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131.
Summary Adaptive variation can exist at a variety of scales in biological systems, including among species, among local populations of a single species and among individuals within a single population. Trophic or resource polymorphisms in fishes are a good example of the lowest level of this hierarchy. In lakes without bluegill sunfish (Lepomis macrochirus), pumpkinseed sunfish (Lepomis gibbosus) can be trophically polymorphic, including a planktivorous limnetic form found in the pelagic habitat, in addition to the usual benthic form found in the littoral zone. In this paper we examine the degree to which morphological differences between the two forms are caused by genetic differences versus phenotypic plasticity. Adults from pelagic and littoral sites in Paradox Lake, NY, were bred separately and their progeny were raised in cages both in the open water and shallow water habitats of an artificial pond. The experimental design permitted two tests of genetic differences between the breeding stocks (in open and shallow water cages, respectively) and two tests of phenotypic plasticity (in the limnetic and benthic offspring, respectively). Limnetic progeny were more fusiform than benthic progeny raised in the same habitat. In addition, progeny of both stocks displayed limnetic-type characteristics when raised in the open water and benthic-type characteristics in the shallow water. Thus, genetic differences and phenotypic plasticity both contributed to the trophic polymorphism. Phenotypic plasticity and genetic differentiation accounted for 53 and 14%, respectively, of the variation in morphology. This study addresses the nature of subtle phenotypic differences among individuals from a single population that is embedded within a complex community, a condition that is likely to be the norm for most natural populations, as opposed to very large differences that have evolved in relatively few populations that reside in species-poor environments.  相似文献   
132.
The evolutionary history of the interaction among species of derelomine flower weevils (Coleoptera: Curculionidae: Derelomini) and the Panama-hat palm Carludovica (Cyclanthaceae) is analysed with emphasis on the congruence of (1) topologies and (2) character state transformations in each of the Neotropical clades. For this purpose cladistic analyses are complemented with host plant records, natural history information and selected morphological studies of the associated taxa. The interaction is specialized, involving pollination, oviposition into the inflorescences and the predation of seeds (particularly within Systenotelus ). As results from a range of standard coevolutionary methods of analysis indicate, however, events of colonization, extinction and independent (non-reciprocal) speciation have been abundant throughout the history of the association. At the same time it is possible to specify the homology and succession of characters among species of derelomines and Carludovica and interpret them as reciprocal adaptations to attack and protect the seeds, respectively. It is argued that – in light of the limited evolutionary stability of many insect–plant interactions – the question of coevolution is most effectively addressed by combining information from the character- and topology-based approaches.  © 2004 The Linnean Society of London, Biological Journal of the Linnean Society , 2004, 81 , 483–517.  相似文献   
133.
Experiments using natural populations have provided mixed support for thermal adaptation models, probably because the conditions are often confounded with additional environmental factors like seasonality. The contrasting geothermal environments within Lake Mývatn, northern Iceland, provide a unique opportunity to evaluate thermal adaptation models using closely located natural populations. We conducted laboratory common garden and field reciprocal transplant experiments to investigate how thermal origin influences the life history of Radix balthica snails originating from stable cold (6 °C), stable warm (23 °C) thermal environments or from areas with seasonal temperature variation. Supporting thermal optimality models, warm‐origin snails survived poorly at 6 °C in the common garden experiment and better than cold‐origin and seasonal‐origin snails in the warm habitat in the reciprocal transplant experiment. Contrary to thermal adaptation models, growth rate in both experiments was highest in the warm populations irrespective of temperature, indicating cogradient variation. The optimal temperatures for growth and reproduction were similar irrespective of origin, but cold‐origin snails always had the lowest performance, and seasonal‐origin snails often performed at an intermediate level compared to snails originating in either stable environment. Our results indicate that central life‐history traits can differ in their mode of evolution, with survival following the predictions of thermal optimality models, whereas ecological constraints have shaped the evolution of growth rates in local populations.  相似文献   
134.
Ecological speciation occurs when reproductive isolation evolves between populations adapting to contrasting environments. A key prediction of this process is that the fitness of hybrids between divergent populations should be reduced in each parental environment as a function of the proportion of local genes they carry, a process resulting in ecologically dependent reproductive isolation (RI). To test this prediction, we use reciprocal transplant experiments between adjacent populations of an Australian wildflower, Senecio lautus, at two locations to distinguish between ecologically dependent and intrinsic genetic reproductive barriers. These barriers can be distinguished by observing the relative fitness of reciprocal backcross hybrids, as they differ in the contribution of genes from either parent while controlling for any intrinsic fitness effects of hybridization. We show ecologically dependent fitness effects in establishment and survival of backcrosses in one transplant experiment, and growth performance in the second transplant experiment. These results suggest natural selection can create strong reproductive barriers that maintain differentiation between populations with the potential to interbreed, and implies a significant role for ecology in the evolutionary divergence of S. lautus.  相似文献   
135.
