14 resultados para Intergenerational resource allocation

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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Two species, Artemisia frigida Willd. (C-3, semishrub, and dominant on overgrazed sites) and Cleistogenes squarrosa (Trin.) Keng (C-4, perennial bunchgrass, and dominant or codominant on moderately grazed sites) were studied to determine the effects of defoliation, nitrogen (N) availability, competition, and their interactions on growth, biomass, and N allocation in a greenhouse experiment. The main treatments were: two nitrogen levels (NO = 0 mg N pot(-1), N1 = 60 mg N pot(-1)), two defoliation intensities (removing 60% of total aboveground biomass and no defoliation), and three competitive replacement series (monocultures of each species and mixtures at 0.5:0.5). Our results were inconsistent with our hypothesis on the adaptive mechanisms of A. frigida regarding the interactive effects of herbivory, N, and competition in determining its dominant position on overgrazed sites. Cleistogenes squarrosa will be replaced by A. frigida on over-grazed sites, although C. squarrosa had higher tolerance to defoliation than did A. frigida. Total biomass and N yield and N-15 recovery of C. squarrosa in mixed culture were consistently lower than in monocultures, whereas those of A. frigida grown in mixtures were consistently higher than in monocultures, suggesting higher competitive ability of A. frigida. Our results suggest that interspecific competitive ability may be of equal or greater importance than herbivory tolerance in determining herbivore-induced species replacement in semi-arid Inner Mongolian steppe. In addition, the dominance of A. frigida on overgrazed sites has been attributed to its ability to shift plant-plant interactions through (lap colonization, root niche differentiation, and higher resistance to water stress.

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C、N、P是生物地球化学循环中的重要元素,其可利用性和各元素之间的平衡关系将生态系统的物质循环有机统一为一个整体。化学计量生态学为研究这几种基本元素间的平衡提供了一个有力的理论框架。许多研究表明,过度放牧会改变生态系统的结构和功能,而放牧如何影响植物的C:N:P化学计量关系的却少见报道。本研究以内蒙古锡林河流域沿水分梯度分布的草甸、草甸草原、典型草原和沙地四种植被类型中的灰脉苔草(Carex appendiculata)、贝加尔针茅(Stipa baicalensis)、羊草(Leymus chinensis)、大针茅(Stipa grandis)、小叶锦鸡儿(Caragana microphylla)、冷蒿(Artemisia frigid)、克氏针茅(S. krylovii)和榆树(Ulmus Pumila)疏林沙地8个草地群落为研究对象,对长期禁牧样地和自由放牧样地中273种植物,其中禁牧与放牧样地中的共有植物种为144个,测定了植物叶片C: N: P化学计量特征以及植株高度、丛幅面积、茎、叶和株(丛)生物量、茎叶比等功能性状,系统地研究了放牧对植物C:N:P化学计量特征和资源分配的影响。取得了如下主要研究结果和结论: 1. 放牧降低了植物叶片的C:N比,但增加了N:P比和C:P比。C:N:P 化学计量比的变化主要受叶片N和P含量变化的影响; 2. 植物C:N:P化学计量特征对放牧的响应同时受水分条件的制约。沿水分梯度分布的不同植被类型中,植物叶片C:N:P化学计量特征对放牧的响应不同。草甸群落中,植物叶片C含量显著降低,N和P含量显著增加;在草甸草原群落中,植物叶片C、P含量减少,N含量显著增加;而在典型草原群落中,植物叶片C、N和P含量均显著降低; 3. 在物种水平上,C、N、P含量对放牧的响应分为:显著增加、显著降低和没有显著变化三种类型。放牧影响下,植物叶片N含量和N:P比在显著升高的物种多于显著降低的,而叶片C含量、C:N和C:P显著降低的物种占的比例很小,表明植物对放牧适应策略与物种本身的生物学特性有着密切的关系。 4. 过度放牧使植物的植株高度、丛幅大小、株丛数、茎叶比和单株生物量均显著降低,即植物整体呈现小型化现象,进而导致群落初级生产力、茎和叶生物量下降。轻度放牧对物种的资源分配没有显著影响,单株(丛)生物量和群落茎、叶及总生物量均呈增加趋势,这与过度放牧的影响正好相反。 5. 过度放牧显著改变了物种的资源分配策略,使生物量向叶的分配比例增加,向茎的分配比例减少。资源优先向同化器官分配可能是草地植物对长期放牧干扰的一种重要适应对策。

