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1.
《植物生态学报》2014,38(3):270
近年来逆境导致植物雌雄幼苗的生长出现差异被许多控制实验所证实, 而有关气候变化对雌雄异株植物成树生长的潜在影响尚未引起人们广泛的关注。为进一步揭示气候变化对雌雄植株树木径向和密度生长的不同影响, 该文通过树轮生态学的研究方法, 选择小五台山天然青杨(Populus cathayana)种群为研究对象, 对青杨雌雄植株近30年(1982-2011)的树轮生长特性及其与气候的相关性进行了分析。结果显示: 1)在近30年当地气温不断升高的气候条件下, 雌株的年轮最大密度和晚材平均密度均高于雄株(p < 0.05), 但雌雄植株的径向生长无显著差异; 2)雌雄植株年轮最大密度和宽度差值年表的变化趋势具有一致性, 但在年轮最大密度差值年表的变化上雄株波动幅度大于雌株; 3)青杨雌雄植株年轮密度差值年表对温度响应的月份明显不同。雌株年轮最大密度与当年8月的月平均最高气温显著正相关, 而雄株年轮最大密度与当年1月和4月的气温负相关; 4)生长季前的气候变化对青杨雌雄植株的径向生长均有明显的限制作用。此外, 当年6月的高温对于早材生长的限制作用特别明显。上述结果表明, 雌雄异株植物在树木年轮生长方面对全球气候变暖可能具有不同的响应机制, 雌株比雄株更侧重于密度生长。  相似文献   

2.
近年来逆境导致植物雌雄幼苗的生长出现差异被许多控制实验所证实, 而有关气候变化对雌雄异株植物成树生长的潜在影响尚未引起人们广泛的关注。为进一步揭示气候变化对雌雄植株树木径向和密度生长的不同影响, 该文通过树轮生态学的研究方法, 选择小五台山天然青杨(Populus cathayana)种群为研究对象, 对青杨雌雄植株近30年(1982-2011)的树轮生长特性及其与气候的相关性进行了分析。结果显示: 1)在近30年当地气温不断升高的气候条件下, 雌株的年轮最大密度和晚材平均密度均高于雄株(p < 0.05), 但雌雄植株的径向生长无显著差异; 2)雌雄植株年轮最大密度和宽度差值年表的变化趋势具有一致性, 但在年轮最大密度差值年表的变化上雄株波动幅度大于雌株; 3)青杨雌雄植株年轮密度差值年表对温度响应的月份明显不同。雌株年轮最大密度与当年8月的月平均最高气温显著正相关, 而雄株年轮最大密度与当年1月和4月的气温负相关; 4)生长季前的气候变化对青杨雌雄植株的径向生长均有明显的限制作用。此外, 当年6月的高温对于早材生长的限制作用特别明显。上述结果表明, 雌雄异株植物在树木年轮生长方面对全球气候变暖可能具有不同的响应机制, 雌株比雄株更侧重于密度生长。  相似文献   

3.
性类固醇激素对黄颡鱼雌雄生长二态性的影响   总被引:1,自引:0,他引:1  
为了研究性类固醇激素在雌雄生长二态性中(Sexual Size Dimorphism, SSD)的作用, 文章分析了性类固醇激素对雌雄生长、性腺发育和能量代谢的影响。结果显示: 17β-雌二醇(17β-estradiol, E2)显著抑制黄颡鱼的生长, 且E2显著促进能量在肝脏中的分配, 但在摄食量上无显著影响, 所以E2对黄颡鱼生长的抑制是能量分配的差异引起, 而不是能量获取差异引起。17α-甲基睾丸酮(17α-Methyltestosterone, MT)显著促进雌鱼生长, 但抑制雄鱼生长, MT能显著促进黄颡鱼摄食和肝脏的能量分配, 显著抑制卵母细胞的发育和卵巢的能量投入。本研究发现MT通过促进摄食, 抑制卵巢发育并且减少性腺发育的能量投入, 从而促进雌鱼生长; E2能够显著增加雌雄鱼在肝脏中能量的投入, 最终抑制雌雄生长。实验结果只能部分解释实验中观察到的生长差异现象, 因此我们需要更进一步从能量的摄入、分配及消耗三方面来研究雌雄生长的二态性。  相似文献   

