7 resultados para ecologically adaptive strategies

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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肉质小半灌木盐节木(Halocnemum strobilaceum)、里海盐爪爪(Kalidium capsicum)和盐爪爪(Kalidium foliatum)是中国西北盐生荒漠中分布的重要优势种植物。本文对生长在新疆盐漠环境中的三种植物种子的萌发生态学进行了研究。研究内容包括:(1)光照、温度对种子萌发的影响;(2)NaCl盐度对种子萌发和恢复、幼苗生长和恢复的影响;以及(3)低温层积处理对三种盐生植物种子休眠打破和耐盐性影响。 新成熟的盐节木、里海盐爪爪和盐爪爪种子都具有非深度生理休眠,它们分别需要经过4,4和8周的低温层积处理打破休眠。打破休眠的种子萌发的最适光温条件分别是25-30°C和光照(盐节木);15-30°C,光照或黑暗(里海盐爪爪);25°C和黑暗(盐爪爪)。 三种盐生植物的种子萌发对NaCl盐度胁迫有相似的响应,即低浓度不抑制萌发,高于一定浓度后,种子萌发随盐度的升高而逐渐降低,直至种子萌发被完全抑制。但是,开始抑制和完全抑制三种植物种子萌发的NaCl盐度是不同的。三种植物种子萌发受到抑制的起始浓度和种子萌发完全被抑制的盐度分别是:0.4和2.0 M(盐节木),0.2和0.6 M(里海盐爪爪),0.2和1.0 M(盐爪爪)。将未萌发的种子转入用蒸馏水饱和的滤纸上继续萌发,三种盐生植物的种子均有可恢复萌发的能力,经4.0 M NaCl处理后的种子,萌发恢复率都高于80%。三种植物的种子在蒸馏水中的总萌发率(在初始盐溶液中萌发的种子数与在蒸馏水中恢复萌发的种子数之和占所有供试种子数的百分率)高于各盐度条件下的种子总萌发率(在初始盐溶液中萌发的种子数与在蒸馏水中恢复萌发的种子数之和占所有供试种子数的百分率)。 盐节木和里海盐爪爪的种子萌发出的幼苗的早期生长对NaCl盐度胁迫有相似的响应,即随着盐度的升高,胚根的伸长逐渐降低;但是低盐度(≤0.4 M)不影响、甚至促进盐节木胚根的伸长,而各个盐度的NaCl均抑制里海盐爪爪的胚根伸长。盐节木的胚根生长较慢,在蒸馏水中培养24 h 后的根长< 1mm。低盐(0.2 M)促进胚根的伸长,但随盐度的继续升高(≥ 0.6 M),胚根伸长逐渐受到抑制,当盐度 ≥ 2.0 M NaCl时,盐节木胚根伸长完全停止。里海盐爪爪的胚根伸长快速,在蒸馏水中培养12 h后的平均根长为5 cm。低盐并不促进里海盐爪爪胚根的伸长,随盐度升高,胚根伸长逐渐受抑制。当盐度 ≥ 1.0 M NaCl时,里海盐爪爪的胚根伸长完全停止。但当转入蒸馏水中时,两种植物的胚根都可以继续伸长,伸长的能力随预处理盐溶液浓度的升高而降低,经 ≥ 4.0 M NaCl 预处理的盐节木胚根完全丧失继续伸长的能力;经0.6 M NaCl 预处理的里海盐爪爪胚根无法继续伸长。 低温层积处理对三种盐生植物的种子在NaCl溶液中的萌发均有显著促进作用。低温层积后,种子萌发可以发生的盐度范围提高;相同浓度NaCl溶液中,低温层积后的种子的萌发率和萌发速率都显著高于未经低温层积处理的种子。 实验结果表明三种盐生植物在种子萌发和早期幼苗生长阶段对盐生生境具有适应性。种子和幼苗早期在高盐分胁迫下保持的萌发恢复能力和胚根伸长生长的恢复能力是对盐生环境的特殊适应对策。这种适应对策有助于这三种植物在新疆的盐漠环境中得以成功的生存和繁衍。

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时空异质性是生境的基本特征。几乎所有植物都是在一定尺度的时空异质性环境中完成其生活史的。在进化过程中,植物可能形成了各种有效利用环境异质性的生态适应对策。克隆生长使得克隆植物在理论上更容易适应于异质性环境。本文以匍匐茎和根状茎型草本为材料,应用实验生态学方法研究了游击型克隆植物对异质性环境的生态适应对策。 在沙丘生境(如毛乌素沙地)中,沙埋是植物常常遭遇的事件。由于沙埋在水平空间表现出非均匀性,克隆植物的基株或克隆片断常常经历局部沙埋。通过温室和野外实验,研究了克隆整合作用对鹅绒委陵菜和沙鞭沙埋分株忍受沙埋能力的影响。结果表明,克隆整合显著提高鹅绒委陵菜和沙鞭沙埋分株的存活。进一步的耗-益分析表明,克隆整合使鹅绒委陵菜沙埋分株显著受益,而对非沙埋分株却没有显著耗损,故整个克隆片断的生长得到显著提高。因此,克隆整合是沙丘生境中克隆植物对局部沙埋胁迫的生态适应对策之一。 通过2个温室实验,研究了金戴戴对光照、基质养分和盐分的克隆可塑性。结果表明:光照强度、基质养分和盐分对金戴戴克隆生长和克隆形态均有十分显著的影响。深度遮光、低养和高盐均显著削弱金戴戴的生长,其生物量、叶面积、分株数、匍匐茎长及叶柄长和根冠比对基质盐分的可塑性大小和格局显示出基株间的差异。在低养分条件下,金戴戴匍匐茎节间显著伸长,而分枝强度显著减弱。这些结果与克隆植物觅食模型相符合,表明当生长于异质性环境,金戴戴可凭借克隆可塑性实现的觅养行为来增加对养分资源的摄取。因此,克隆可塑性是克隆植物利用环境异质性的另一条途径。 在另一温室实验中,研究了三种匍匐茎克隆草本鹅绒委陵菜、金戴戴和绢毛匍匐委陵菜对光照和养分资源交互斑块性环境的反应。当置于高光低养下的分株与低光高养下的分株相连时,高光低养分株、低光高养分株以及克隆片断的生物量均得到显著提高。同时,低光高养下分株的根冠比相对增加,而高光低养下分株的根冠比相对下降。这表明,三种克隆植物发生了环境诱导的克隆内分工行为。这种环境诱导的克隆内分工行为有利于整个基株对资源交互斑块性环境的利用,是克隆植物对异质性环境的生态适应对策。

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植物的生境在时间和空间上都是异质性的,即使在很小的尺度上这种异质性也是存在的。克隆生长使得克隆植物在理论上更适应利用异质性环境,本文以几种克隆植物为对象,采用实验生态学方法,着重从生理生态特性、信号物质传导方面探讨克隆植物对异质性环境的适应对策。 以匍匐茎克隆植物野草莓(Fragaria vesca)为对象,研究了不同海拔梯度种群(1800m和3900m)对光照和养分资源斑块性分布生境的响应。研究结果显示:与资源的空间同质性处理(I) 和(II) 相比, 资源的空间异质性处理(III) 和(IV) 两个种群野草莓的近端、远端和整个克隆片段的生物量和分株数均获得显著增加。经历低光高养近端分株与经历高光低养的远段分株相连时,相比与低光高养的同质生境,来自两个海拔的种群分配更多的生物量到根;经历高光低养近端分株与经历低光高养远端分株相连时,相比于高光低养的同质生境,来自两个海拔的种群分配更少的生物量到根,类似的生物量分配格局在远端分株也被观察到。