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自然界中资源的异质性是普遍存在的,既有自然因素导致的,也有人类干扰导致的。在内蒙古草原,植物经常处在地上部异质性的干扰生境和地下异质性的养分生境中。植物的生物量生产反映了植物对不同生境的适应能力,而资源的分配策略是链接进化生态学和功能生态学的纽带。在变化的生境中植物可以通过改变资源分配的格局而适应环境的变化,获得较高的生物产量。但是,关于草原植物在生物量生产和资源分配上如何对异质性的生境做出响应迄今研究尚少。为此在中国科学院内蒙古草原生态系统定位研究站的长期围封样地(1983年围封),设计了氮素添加和刈割处理的小区实验,使植物处于不同的养分和干扰生境中。我们选择羊草(Leymus chinensis ,根茎禾草,群落优势种)、大针茅(Stipa grandis ,丛生禾草,群落优势种)、糙隐子草(Cleistogenes squarrosa , C4 植物,群落常见伴生种)、木地肤(Kochia prostrate ,藜科半灌木,群落常见伴生种)、猪毛菜(Salsola collina,藜科一年生植物,群落常见伴生种)为对象对这一问题进行了研究。同时,以1979 年围封的羊草样地为对照,选择了比邻的刈割草场,就草原植物对长期刈割干扰的响应策略进行了研究。结果显示: 1. 氮素添加使植物群落生物量显著提高,而且高氮生境下群落生物量增加的幅度最大。从季节动态看,植物群落生物量对氮素添加的响应存在滞后现象,在植物进入快速生长期后,氮素添加的效应日趋明显。 2. 不同植物种群对氮素添加的响应不同,按照植物种群生物量的变化可以分为三种类型:极其敏感型 、敏感型和不敏感型。极其敏感型代表植物是羊草,氮素添加后其种群生物量显著增加。敏感型代表植物是糙隐子草和猪毛菜,前者种群生物量在中氮生境下显著增加,后者种群生物量在低氮生境下显著增加。不敏感型代表植物是大针茅和木地肤,氮素添加后,二者的种群生物量均无显著变化。 3.从生物量向地上和地下器官的分配来看,添加氮素后,一年生植物猪毛菜向地上器官分配的生物量的比例均显著增加;多年生草本植物羊草、大针茅和糙隐子草向地上器官分配的比例均没有发生变化;多年生灌木木地肤在中氮生境下向地上器官的分配比例增加。从生殖分配来看,多年生的C3植物羊草和大针茅和一年生的C4植物猪毛菜的生殖分配格局相对稳定,均未因氮素的添加而发生显著改变。多年生C4植物糙隐子草和木地肤在低氮生境中生殖分配比例显著增加。 4. 不同时间刈割对草原群落生物量影响不同。在牧草快速生长期刈割,群落生物量显著降低,当季能恢复,但影响翌年群落水平的生物量生产;而在牧草生物量最大期刈割,当季难恢复,但对第二年的植物的生长影响较小。 5. 刈割对不同植物的影响存在显著差异:C4植物<C3植物,一年生植物<多年生植物,牧草快速生长期刈割<牧草生物量最大期刈割。 6. 面对不同时间的刈割干扰,草原植物的响应不同。在生物量向地上器官和地下器官分配方面:C3植物大针茅、羊草面对刈割干扰生物量分配分配格局相对稳定,变异较小;而C4植物的资源分配对刈割干扰响应敏感,因不同刈割时间其生物量分配格局不同。在生物量生殖分配方面:多年生植物(如羊草、大针茅、糙隐子草、木地肤)资源分配格局相对稳定,面对刈割干扰其生物量生殖分配格局无显著变化,而一年生植物猪毛菜对刈割干扰敏感,因刈割时间不同其生殖分配格局将随之发生变化。 7.长期刈割干扰下大针茅的种群生物量维持不变;而糙隐子草的种群生物量表现为显著增长的趋势。由于大针茅的株丛生物量显著降低,糙隐子草无显著变化,长期刈割干扰下两种植物种群生物量的维持或增加都是因为密度的显著提高。因此,密度调节是两种植物实现种群调节的重要机制。 8. 长期刈割干扰下大针茅的丛面积和单株分蘖数均无显著变化,表明大针茅非生殖株丛密度的增加不是以降低单个非生殖株丛的大小为代价的,而是通过减少生殖株丛的密度来实现的。而糙隐子草丛面积降低,但是单株分蘖数无显著变化,说明糙隐子草密度增加的过程中,单个株丛占据的营养面积减少了,但株丛的生长状况没有受到显著影响。 9.面对长期刈割干扰,两种植物对无性繁殖和有性繁殖过程采取了截然相反的调整策略。大针茅显著提高了非生殖株丛的密度和相对密度,显著降低了生殖株丛的相对密度,而且降低了对有性生殖过程的生物量分配的比例。糙隐子草显著增加了生殖株丛的密度和相对密度,而且增加了对有性生殖过程的生物量分配的比例。面对刈割干扰两个植物种在繁殖策略上的逆向调节,可能是它们在刈割干扰梯度上能够相互取代的重要原因。