4.
【目的】探明亚洲玉米螟不同地理种群性体型二型性及幼虫发育历期与蛹重的关系。【方法】在26℃,L︰D=16︰8条件下,详细记录了来自热带地区的海南省三亚种群,来自亚热带地区的广东省广州和江西省永修种群,及来自温带地区的河北廊坊种群的雌雄幼虫发育历期、蛹重、成虫重,并计算幼虫发育速率。【结果】不同地理种群的雌性个体均显著大于雄性个体。三亚种群雌雄个体的发育历期没有差异,但雌性的生长速率显著大于雄性个体;广州种群、永修种群及廊坊种群,雌雄的生长速率没有差异,但雌性幼虫的发育历期显著长于雄性幼虫。各地理种群蛹重随幼虫发育历期的延长呈下降趋势。【结论】亚洲玉米螟存在明显的性体型二型性,雌雄个体发育历期和生长速率存在地理差异。  相似文献   

5.
植物种群营养生长和生殖生长的关系是植物生殖生态学研究的重要内容之一,自本世纪70年代,国外已有大量报道,但国内的研究报道很少。本在种群水平上研究了人工油松种群一年生雌性枝条和雄性枝条在枝长、直径、叶数、叶生物量、枝生物量及新生枝条在大小孢子球生物量、雌雄枝条长度和生物量等方面的差异,结果表明,一年生枝条除在西方向上雌雄枝条直径差异显和在东、西方向上雌雄枝条生物量差异显外,其它处理条件下雌雄枝  相似文献   

6.
王仁忠 《植物研究》2000,20(4):450-457
植物种群营养生长和生殖生长的关系是植物生殖生态学研究的重要内容之一,自本世纪70年代,国外已有大量报道,但国内的研究报道很少。本文在种群水平上研究了人工油松种群一年生雌性枝条和雄性枝条在枝长、直径、叶数、叶生物量、枝生物量及新生枝条在大小孢子球生物量、雌雄枝条长度和生物量等方面的差异,结果表明,一年生枝条除在西方向上雌雄枝条直径差异显著和在东、西方向上雌雄枝条生物量差异显著外,其它处理条件下雌雄枝条在长度、直径、叶数、叶生物量和枝生物量等方面差异均不显著;而对新生枝条的取样分析表明同方向上雌雄枝条在大小孢子球生物量、雌雄枝条长度、雌雄枝条生物量等方面差异均显著或极显著。无论是一年生枝条,还是新生枝条,在东、西、南、北四个方向上其各项指标差异显著或极显著。  相似文献   

7.
长江上游长鳍吻鮈年龄与生长的研究   总被引:1,自引:0,他引:1  
根据2005~2007年对长江上游攀枝花、宜宾、合江、木洞、万州江段渔业资源调查资料,研究了长鳍吻鮈的年龄与生长特征.结果表明,体重与体长关系雌雄群体间无显著差异,其表达式为 W=6.25×10-6L3.2115(R2=0.932,P<0.01);体长与鳞径关系雌雄群体间无显著差异,其表达式为 L=12.00+0.52R(R2=0.906,P<0.01);用Von Bertalanffy方程拟合各生长参数分别为:L∞=299.42 mm,k=0.24a-1,t0=-0.42a;生长拐点为4.45a;当前长鳍吻鮈资源处于过度利用状态.  相似文献   