相比于高光低养同质性生境,当与低光高养远端分株相连时经历高光低养近端分株有更大的叶面积;相比于高光低养同质性生境,当与低光高养近端分株相连时经历高光低养远端分株有更大叶面积。实验结果表明, 资源交互斑块性生境中野草莓发生了克隆内分工。通过克隆内分工, 克隆植物能有效的利用异质性分布的资源, 缓解资源交互斑块性分布对克隆植物生长的不利影响。 以匍匐茎克隆植物蛇莓(Duchesnea indica)为对象, 研究其在高光照低水分斑块和低光照高水分斑块组成的资源交互斑块性生境中的克隆内分工。结果显示,当生长于高光照低水分(HL)条件下近端分株(basal ramets)与生长于低光照高水分(LH)条件下的远端分株(apical ramets)之间的匍匐茎连接时,近端分株根冠比显著下降,而远端分株根冠比显著增加,近端分株叶面积和远端分株总根长显著增加;当与低光照高水分条件下的远端分株相连时,近端分株叶片光合速率和叶绿素含量也相应增加。此外,克隆分株间资源交互传输显著提高蛇莓的生长表现(生物量和分株数)。因此,在光、水资源交互斑块性环境中克隆植物蛇莓分株在生物量分配、资源获取器官形态和生理特性方面发生了环境诱导的功能特化。这种对局部丰富资源的趋富特化在一定的程度上增强了克隆分株对资源的吸收利用能力,克隆内资源共享有助于缓解资源交互性斑块生境对克隆植物生长的不利影响,有效地提高克隆植物在其生境中存活与定居能力。 一个盆栽实验被采用以便调查克隆整合对经受局部沙埋的根状茎克隆植物沙生苔草(Carex praeclara)的影响,结果显示随着沙埋深度的增加,切断分株间的根状茎连接将显著降低经受沙埋处理分株的存活。当克隆植物经历局部沙埋时,切断分株间根状茎连接对其克隆生长(生物量、分株数和叶片数量)有显著负影响。耗-益(cost-benefit)分析显示,当与经历沙埋处理的远端分株相连时,近端分株的生长表现没有遭受任何负面影响。与经历沙埋处理远端分株相连时,近端分株的光合能力随沙埋深度的增加而增加。分株间的源-汇反馈调节机制所导致的补偿性反应减缓了局部沙埋对克隆植物生长的负效应。因此,克隆整合有助于提高经历局部沙埋克隆植物的存活,克隆植物在沙化地区植被恢复与重建方面具有重要意义。 克隆植物分株间的匍匐茎或根状茎连接不仅可以传输水分、矿质养分、光合产物,而且还可以传输信号物质。以根状茎克隆植物黑褐苔草(Carex alrofusca)为对象,采用盆栽实验研究外源茉莉酸诱导克隆片段相连分株间信号物质传导。结果显示,相比中龄和老龄分株,幼年分株对1mM茉莉酸诱导有显著反应。茉莉酸引起幼年分株叶片浓缩单宁含量显著增加,同时其叶片可溶性碳水化合物和氮含量降低。茉莉酸诱导后,幼年分株被昆虫咬食叶面积比率显著下降。因此匍匐茎或根状茎传也是克隆植物分株间信号物质传导重要通道,克隆植物通过分株间的风险扩散策略增强了对幼嫩植物组织器官的保护,这对克隆植物的存活或生长具有重要意义。

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克隆植物被认为比非克隆植物更宜于利用异质性环境。在复杂的空间异质环境中,克隆植物可能形成了各种有效利用环境异质性的适应对策。对于克隆植物适应机制的研究,前人已做了大量的工作,特别是从形态和生物量分配等方面对简单异质生境下克隆植物的克隆整合和克隆分工进行了详细的研究。本研究以分布广泛的克隆植物东方草莓(Fragaria orientalis)作为研究对象,应用野外调查和实验生态学方法,采用多对比度单资源模型和不同向双资源模型,从形态和生理生态的角度,研究复杂异质生境下克隆植物的整合和分工及其耗益问题,分析不同类型的生境对克隆植物整合和分工的修饰作用,进而探讨克隆植物对异质生境的适应策略。克隆构型和分株种群特征是植物克隆生长及其生态适应对策研究的基本内容。本文通过野外调查,研究在不同光照条件下东方草莓克隆构型、分株种群特征以及点分布格局。结果表明:东方草莓的克隆构型随光照发生相应的变化,低光照下其匍匐茎节间长和分枝角度均增大而分枝强度减小;随光照减弱,东方草莓分株种群的生物量、根冠比和分株种群密度显著降低;不同光照下东方草莓分株均以随机分布为主但不同尺度下有所差异,其分布格局强度依次为旷地<林缘<林下。结合克隆植物对资源的利用对策,探讨了克隆构型和分株种群特征以及分布格局随环境条件变化的生态适应意义。不同生境斑块条件下克隆植物可能采取不同的适应对策。采用盆栽实验,研究不同水分对比度下克隆整合及其生理生态特征,并对单向和交互资源中东方草莓的克隆整合做了对比研究。结果显示:高的水分对比度能够促进东方草莓的克隆整合,并能刺激相连分株增加光合作用,东方草莓体内的氧化—抗氧化系统也II随对比度做出相应的反应。耗-益分析表明胁迫分株的受益是以供给分株的损耗为代价的,但从克隆片段总体来说是受益的。单向资源中东方草莓生长的绝对值高于交互资源,但耗-益分析表明生长于交互资源下东方草莓的克隆整合获益大于生长于单向资源下东方草莓的克隆整合获益。长期生长于特定生境的克隆植物,在进化过程中其克隆整合和克隆分工在对资源异质性的适应策略方面可能有所侧重。采用盆栽实验对来自不同海拔梯度的东方草莓的克隆整合和克隆分工对异质资源的适应对策进行了研究。实验结果表明,来自高海拔的东方草莓可塑性较差。来自两个海拔的东方草莓对切断匍匐茎的表现有所差异,总体上切断匍匐茎对来自高海拔的东方草莓影响更大些。另外,来自高海拔的东方草莓表现出更高的克隆分工。IIIClonal plants are known to be more suitable for the habitats of heterogeneousresources than nonclonal plants, perhaps due to their well developed adaptivestrategies to environmental heterogeneity. Many studies have been done on theadaptive mechanisms of clonal plants, especially on the clonal integration anddivision of labor with morphology and biomass allocation under simpleheterogeneous habitats. Based on field surveys, laboratory experiments, multi-contrastunidirectional resource model and reciprocal resource model, Fragaria orientalis, aRosaceae stoloniferous