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本文提出了基于线性规划的网格异构资源分配问题的建模和求解方法.该方案综合考虑了资源分配问题的资源共享、作业优先级、作业对多种资源的依赖以及算法自身的策略等多种因素和约束条件.然后提出了网格环境下对独立作业进行网格资源分配的网格服务架构.实验表明基于线性规划的资源分配方法在速度和精确性两方面都是有效的,并且能保持高作业吞吐量.基于网格服务的架构也使该系统具有可扩展性和可伸缩性.

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由于密码学和信息安全领域的许多问题最终都被转化为一个耗时的计算,其中许多计算需要利用多台异构的和地理分布的计算机协同,才能有效完成.密码算法的设计、分析和应用对于计算环境敏感,且依赖性较强,不同类型的算法和算法的不同实现模式对计算环境要求差异很大,而且到目前为止还不存在一种通用的分布式密码计算模型.为此,本文根据密码计算本身的需求,首先分别分析了密码算法设计、分析和应用的目标和特征,提出了相应的计算模式,给出了一种网格环境下的通用密码计算模型.进而讨论了密码计算任务分割策略,资源分配和负载平衡问题.最后给出了网格环境Globus Toolkit下的模型构架、实现与实验结果.

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随着全球气候变暖和温室效应加剧,干旱和荒漠化成为威胁人类生存和发展的主要 灾害,许多被子植物对干旱胁迫的生理、生态和生化响应已逐步得以报道,但很少有开 展干旱胁迫对雌雄异株植物的影响方面的研究。由于这类植物在长期进化过程中已经在 生长、性比、生殖格局、空间分布、资源配置和生物量分配等方面形成了明显的性别差 异,因此,干旱胁迫必将对其雌雄植株产生不同的生理生态影响。本研究以青杨为模式 植物,采用植物生态、生理及生物化学等研究方法,系统研究青杨雌雄植株在常温、增 温以及喷施外源脱落酸的条件下对干旱胁迫的响应,揭示其在生长形态、生物量分配、 光合作用、用水效率和生理生化等方面的性别间差异。主要研究结果如下: 1. 青杨雌雄植株对干旱胁迫的综合响应。 与较好水分条件相比,干旱胁迫显著降低了青杨雌雄植株的光合作用和生长发育, 影响了许多生理生化过程,并导致雌雄植株在生长发育、气体交换、用水效率、膜脂抗 氧化和抗氧化系统酶活性方面表现出显著的性别间差异。在较好水分条件下,雌雄植株 之间在株高、基径、生物量、净光合速率、蒸腾速率、用水效率以及丙二醛、脱落酸和 游离脯氨酸等生化物质含量方面均无显著差异。但在干旱胁迫下,雄株在生长发育、气 体交换、水分利用效率、膜脂过氧化保护和抗氧化系统酶活性方面均显著高于雌株,表 现出比雌株更高的株高、基径、叶面积、总叶片数、总生物量、总色素含量、类胡萝卜 素含量、净光合速率、蒸腾速率、羧化效率、光系统II最大光化学效率、内在水分利用 效率、碳同位素组分、过氧化氢酶和过氧化物酶活性等,而在CO2补偿点、比叶面积、 叶绿素a/b、丙二醛、脱落酸和超氧化物歧化酶活性等指标上显著低于雌株。与雌株相比, 雄株表现出更高的干旱胁迫适应能力,而雌株的生长发育和生理生化过程更易遭受干旱 胁迫的影响。 2. 干旱胁迫下的青杨雌雄植株对增温处理的综合响应 与环境温度相比,增温在干旱胁迫前后均显著促进了雌雄植株的生长发育、气体交 换,降低水分利用效率,影响生化物质含量,并促使青杨雌雄植株之间在干旱胁迫下表 现出显著的差异。在较好水分条件下,增温导致雌株的株高、基径、叶面积、总叶片数、 总生物量和超氧化物歧化酶活性显著高于雄株,而用水效率、丙二醛、脱落酸和游离脯 氨酸、抗坏血酸过氧化物酶和过氧化物酶活性低于雄株。在干旱胁迫下,增温将导致雄 株的株高、基径、叶面积、总生物量、净光合速率、蒸腾速率、气孔导度、总色素含量、 相对含水量、过氧化氢酶和抗坏血酸过氧化物酶活性等显著高于雌株,而光系统II 最大 光化学效率、内在水分利用效率、碳同位素组分、丙二醛、脱落酸、游离脯氨酸和超氧 化物歧化酶活性显著低于雌株。与雄株相比,水分较好条件下的增温有利于促进雌株的 生长发育,并在生理生态特征上优于雄株。而干旱胁迫下的增温则加剧了水分胁迫强度, 致使雌株的生长发育遭受比雄株更多的负面影响。 3. 干旱胁迫下的青杨雌雄植株对喷施外源脱落酸处理的综合响应 与对照相比,在干旱胁迫下喷施外源脱落酸可显著增加青杨雌雄植株的生长发育、 气体交换、降低水分利用效率,影响了生化物质含量,并导致青杨雌雄植株之间在干旱 胁迫下表现出显著的生理生态差异。在干旱胁迫下,喷施外源脱落酸致使雌株的株高、 叶面积、叶干重、细根干重、总生物量、净光合速率、蒸腾速率、气孔导度、光系统II 最大光化学效率、非光化学淬灭系数、相对含水量、总光合色素、类胡萝卜素、脱落酸、 超氧化物歧化酶和过氧化物酶活性的增加量显著高于雄株,而根重比、根冠比、细根/ 总根、比叶面积、内在水分利用效率、碳同位素组分、丙二醛、脯氨酸、过氧化氢酶和 抗坏血酸过氧化物酶活性等指标的减少量上显著低于雄株。与对照相比,干旱胁迫下的 喷施外源脱落酸则一定程度能减缓植株遭受胁迫的压力,促进植株生长和气体交换,减 少了植株体内的过剩自由基数量,并促使雌株的生长发育和光合能力显著提高,增强其 抗干旱胁迫能力。 