8.
长期以来雌性脊椎动物的性别分化被认为是一个"默认"的程序.但是近些年研究发现,Rspo1基因的突变或缺失可导致哺乳动物XX型个体性反转为雄性.Rspo1在鱼类、两栖爬行类、鸟类和哺乳类动物性腺发育的不同阶段表达,其表达在雌雄个体性别分化时期有差异,是潜在的性别调控基因.Rspo1在性别发育早期可通过Wnt/β-catenin信号通路调控性腺分化相关因子的表达,影响原始生殖细胞分裂增殖、细胞周期和生长发育,参与调控性腺中体细胞的分化.本文总结了近年来Rspo1在脊椎动物中的表达调控及其在雌性性别决定方面功能的研究进展.  相似文献   

9.
长期以来雌性脊椎动物的性别分化被认为是一个“默认”的程序.但是近些年研究发现,Rspo1基因的突变或缺失可导致哺乳动物XX型个体性反转为雄性.Rspo1在鱼类、两栖爬行类、鸟类和哺乳类动物性腺发育的不同阶段表达,其表达在雌雄个体性别分化时期有差异,是潜在的性别调控基因.Rspo1在性别发育早期可通过Wnt/β-catenin信号通路调控性腺分化相关因子的表达,影响原始生殖细胞分裂增殖、细胞周期和生长发育,参与调控性腺中体细胞的分化.本文总结了近年来Rspo1在脊椎动物中的表达调控及其在雌性性别决定方面功能的研究进展.  相似文献   

10.
2011年6月10~24日,在北京松山自然保护区采用全日观察法,对在游览道路旁的人工巢箱内繁殖的1对白眉姬鹟的育雏行为及其栖息地环境条件进行了系统观察与数据采集.结果显示育雏前期和后期雌雄鸟日喂食次数及各时段雌雄鸟进出巢的平均次数均有一定差异,白眉姬鹟在育雏过程中雌鸟喂食次数随雏鸟生长而增加,雄鸟则无明显变化.游客及人为干扰对雌雄鸟出入巢穴均有一定影响,雌鸟较之雄鸟更为胆怯和谨慎.表明白眉姬鹟雌雄鸟在育雏中的行为存在分工和差异.  相似文献   

11.
The evolution and maintenance of sexual dimorphism has long been attributed to sexual selection. Niche divergence, however, serves as an alternative but rarely tested selective pressure also hypothesized to drive phenotypic disparity between males and females. We reconstructed ancestral social systems and diet and used Ornstein–Uhlenbeck (OU) modeling approaches to test whether niche divergence is stronger than sexual selection in driving the evolution of sexual dimorphism in cranial size and bite force across extant Musteloidea. We found that multipeak OU models favored different dietary regimes over social behavior and that the greatest degree of cranial size and bite force dimorphism were found in terrestrial carnivores. Because competition for terrestrial vertebrate prey is greater than other dietary groups, increased cranial size and bite force dimorphism reduces dietary competition between the sexes. In contrast, neither dietary regime nor social system influenced the evolution of sexual dimorphism in cranial shape. Furthermore, we found that the evolution of sexual dimorphism in bite force is influenced by the evolution of sexual dimorphism in cranial size rather than cranial shape. Overall, our results highlight niche divergence as an important mechanism that maintains the evolution of sexual dimorphism in musteloids.  相似文献   

12.
Sexually dimorphic head shape is common in vertebrates from teleosts to mammals. Herein we document that cephalic sexual dimorphism is also found in the cartilaginous fishes (Chondrichthyes). Male bonnethead sharks develop a prominent bulge along the anterior margin of the cephalofoil at the onset of sexual maturity. This contrasts with the uniformly rounded anterior margin of adult females and juveniles and embryos of both sexes. The anterior cephalic bulge is produced by elongation of the rod-like rostral cartilages, and its appearance corresponds temporally with the elongation of the rod-like cartilages of the male intromittent organs (claspers). We propose that the rostral cartilage elongation is a byproduct of endocrinological changes at the onset of sexual maturity that stimulate growth of the clasper cartilages. The basal location of the chondrichthyan fishes within the vertebrate clade extends the earliest appearance of cephalic sexual dimorphism among the vertebrates.  相似文献   

