-4072
选取西藏自治区拉萨市当雄县4块不同退化程度的高山嵩草高寒草甸,采用空间序列代替时间演替的方法,研究不同退化阶段高寒草甸的土壤理化性质和植物群落特征以及二者之间的相关关系。结果表明: 不同退化阶段高寒草甸的土壤有机碳、全氮、速效磷、速效钾、铵态氮、硝态氮和含水量均随土壤退化程度加剧呈降低的趋势,而pH值呈现升高的趋势。中度退化草甸的植物群落高度、丰富度指数、多样性指数、均匀度指数最大。群落盖度、总生物量均为未退化草甸最大、重度退化草甸最小。随着草甸退化程度加剧,莎草科生物量及比例下降,豆科和杂类草生物量及比例增加,禾本科生物量及比例先增加后减小;草甸植物群落地上生物量与土壤有机碳、全氮、全磷含量和土壤含水量呈显著正相关,与土壤pH值呈显著负相关。随着草甸植被的退化,土壤退化加重,最终表现为草地生产力显著下降。  相似文献   

10.
鹅绒委陵菜(Potentilla anserina)生长特征   总被引:30,自引:4,他引:30  
以调查统计的方法研究了矮嵩草草甸内鹅藏委陵菜无性生长特征。研究结果表明:匍匐茎只有1条的鹅绒委陵菜最多,占52.86%,匍匐茎有4条的鹅绒委陵菜只占4.29%,同一鹅绒委陵菜无性系中,随着匍匐茎数目的增多,分株数,间隔子数,茎总长和匍匐茎比节间重变小,分株一般在第二级或第三级最高,末级较高;间隔子一般以第二、第三或第四级为最长,最末一级较长,第一级最短,随鹅绒委陵菜匍匐茎数目的增多,用于繁殖的匍匐茎和分株的干重比例逐渐增加。  相似文献   

11.
研究了 3种来自中国北方林下、草地和碱化草甸匍匐茎型克隆草本植物绢毛匍匐委陵菜 (PotentillareptansL .var.sericophyllaFranch .)、鹅绒委陵菜 (P .anserinaL .)和金戴戴 (Halerpestesruthenica (Jacq .)Qvcz .)对由高光照低养分斑块和低光照高养分斑块组成的资源交互斑块性生境的适应性对策。当生长于高光照低养分条件下分株(HL分株 )与生长于低光照高养分条件下分株 (LH分株 )之间的匍匐茎连接时 ,3种克隆植物HL分株、LH分株以及整个分株对系统 (HL分株 LH分株 )的生物量均得到显著提高。同时 ,LH分株根冠比显著增加 ,而HL分株根冠比显著下降。这表明 ,当互连分株置于由低光照高养分斑块和高光照低养分斑块组成的异质性环境中时 ,3种植物克隆分株均发生了环境诱导的功能特化。克隆内资源共享以及克隆内不同分株的功能特化有利于整个分株系统对局部丰富资源的获取 ,从而能够缓解资源交互斑块性生境对克隆植物的不利影响  相似文献   

12.
《Flora》2006,201(7):547-554
We studied the field response of Robinia pseudoacacia L. to light, total soil nitrogen, available soil phosphorus and soil pH. Results indicated that there was very strong clonal integration between mother and daughter ramets. Mother ramets can provide nitrogen and phosphorus to daughter ramets sufficient for their continued growth through strong clonal integration, but cannot provide enough photosynthate. With clonal integration, soil nitrogen and phosphorus availability had no effect on biomass allocation to roots, number of ramets and length of connection roots. Biomass allocation to roots increased markedly and responded to nitrogen and phosphorus availability, when the connections were severed. Light had a significant effect on the percent of biomass allocation to leaves and number of ramets, but no effect on the length of connection roots. Daughter ramets allocated more resources to leaves, and clones placed more daughter ramets in high light patches than in low light patches. Soil pH had a significant effect on ramet number and connection root length. Clones concentrated in alkaline patches and escaped from acid patches through selective placement of daughter ramets and changing the length of connection roots. We suggest that the clonal integration may be very strong and provide sufficient soil resources to daughter ramets, then affect the daughter ramets’ morphology and placement, if the size of a specific ramet is significantly larger than the other ramets in an arbor clone.  相似文献   