With development of global warming and greenhouse effect, drought and desertification have been became main natural disasteres in resent years. Studies on ecophysiological responses of most angiosperm species to environmental stress have been reported, but little is known about dioecious plant responses to drought stress. Since significant differences on growth, survival, reproductive patterns, spatial distribution, as well as resource allocation between males and females of dioecious plant have been formed during evolutionary process, sexual different ecophysiological responses should be caused by drought stress. In this experiment, Populus cathayana Rehd. was used as model plant to study the sex-related responses to drought by using the ecological, physiological and biochemical methods under normal atmospheric temperature, elevated temperatures and exogenous abscisic acid (ABA) application treatment respectively, and to expose the sexual differences in growth, biomass allocation, photosynthesis, water use efficiency and some biochemical material contents in the males and females of dioecious plant. The results are follows: 1. A large set of parallel responses of males and females of P. cathayana to drought stress Compared with well-watered treatment, drought significantly decreased growth and photosynthesis of P. cathayana individuals, affected some physiological and biochemical processes, and induced males and females to exhibit obvious sexual differences in growth, gas exchange, water use efficiency, lipid peroxidation protection and antioxidant defenses enzyme system. Under well-watered treatment, there were no significant sexual differences in height growth (HG), basal diameter (BD), dry matter accumulation (DMA), net photosynthesis rate (A), transpiration (E), water use efficiency (WUE), and malondialdehyde (MDA), abscisic acid (ABA) and praline (Pro). However, under drought stress, males were found to exhibit higher HG, BD, leaf area (LA), total leaf number (TLA), DMA, total chlorophyll contents (TC), carotenoids content (Caro), A, E, carboxylation efficiency (CE), the maximum efficiency of PSII (Fv/Fm), intrinsic water use efficiency (WUE ), carbon isotope composition (δ13C), catalase (CAT), peroxidase (POD) and lower CO2 compensation point (Γ), specific leaf area (SLA), chlorophyll a/b ratio (Chla/Chlb), MDA, ABA and superoxide dismutase (SOD) than females. The results suggest that males possess greater drought resistance than do females and females suffer more negative effect on growth and development, physiological and biochemical processes than males under drought stress. 