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外来入侵植物五爪金龙(Ipomoea cairica)对华南地区的生态环境造成严重危害,表型可塑性可增强外来物种的入侵能力。本文通过盆栽试验研究土壤含水量为10%、20%和30%对外来入侵植物五爪金龙种子萌发、植株表型可塑性和化感作用的影响,探讨五爪金龙对土壤水分变化的响应机理,为进一步了解五爪金龙的入侵机理和提高对入侵种的预警和控制能力提供理论依据。结果表明,(1)在土壤含水量为10%,20%和30%条件下,五爪金龙种子的萌发率分别为15.2%、36.4%和33.6%。五爪金龙种子的萌发率随土壤含水量的增加而增加,尤其是在土壤含水量为30%时,五爪金龙种子萌发率最高。(2)土壤含水量为10%、20%和30%时,五爪金龙植株的总生物量分别为0.88、2.26和2.42 g。与土壤含水量为10%相比,土壤含水量为20%和30%条件下五爪金龙的总生物量分别增加了156.8%和175.0%,表明土壤水分增加显著增加了五爪金龙的总生物量。土壤含水量增加显著增加了五爪金龙的叶面积、叶生物量比、比叶面积和茎长,同时减少了根生物量比和根冠比,而对茎生物量比无显著影响。(3)相同浓度的五爪金龙水浸提液对受体植物莴苣(Lactuca sativa)和萝卜(Raphanus sativus)根长和苗高生长的化感抑制作用随着土壤含水量的减少而增强。研究表明:五爪金龙通过改变生物量分配模式和化感潜力对土壤水分变化有一定的适应能力。 相似文献
33.
Studies of parental behavior in various habitats provide an opportunity to gain insight into how different environments may
mold strategies of parental care. Brood division by parents has been hypothesized to occur facultatively within and among
species. Brood division occurs when each parent cares for specific offspring within a brood. We studied brood division in
a neotropical passerine, the western slaty antshrike (Thamnophilus atrinucha). Our results present a unique picture of a highly specialized example of avian brood division. Division was a fixed behavioral
pattern in the population studied: all broods divided by fledging and remained divided during the entire post-fledging period.
Brood division before fledging, a previously unreported phenomenon, occurred in 40% of nests observed. Parents that preferentially
fed a certain offspring (defined as their focal offspring) in the nest fed the same individual after fledging. Each parent
fed only its focal offspring in broods of one and two. The male parent cared for the heavier offspring and the first offspring
to leave the nest. Siblings were segregated spatially during the time of highest predation risk. These observations suggest
that a consistently high risk of predation on offspring has favored initial spatial segregation and inflexibility of brood
division behavior in this species. Factors other than predation risk alone may explain the observed patterns of long-term,
perfect brood division. Because high predation is common and relatively predictable in the tropics, selection for fixed brood
division may be stronger in tropical birds than in the temperate zone. 相似文献
34.
胚胎期及哺乳期全氟辛烷磺酸盐(PFOS)暴露对大鼠长时程突触可塑性影响的miRNA组学研究 总被引:1,自引:0,他引:1
为探讨PFOS胚胎期及哺乳期暴露对动物子代学习记忆能力影响的分子机理,采用微小RNA(miRNA)芯片技术检测PFOS胚胎期及哺乳期暴露对出生第1和7天大鼠脑组织miRNA表达的影响,分析突触可塑性相关miRNA表达的差异变化。结果显示,经PFOS暴露后出生第1和7天的大鼠脑组织中分别有24和17个miRNA发生显著性差异表达(p<0.05),其中与突触传递和神经递质转运等相关的miRNA的差异表达最为显著,主要包括miR-466b、miR-672、miR-297、miR-674-3p和miR-207。差异表达miRNA的路径分析显示出生后1和7d的大鼠的长时程增强效应(LTP)均受PFOS显著影响(p<0.05),这说明PFOS胚胎期及哺乳期暴露可能通过影响LTP的形成、发展和维持过程对大鼠子代大脑学习记忆能力造成威胁,并且miR-466b、miR-672、miR-297、miR-674-3p和miR-207可能参与了其中的调控过程。 相似文献
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当建筑物出现重大问题或险情时,由构件裂缝的外观和成因对钢筋混凝土结构进行分析和应急评定,可快速、简便地发现事故原因和危险程度,从而为处理工程事故提供定性依据。 相似文献
36.
Increasing empirical and theoretical evidence supports the idea that sympatric speciation is operating, for example, in species
flocks comprising several closely related fish species within one lake. Divergent natural selection (promoting spatial and
food niche partitioning) and sexual selection (assortative mating) have been identified as key selection factors in intralacustric
adaptive radiations. However, the evolution of social behaviors accompanying such adaptive radiations is less well understood.