13.
Selection pressures that act differently on males and females produce numerous differences between the sexes in morphology and behaviour. However, apart from the controversial report that males have slightly heavier brains than females in humans, evidence for substantial sexual dimorphism in brain size is scarce. This apparent sexual uniformity is surprising given that sexually distinct selection pressures are ubiquitous and that brains are one of the most plastic vertebrate organs. Here we demonstrate the highest level of sexual brain size dimorphism ever reported in any vertebrate: male three-spined stickleback of two morphs in an Icelandic lake have 23% heavier brains than females. We suggest that this dramatic sexual size dimorphism is generated by the many cognitively demanding challenges that males are faced in this species, such as an elaborate courtship display, the construction of an ornate nest and a male-only parental care system. However, we consider also alternative explanations for smaller brains in females, such as life-history trade-offs. Our demonstration of unprecedented levels of sexual dimorphism in brain size in the three-spined stickleback implies that behavioural and life-history differences among the sexes can have strong effects also on neural development and proposes new fields of research for understanding brain evolution.  相似文献   

14.
Sexual selection,sexual dimorphism and plant phylogeny   总被引:2,自引:0,他引:2  
Summary Darwin examined sexual dimorphism in animals, arguing that sexual selection was important in the evolution of such dimorphism. Sexual dimorphism in plants may have parallel causes and costs.The processes that contribute to sexual dimorphism may also lead to speciation and morphological differences among related species, as argued originally by Darwin. Where sexes are separate and dimorphism is well-developed, males of related animal species (both vertebrate and invertebrate) are often strikingly different from each other, while females may be virtually indistinguishable. A similar pattern may exist in plants: it is frequently the males (of dioecious taxa) or the male portions of the flower (in co-sexual flowers) that apparently have diversified. I suggest that the similarity of pattern may be accounted for by a similarity of process.In addition, sexual selection may have contributed to certain evolutionary trends within the angiosperms and, indeed, to angiosperm radiation.  相似文献   

15.
Differences among taxa in sexual size dimorphism of adults can be produced by changes in distinct developmental processes and thus may reflect different evolutionary histories. Here we examine whether divergence in sexual dimorphism of adults between recently established Montana and Alabama populations of the house finch (Carpodacus mexicanus) can be attributed to population differences in growth of males and females. In both populations, males and females were similar at hatching, but as a result of sex-specific growth attained sexual size dimorphism by the time of independence. Timing and extent of growth varied between the sexes: Females maintained maximum rates of growth for a longer time than males, whereas males had higher initial growth rates and achieved maximum growth earlier and at smaller sizes than females. Ontogeny of sexual dimorphism differed between populations, but in each population, sexual dimorphism in growth parameters and sexual dimorphism at the time of nest leaving were similar to sexual dimorphism of adults. Variation in growth of females contributed more to population divergence than did growth of males. In each population, we found close correspondence between patterns of sexual dimorphism in growth and population divergence in morphology of adults: Traits that were the most sexually dimorphic in growth in each population contributed the most to population divergence in both sexes. We suggest that sex-specific expression of phenotypic and genetic variation throughout the ontogeny of house finches can result in different responses to selection between males and females of the same age, and thus produce fast population divergence in the sexual size dimorphism.  相似文献   