2. A large set of parallel responses of drought-stressed males and females of P. cathayana to elevated temperatures Compared with environmental temperature, elevated temperature treatment significant increased growth and gas exchange, decreased water use efficiency, changed some biochemical material contents of P. cathayana individuals, and induced males and females to exhibit obvious differences under drought stress. Under good water condition, elevated temperature treatment caused females to show significant higher HG, BD, LA, TLN, DMA, SOD activity, and great lower WUE, MDA, ABA, Pro, ascorbate peroxidase (APX) and POD than do males. On contrary, under drought condition, elevated temperature treatment induced males to exhibit higher HG, BD, LA, DMA, A, E, stomatal conductance (gs), relative water content (RWC), CAT, APX activity but lower Fv/Fm, WUE, δ13C, MDA, ABA, Pro, SOD activity than do females. The results suggest that females will benefit from elevating temperature under good water condition by possessing better ecophysiological processes than that of males, but will suffer from greater negative effects than do males when grown under drought stress with elevated temperature treatment. 3. A large set of parallel responses of drought-stressed males and females of P. cathayana to exogenous ABA application Compared with controls, exogenous ABA application under drought greatly increased growth and gas exchange, decreased water use efficiency, changed some biochemical material contents in P. cathayana individuals, and induced males and females to exhibit obvious sexual differences under drought. Under drought stress, exogenous ABA application induced females to exhibit more increases in HG, LA, leaf weight (LW), fine root weight (FRW), DMA, A, E, g, Fv/Fm, non-photochemical quenching coefficient (qN), RWC, TC, Caro, ABA, SOD, POD s activity than males, but to show lower decreases in root/weight ratio (RWR), root mass/foliage area ratio (RF), fine root/total root ratio (FT), SLA, WUE, δ13C, MDA, Pro, CAT, APX than males. The results suggest that exogenous ABA application under drought stress will eliminate negative damages caused by drought stress at a certain extent,promote the growth and gas exchange of plant and decrease the number of superfluous 1O2 in plant cells of males and females of P. cathayana. Furthermore, exogenous ABA application promoted more drought resistance in females than in males by increasing more growth and photosynthetic capacity in females under drought stress.