13.
We studied fitness consequences of clonal integration in 27 genotypes of the stoloniferous herb Ranunculus reptans in a spatially heterogeneous light environment. We grew 216 pairs of connected ramets (eight per genotype) with mother ramets in light and daughter ramets in shade. In half of the pairs we severed the stolon connection between the two ramets at the beginning of the experiment. During the experiment, 52.7% of the ramet pairs with originally intact connection physically disintegrated. We detected significant variation among genotypes in this regard. Survival of planted ramets was 13.3% higher for originally connected pairs. Moreover, there was significant variation among genotypes in survival, in the difference in survival between plant parts developing from mother and daughter ramets, and in the effect of integration on this difference. In surviving plants connection between ramets decreased size differences between mother and daughter parts. Variation among genotypes was significant in growth and reproduction and marginally significant in the effect of physiological integration on growth and reproduction. Connected daughter ramets had longer leaves and internodes than daughters in severed pairs indicating that integration stimulated plant foraging in both the vertical and the horizontal plane. Observed effects of integration on fitness components in combination with genetic variation in maintenance and effects of connection indicate that clonal integration in R. reptans has the capability to evolve, and therefore suggest that clonal integration is adaptive. If genetic variation in integration is common, future studies on clonal integration should always use defined genetic material and many clones to allow extrapolation of results to population and wider levels.  相似文献   

14.
Clonal plants spreading horizontally and forming a network structure of ramets exhibit complex growth patterns to maximize resource uptake from the environment. They respond to spatial heterogeneity by changing their internode length or branching frequency. Ramets definitively root in the soil but stay interconnected for a varying period of time thus allowing an exchange of spatial and temporal information. We quantified the foraging response of clonal plants depending on the local soil quality sampled by the rooting ramet (i.e. the present information) and the resource variability sampled by the older ramets (i.e. the past information). We demonstrated that two related species, Potentilla reptans and P. anserina, responded similarly to the local quality of their environment by decreasing their internode length in response to nutrient-rich soil. Only P. reptans responded to resource variability by decreasing its internode length. In both species, the experience acquired by older ramets influenced the plastic response of new rooted ramets: the internode length between ramets depended not only on the soil quality locally sampled but also on the soil quality previously sampled by older ramets. We quantified the effect of the information perceived at different time and space on the foraging behavior of clonal plants by showing a non-linear response of the ramet rooting in the soil of a given quality. These data suggest that the decision to grow a stolon or to root a ramet at a given distance from the older ramet results from the integration of the past and present information about the richness and the variability of the environment.  相似文献   

15.
高寒草甸放牧扰动与两种植物的反应研究   总被引:8,自引:1,他引:7  
对不同放牧强度下矮嵩草草甸植物垂穗披碱草和鹅绒委陵菜的生长和繁殖特性进行了5年研究。结果表明,垂穗披碱草株高、分蘖数、地上物量、地下生物量、有性繁殖效力在不放牧或轻度放牧下最大,营养生长效力在重度放牧中最大,而贮藏效力在重度放牧中最小。鹅绒委陵菜叶数、匍匐茎长度、地上生物量、匍匐茎生物量、开花数、生殖生物量、有性繁殖效力及营养繁殖效力在放牧区显著高于不放牧的对照区。说明适当的放牧干扰有利于垂穗披碱草营养生长,但放牧过重会抑制其有性繁殖;由于放牧采食减少了种间竞争影响,从而提高了鹅绒委陵菜营养,生长效力和有性繁殖效力。两物种地下贮藏物的比例随着放牧强度增加显著减少。放牧强度对高寒草甸的群落演替方向有显著影响。  相似文献   

16.
Jean J. Pan  Keith Clay 《Oikos》2002,99(1):37-46
Many plant species have the ability to expand laterally through space by clonal growth. Plant pathogens can affect clonal growth characteristics thereby altering the success of host plants within populations and of clonal species within communities. We conducted a greenhouse experiment to determine the effects of the systemic fungal pathogen, Epichloë glyceriae , on clonal growth patterns of its host grass, Glyceria striata . We found that infected and uninfected plants produced similar total biomass and numbers of tillers plus primary stolons per mother ramet. However, biomass allocation to tillering (vegetative growth) vs stolon production (clonal growth) was significantly affected by pathogen infection. Infected plants produced more stolons and clonal growth biomass than uninfected plants while mother ramets of uninfected plants produced more tillers and biomass than infected plants. Stolon architecture of infected and uninfected plants also differed. In two of three populations, infected plants produced stolons with greater biomass and shorter spacer lengths, even though mean stolon lengths were similar for infected and uninfected plants. These results contrast strongly with most other clonal plant-pathogen systems where infected plants are less vigorous and have reduced clonal growth compared to uninfected plants. Greater clonal growth may be an effective mechanism for host genotypes to persist and spread when seed production is prevented, as is the case with castrating pathogens like Epichloë glyceriae .  相似文献   

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