herb that widely distributes in China, was used to study thisplant’s morphological and physiological responses to complicated heterogeneoushabitats in terms of its clonal integration, division of labor and cost-benefit, as well astheir modifications by different habitats, so as to better understand the adaptivestrategies of clonal plants under heterogeneous environments.Clonal architecture and ramet population characteristics are of the major concernin the studies on growth and adaptive strategies of clonal plants. Clonal architecture,ramet population characteristics and spatial point pattern of F. orientalis underdifferent light intensity were studied with field observations. The results showed that,clonal architecture changed with light availability: Internode-lengths and branchangels of stolons were larger while branch intensities were smaller under lower lightintensity than those under higher light intensity; Biomass of ramet population,root-shoot ratio and density of ramet population decreased significantly with reduce oflight intensity; Under all light intensities, spatial pattern of ramets was mainlyrandomly distributed but it changed with different scales, with pattern intensity as:open space < forest edge < understory. Adaptation significance of the clonal architecture, the ramet population characteristics and the spatial pattern changing withdifferent environments was discussed according to these results.Clonal plants may take different adaptive strategies under different patches. Withpot culture, clonal integration and physiological parameters of F. orientalis underdifferent water contrasts were studied, and clonal integration under unilateralresources and reciprocal resources were also compared. The results suggested that,high water contrast improve the clonal integration of F. orientalis and increase thephotosynthesis of connected ramets. Oxidative and antioxidative system of F.orientalis also responded with changing water contrasts. According to cost-benefitanalysis, the drought-stressed ramets obtained benefits from the connectedwell-watered ramets, and as a whole, the clonal fragment could also get benefits.Growth of F. orientalis in homogeneous resources was better than that inheterogeneous resources, but the whole plant got more benefit through clonalintegration in heterogeneous resources than in homogeneous resources.Pot culture experiments were also used to study the adaptive strategies inutilizing heterogeneous resources by the plant populations from different altitudes.The results showed that, F. orientalis from alpine zones were shorter and lessexpanded with poorer clonal plasticity than those from middle mountains. F.orientalis from two different altitudes showed different responses to stolon severing,and as a whole, stolon severing had more influence on F. orientalis from alpine zones.In addition, F. orientalis from alpine zones exhibited higher division of labor, whichsuggested that clonal plants from different habitats develop their own adaptivemechanisms in their clonal integration and division of labor in response toenvironmental heterogeneity.