Using a phylogenetically young species flock of pupfish (Cyprinodon spp.) as a model, we examined differences among six sympatric species and compared their shoaling, aggressive, and territorial
behaviors with that of a sister species (C. artifrons). Despite an estimated age of the species flock of less than 8,000 years, pronounced behavioral differentiation was found.
C. simus, the smallest species in the flock, shoaled more than the other species and was less aggressive and less territorial than
C. beltrani. F1-hybrids between C. simus males and C. beltrani females showed an intermediate expression of shoaling and aggressive behavior. Niche partitioning among the members of this
species flock appears to be accompanied by rapid divergent evolution of social behaviors. We discuss the potential role of
phenotypic plasticity and within-species variation of social behaviors for such rapid behavioral diversifications in sympatric
speciation processes. 相似文献
37.
We analyzed spatiotemporal dynamics of cyanobacteria using a four-component mathematical model with nutrients, unicellular algae, colonial algae and herbivorous zooplankton. One of the astonishing abilities of cyanobacteria is the morphological change from the unicellular type to the colonial or filamentous type in response to grazing activities of zooplankton, the phenomenon known as phenotypic plasticity. Our model, referred to as comprehensive cyanobacterial model (CCM), includes the effects of phenotypic plasticity. Depending on parameter values, CCM exhibits not only bistability but also limit cycle oscillations without showing the paradox of enrichment, which has been a controversy among mathematical ecologists. Further, CCM is modified to reaction–advection–diffusion equations, the simulation results of which indicate that the ratio of the lateral diffusivity to the turbulent velocity significantly affects the appearance of patchiness patterns. 相似文献
38.
N.E. Grulke 《Environmental pollution (Barking, Essex : 1987)》2010,158(6):2032-1865
Population variation in ecophysiological traits of four co-occurring montane conifers was measured on a large latitudinal gradient to quantitatively assess their potential for response to environmental change. White fir (Abies concolor) had the highest variability, gross photosynthetic rate (Pg), and foliar carbon (C) and nitrogen (N) content. Despite low water use efficiency (WUE), stomatal conductance (gs) of fir was the most responsive to unfavorable environmental conditions. Pinus lambertiana exhibited the least variability in Pg and WUE, and is likely to be the most vulnerable to environmental changes. Pinus ponderosa had an intermediate level of variability, and high needle growth at its higher elevational limits. Pinus Jeffreyi also had intermediate variability, but high needle growth at its southern latitudinal and lower elevational limits. The attributes used to assess tree vigor were effective in predicting population vulnerability to abiotic (drought) and biotic (herbivore) stresses. 相似文献
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Abstract: Climate change affects individual organisms by altering development, physiology, behavior, and fitness, and populations by altering genetic and phenotypic composition, vital rates, and dynamics. We sought to clarify how selection, phenotypic plasticity, and demography are linked in the context of climate change. On the basis of theory and results of recent empirical studies of plants and animals, we believe the ecological and evolutionary issues relevant to population persistence as climate changes are the rate, type, magnitude, and spatial pattern of climate‐induced abiotic and biotic change; generation time and life history of the organism; extent and type of phenotypic plasticity; amount and distribution of adaptive genetic variation across space and time; dispersal potential; and size and connectivity of subpopulations. An understanding of limits to plasticity and evolutionary potential across traits, populations, and species and feedbacks between adaptive and demographic responses is lacking. Integrated knowledge of coupled ecological and evolutionary mechanisms will increase understanding of the resilience and probabilities of persistence of populations and species. 相似文献
40.
Summary. Recent studies indicate that amphibian eggs are capable of hatching plasticity in response to chemical cues released by predators
feeding on conspecific eggs or larvae. However, information is scarce on the relative importance of predator and conspecific
cues in such a process. In particular, no attempt has been made to compare the effects of embryonic exposures to chemical
cues indicative of a predation risk for eggs and larvae, although both life stages can co-occur in natural habitats. In this
context, common frog embryos (Rana temporaria) were raised until hatching in the presence of crushed conspecific extracts from eggs and tadpoles to assess their respective
influences on some hatching and larval traits. While a significant delay in hatching time was observed in embryos exposed
to chemical cues from tadpole extract, this life-history shift appeared unaffected by embryonic exposure to egg extract. Hatchlings
derived from eggs incubated in the presence of both conspecific extracts showed a significantly greater weight than unexposed
controls. However, such an effect was no longer apparent 15, 30 and 50 days after hatching, suggesting that embryonic exposure
to chemical cues from damaged conspecific eggs and tadpoles has no influence on larval growth. Lastly, morphological measurements
performed on hatchlings and older tadpoles (15, 30 and 50 days old) revealed no significant effect of embryonic treatments
on the shape of body and tail. 相似文献