The interaction between floral traits and reproductive isolation is crucial to explaining the extraordinary diversity of angiosperms. Heterostyly, a complex floral polymorphism that optimizes outcrossing, evolved repeatedly and has been shown to accelerate diversification in primroses, yet its potential influence on isolating mechanisms remains unexplored. Furthermore, the relative contribution of pre‐ versus postmating barriers to reproductive isolation is still debated. No experimental study has yet evaluated the possible effects of heterostyly on pre‐ and postmating reproductive mechanisms. We quantify multiple reproductive barriers between the heterostylous Primula elatior (oxlip) and P. vulgaris (primrose), which readily hybridize when co‐occurring, and test whether traits of heterostyly contribute to reproductive barriers in unique ways. We find that premating isolation is key for both species, while postmating isolation is considerable only for P. vulgaris; ecogeographic isolation is crucial for both species, while phenological, seed developmental, and hybrid sterility barriers are also important in P. vulgaris, implicating sympatrically higher gene flow into P. elatior. We document for the first time that, in addition to the aforementioned species‐dependent asymmetries, morph‐dependent asymmetries affect reproductive barriers between heterostylous species. Indeed, the interspecific decrease of reciprocity between high sexual organs of complementary floral morphs limits interspecific pollen transfer from anthers of short‐styled flowers to stigmas of long‐styled flowers, while higher reciprocity between low sexual organs favors introgression over isolation from anthers of long‐styled flowers to stigmas of short‐styled flowers. Finally, intramorph incompatibility persists across species boundaries, but is weakened in long‐styled flowers of P. elatior, opening a possible backdoor to gene flow through intramorph pollen transfer between species. Therefore, patterns of gene flow across species boundaries are likely affected by floral morph composition of adjacent populations. To summarize, our study highlights the general importance of premating isolation and newly illustrates that both morph‐ and species‐dependent asymmetries shape boundaries between heterostylous species.  相似文献   
136.
目的:探讨小腿挤压伤伴撕脱伤患者的整体治疗方法,并分析其临床应用价值。方法:回顾性分析我院近5年来收治的23例小腿挤压伤伴撕脱伤患者的临床资料,分别采用行自体皮肤反削回植、异种皮覆盖或封闭负压吸引治疗+二期植皮、知名血管皮瓣转移、单纯清创缝合。结果:23例中,18例Ⅰ期愈合;5例局部皮肤坏死,经换药后Ⅱ期愈合2例,残余创面行植皮后Ⅱ期愈合1例;骨外露者经皮瓣转移修复后Ⅱ期愈合2例。随访3-16月,临床效果满意。结论:对于小腿挤压伤伴撕脱伤,依具体情况采用自体皮肤反削回植、异种皮覆盖或封闭负压吸引治疗+二期植皮、知名血管皮瓣转移、单纯清创缝合等方法修复创面对患者肢体功能恢复有较大的作用,临床效果较好,利于患者康复,具有一定的推广应用价值。  相似文献   
137.
目的:探讨丹参酮IIA磺酸钠注射液对烧伤患者植皮创面愈合及瘢痕形成情况的影响。方法:选取2014年3月至2014年12月我院收治的烧伤植皮患者62例,根据临床用药分为试验组(使用丹参酮IIA磺酸钠注射组)与对照组(未使用丹参酮IIA磺酸钠注射液)。比较两组创面愈合情况,术后植皮成活率及愈合后瘢痕形成情况。结果:1经治疗,两组创面均愈合,试验组患者植皮成活率为(97.12±1.89)%,高于对照组(89.96±1.86)%,差异具有统计学意义(P0.01);试验组愈合时间较对照组短,试验组创面愈合时间为10.1±1.9天,对照组为14.3±2.3天,两组比较差异具有统计学意义(P0.001);瘢痕形成评价试验组均优于对照组,差异具有统计学意义,其中血肿面积(1.50±0.03 vs.3.04±0.08,P0.01)、畸形率[2(6.45)vs.8(25.81),P0.05]、感染率[2(6.45)vs.9(29.03),P0.05]。结论:丹参酮IIA磺酸钠注射液对于烧伤植皮创面的患者,能够提高植皮成活率,促进创面愈合,减轻瘢痕形成,改善创面愈合质量。  相似文献   
138.
139.
The late flowering, quantitative long day habit of wild type pea ( Pisum sativum L.) is conferred by the joint presence of dominant genes Sn, Dne and Ppd. Grafting studies have shown that flowering in wild type plants is delayed under short days by formation of a graft-transmissible inhibitor and that the early flowering, day neutral mutants sn and dne are deficient in this inhibitor. However, the physiological action of the Ppd gene has not been examined by grafting and the possibility exists that the ppd mutation causes early flowering and a day neutral habit by blocking response to, rather than synthesis of, the inhibitor. We here identify a second, more severe (probably null) mutant allele ( ppd -2) at the Ppd locus and show that flowering was delayed by 4 nodes in a ppd -2 shoot grafted to a wild type stock, and promoted by 13 nodes in a wild type shoot grafted to a ppd -2 stock. Thus a ppd -2 shoot can respond to inhibitor donated by a wild type stock but a ppd -2 stock is unable to provide sufficient inhibitor to prevent early flower initiation in a wild type shoot. We conclude genes Sn, Dne and Ppd each control steps in the synthesis of the flower inhibitor. Grafts among the sn, dne and ppd mutants gave an indication that the three genes may act in the sequence Sn, Ppd, Dne , but possible cases of physiological complementation need to be tested using null mutants in the same genetic background.  相似文献   
140.
Oenothera nutans, common to the Appalachian Mts between 650 and 1 700 m altitude, was investigated cytogenetically and taxonomically. The species is permanently structurally heterozygous. It consists of two genomes of the B-type which are more or less indistinguishable phenotypically. Nearly all of the strains investigated possess a self-incompatibility factor in one of the two complexes. Both complexes show a close relationship to the predominantly homozygousO. grandiflora, a native of the southern lowlands.O. nutans andO. grandiflora possess the same plastid type, plastome III. Probably,O. nutans evolved by an accumulation of reciprocal translocations within an originally structurally homozygous population, which must be regarded ancestral to the present forms ofO. grandiflora.  相似文献   
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