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The largest damming project to date, the Three Gorges Dam has been built along the Yangtze River (China), the most species-rich river in the Palearctic region. Among 162 species of fish inhabiting the main channel of the upper Yangtze, 44 are endemic and are therefore under serious threat of global extinction from the dam. Accordingly, it is urgently necessary to develop strategies to minimize the impacts of the drastic environmental changes associated with the dam. We sought to identify potential reserves for the endemic species among the 17 tributaries in the upper Yangtze, based on presence/absence data for the 44 endemic species. Potential reserves for the endemic species were identified by characterizing the distribution patterns of endemic species with an adaptive learning algorithm called a "self-organizing map" (SOM). Using this method, we also predicted occurrence probabilities of species in potential reserves based on the distribution patterns of communities. Considering both SOM model results and actual knowledge of the biology of the considered species, our results suggested that 24 species may survive in the tributaries, 14 have an uncertain future, and 6 have a high probability of becoming extinct after dam filling.

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Ecological and physiological features of the planktonic copepod Calanus sinicus in the southern Yellow Sea in summer were studied to reveal its life history strategy. From the coastal shallow waters to the central part of the southern Yellow Sea, a shift of the stage composition occurs from being dominated by the egg-nauplius stage to being dominated by the fifth copepodite (CV) stage. Most CVs reside in the Yellow Sea Cold Water Mass (YSCWM), where both temperature and food abundance are low. CVs in the YSCWM have longer body lengths, heavier body weights and higher carbon contents than those outside the YSCWM. Onboard incubations show that the development of CVs in the YSCWM is suspended. Energy conservation, development suspension and lack of diel vertical migration (DVM) behavior suggest a diapause status for the CVs in the YSCWM, although vertical distribution patterns indicate the CV individuals are not fully synchronous in physiology and development. This adaptive oversummering strategy would help C. sinicus to live through the warm and food-limited summer in the central part of the southern Yellow Sea; both low temperature and low food supply are necessary for CV to maintain the resting state in the YSCWM. Calanus sinicus exhibits different life history strategies in different regions of the southern Yellow Sea in summer.