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采用改进GAs算法建立了求解大规模规划的资源分配模型.针对大规模资源分配问题的具体特点,设计了合适的GAs算子,并以实例验证了算法的合理性及有效性。

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本文根据在第一部分中推导出来的描述资源竞争的着色ROPN给出在柔性制造系统中无死锁运行的充分必要条件,从而得出相应的控制规律。它是一种资源动态分配的策略,它决定当一个资源空闲时,是否可以分配给一个任务,可以的话先分配给谁,以保证系统无死锁,并使得资源利用率最大。

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柔性制造单元的计划与调度问题已有许多的讨论,但大都针对具体的系统以及对任务做某些假设,本文提出一种多层计划和调度的方法并对每层的功能进行讨论,这种方法的结构可应用于各类单元.同时提出三种机器资源的分配方法.文中给出了仿真结果表明此方法是比较有效的.

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水资源规划是一个复杂的系统规划问题,所以,在水资源规划中,含有大量的不精确的统计数据和模糊关系。由于这些特点,水资源规划必须用特殊的方法来解决。 本文将层次分析法(AHP)和模糊规划(Fuzzy Programming)方法相结合,形成了一种多目标规划的求解方法,并应用于大凌河流域水资源规划研究的课题中,通过实际分析可以看到,这种方法具有较好的实用性。

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Relationship between biology and environment is always the theme of ecology. Transect is becoming one of the important methods in studies on relationship between global change and terrestrial ecosystems, especially for analysis of its driving factors. Inner Mongolia Grassland is the most important in China Grassland Transect brought forward by Yu GR. In this study, changes in grassland community biomass along gradients of weather conditions in Inner Mongolia was researched by the method of transect. Methods of regression about biomass were also compared. The transect was set from Eerguna county to Alashan county (38° 07' 35" ~50° 12' 20" N, 101° 55' 25" -120° 20' 46" E) in Inner Mongolia, China. The sample sites were mainly chosen along the gradient of grassland type, meadow steppe-* typical steppe-*desert steppe-*steppification desert-^desert. The study was carried out when grassland community biomass got the peak in August or September, 2003 and 2004. And data of 49 sample sites was gotten, which included biomass, mean annual temperature, annual precipitation, accumulated temperature above zero, annual hours of sunshine and other statistical and descriptive data. The aboveground biomass was harvested, and the belowground biomass was obtained by coring (30 cm deep). Then all the biomass samples were dried within (80 + 5) °C in oven and weighted. The conclusion is as follows: 1) From the northeast to the southwest in Inner Mongolia, along the gradient of grassland type, meadow steppe-*typical steppe-*desert steppe-*steppification desert-* desert, the cover degree of vegetation community reduces. 2) By unitary regression analysis, biomass is negatively correlated with mean annual temperature, s^CTC accumulated temperature, ^10°C accumulated temperature and annual hours of sunshine, among which mean annual temperature is crucial, and positively with mean annual precipitation and mean annual relative humidity, and the correlation coefficient between biomass and mean annual relative humidity is higher. Altitude doesn't act on it evidently. Result of multiple regression analysis indicates that as the primary restrictive factor, precipitation affects biomass through complicated way on large scale, and its impaction is certainly important. Along the gradient of grassland type, total biomass reduces. The proportion of aboveground biomass to total biomass reduces and then increases after desert steppe. The trend of below ground biomass's proportion to total biomass is adverse to that of aboveground biomass. 3) Precipitation is not always the only driving factor along the transect for below-/aboveground biomass ratio of different vegetation type composed by different species, and distribution of temperature and precipitation is more important, which is much different among climatic regions, so that the trend of below-/aboveground biomass ratio along the grassland transect may change much through the circumscription of semiarid region and arid region. 4) Among reproductive allocation of aboveground biomass, only the proportion of stem in total biomass notably correlates to the given parameters. Stem/leaf biomass ratio decreases when longitude and latitude increase, caloric variables decrease, and variables about water increase from desert to meadow steppe. The change trends are good modeled by logarithm or binomial equations. 5) 0'-10 cm belowground biomass highly correlates to environmental parameters, whose proportion to total biomass changes most distinctly and increases along the gradient from the west to the east. The deeper belowground biomass responses to the environmental change on the adverse trend but not so sensitively as the surface layer. Because the change value of 0~10 cm belowground biomass is always more than that of below 10 cm along the gradient, the deference between them is balanced by aboveground biomass's change by the resource allocation equilibrium hypothesis.