16.
Insight into the ontogeny of sexual dimorphism is important to our understanding of life history, ecology, and evolution in primates. This study applied a three-dimensional method, Euclidean Distance Matrix Analysis, to investigate sexual dimorphism and its diachronic changes in rhesus macaque (Macaca mulatta) skulls. Twenty-one landmarks in four functional areas of the craniofacial skeleton were digitized from macaques of known age and sex from the Cayo Santiago collections. Then, a series of mean form matrices, form difference matrices, and growth matrices were computed to demonstrate growth curves, rates and duration of growth, and sexual dimorphism within the neurocranium, basicranium, palate, and face. The inclusion of fully adult animals revealed a full profile of sexual dimorphism. Additionally, we demonstrate for the first time diachronic change in adult sexual dimorphism caused by extended growth in adult females. A quicker growth rate in males from ages 2 to 8 was offset by a longer duration of growth in adult females that resulted in diminished dimorphism between the ages of 8 and 15. Four functional areas showed different sex-specific growth patterns, and the rate and duration of growth in the anterior facial skeleton contributed most to the changing profiles of sexual dimorphism. The late maturation in size of the female facial skeleton corresponds to later and less complete fusion of facial sutures. The prolongation of growth in females is hypothesized to be an evolutionary response to high levels of intrasexual competition, as is found in other primate species such as common chimpanzees with similar colony structure and reproductive behavior. Further investigation is required to determine (1) if this phenomenon observed in craniofacial skeletons is linked to sexual dimorphism in body size, and (2) whether this diachronic change in sexual dimorphism is species specific. The changing profile of sexual dimorphism in adult rhesus macaques suggests caution in studying sexual dimorphism in fossil primate and human forms.  相似文献   

17.
Growth and sexual dimorphism have long been the focus of investigation for researchers interested in the life history and socioecology of nonhuman primates. Previous research has shown that sex differences in the duration of growth, or bimaturism, are primarily responsible for the sexual dimorphism observed in anthropoid primates with multimale–multifemale social structure, such as macaques. The present study investigates sex differences in patterns of craniofacial and somatometric growth relative to head and body size and relative to dental development in a population of hybrid macaques (Cercopithecidae: Macaca ) from Sulawesi, Indonesia. How these patterns may contribute to sexual dimorphism in this hybrid population is also examined. The results of the study suggest that there is no substantial effect on the levels of sexual dimorphism associated with hybridization in these macaques. Although sex differences in patterns of size-related, or allometric, growth patterns play a significant role in the development of sexual dimorphism for some cranial dimensions in these hybrids, bimaturism seems to be the primary component in the ontogeny of sexual dimorphism in this hybrid population. The observed levels of hybrid dimorphism and the predominant ontogenetic pattern of bimaturism characterized by prolonged male growth are consistent with previously published reports on dimorphism and growth in other cercopithecine primates.  相似文献   

18.
《Comptes Rendus Palevol》2014,13(8):701-707
The interpretation of exaggerated structures in the vertebrate fossil record has been hampered by disagreement over the definition of sexual selection and how it relates to sexual dimorphism. Previous assertions that Darwin placed a requirement of sexual dimorphism on sexual selection are mistaken. Instead, Darwin describes variation within one sex and the exertion of a struggle (expressed as intrasexual competition, intersexual mate choice, or both) as the necessary components of sexual selection. The use of structures by one sex to attract mates or repel rivals for mates occurs independently of any existing sexual differences. Differential mating success is also a requirement of Darwinian sexual selection. Mutual sexual selection is a legitimate concept that was described by Darwin. Sexual selection remains a viable explanatory hypothesis for the presence of exaggerated structures of extinct organisms and need not be dismissed summarily, but should not be employed without support as a default hypothesis.  相似文献   

19.
Variation between the sexes during ontogeny is frequently overlooked in discussions of the phylogenetic patterns of adult sexual dimorphism. Different growth trajectories can produce identical degrees and direction of adult dimorphism and the possibility exists that similarities in adults may be the result of differing growth patterns, suggesting independent evolutionary pathways among species to the seemingly identical adult morphology. We quantified the sexual dimorphism in craniofacial skeletal growth of Cavia porcellus, the guinea pig, using longitudinally collected radiographs. Guinea pigs have male-biased sexual dimorphism in size and in growth parameters, despite literature reports to the contrary. These results, analyzed with equivalent data for five species of rodents, and two outgroups representing similarly sized mammals, a rabbit and a marsupial, indicate that some aspects of sexual differences in growth follow phylogenetic lines, while others are a function of whether the species has male- or female-biased dimorphism.  相似文献   

20.
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