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The evolution of human fatness and susceptibility to obesity: an ethological approach.

Human susceptibility to obesity is an unusual phenomenon amongst animals. An evolutionary analysis, identifying factors favouring the capacity for fat deposition, may aid in the development of preventive public health strategies. This article considers the proximate causes, ontogeny, fitness value and evolutionary history of human fat deposition. Proximate causes include diet composition, physical activity level, feeding behaviour, endocrine and genetic factors, psychological traits, and exposure to broader environmental factors. Fat deposition peaks during late gestation and early infancy, and again during adolescence in females. As in other species, human fat stores not only buffer malnutrition, but also regulate reproduction and immune function, and are subject to sexual selection. Nevertheless, our characteristic ontogenetic pattern of fat deposition, along with relatively high fatness in adulthood, contrasts with the phenotype of other mammals occupying the tropical savannah environment in which hominids evolved. The increased value of energy stores in our species can be attributed to factors increasing either uncertainty in energy availability, or vulnerability to that uncertainty. Early hominid evolution was characterised by adaptation to a more seasonal environment, when selection would have favoured general thriftiness. The evolution of the large expensive brain in the genus Homo then favoured increased energy stores in the reproducing female, and in the offspring in early life. More recently, the introduction of agriculture has had three significant effects: exposure to regular famine; adaptation to a variety of local niches favouring population-specific adaptations; and the development of social hierarchies which predispose to differential exposure to environmental pressures. Thus, humans have persistently encountered greater energy stress than that experienced by their closest living relatives during recent evolution. The capacity to accumulate fat has therefore been a major adaptive feature of our species, but is now increasingly maladaptive in the modern environment where fluctuations in energy supply have been minimised, and productivity is dependent on mechanisation rather than physical effort. Alterations to the obesogenic environment are predicted to play a key role in reducing the prevalence of obesity.

Adipose Tissue↗

AID from bony fish catalyzes class switch recombination.

Class switch recombination was the last of the lymphocyte-specific DNA modification reactions to appear in the evolution of the adaptive immune system. It is absent in cartilaginous and bony fish, and it is common to all tetrapods. Class switching is initiated by activation-induced cytidine deaminase (AID), an enzyme expressed in cartilaginous and bony fish that is also required for somatic hypermutation. Fish AID differs from orthologs found in tetrapods in several respects, including its catalytic domain and carboxy-terminal region, both of which are essential for the switching reaction. To determine whether evolution of class switch recombination required alterations in AID, we assayed AID from Japanese puffer and zebra fish for class-switching activity in mouse B cells. We find that fish AID catalyzes class switch recombination in mammalian B cells. Thus, AID had the potential to catalyze this reaction before the teleost and tetrapod lineages diverged, suggesting that the later appearance of a class-switching reaction was dependent on the evolution of switch regions and multiple constant regions in the IgH locus.

Animals↗

[New nematodes of the genus Trichospirura Smith and Chitwood, 1967, in Malaysia. Remarks on the evolution of the family Rhabdochonidae (author's transl)].

Description of Trichospirura willmottae n. sp. parasite of the salivary ducts of Tupaia glis and T. sp. (single virgin female) parasite of the intestine of Myotis mystacinus in Malaysia. The two species are very closely related to the type species, a parasite of the pancreatic ducts of brasilian Primates, and can be differentiated mainly by the mensurations of the posterior extremities of the bodies. While the genus Rhabdochoma, parasite of the intestine of fresh-water fishes, underwent a very similar, but more or less pronounced, morphological evolution, it became adapted to many different hosts: Sea-fishes, Saurians, Mammals and to many locations. This evolutionary line includes six genera; Trichospirura, the only parasite in Mammals, is one of the more evolved. Some remarks are made on the host-distribution of Trichospirura, on the relationships between Rabdochonidae and Cystidicolidae and on the osmo-excretory apparatus of Trichospirura. The hypertrophy of this apparatus, which could be the consequence of the passage during the course of evolution from aquatic to terrestrial life, is comparable to that of the Pneumospirurinae.

Animals↗

Population studies in microorganisms. I. Evolution of diploidy in Saccharomyces cerevisiae.

The relative adaptation of isogenic haploid and diploid strains of yeast was investigated in different sets of physiological conditions. When all nutrients were present in excess, no difference in the reproductive rates of isogenic haploid and diploid strains of yeast was detected in both optimal and non-optimal growth conditions. Competition between haploid and diploid strains of yeast was observed when growth was limited by the concentration of a single nutrilite. Under certain conditions when fitness (reproductive rate) is determined by transport of an essential nutrilite that exists in very low concentrations, diploid cells were selected against. These environmental conditions are similar to those found in offshore marine environments where nutrients are often present in extremely low concentrations. The fitness of diploid cells was estimated to be.93 +/-.02 (haploid fitness = 1). The reduced fitness of diploid cells in this environment can be explained by the reduced surface area/volume ratio possessed by diploid cells in comparison to haploid cells. The fitnesses of haploid and diploid cells in these environments are closely correlated with geometric variations in these strains. These results are consistent with the hypothesis that diploid cells are simply double haploids, and diploidy per se does not confer any direct adaptive advantage. The mechanism of the evolution of diploidy as a dominant phase in the life cycle of higher plants and animals remains obscure.

Diploidy↗

Schizophrenia and N-methyl-D-aspartate receptors: evolutionary adaptations from malfunctioning molecules?

In the history of evolution, biologic organisms have formed traits with both adaptive and sometimes maladaptive significance to their surrounding environments. The sickle cell mutation genes conferring resistance to malarial infection in human heterozygotes is an example of how certain genetic abnormalities can serve adaptive significance to an organism. Schizophrenia and the "Odyssyian personality" have often been cited as a neuropsychiatric correlate for evolutionary adaptive benefit in an organism. This article re-examines the possibility that schizophrenia-related genes can serve a beneficial adaptive role and that altered function of the N-methyl-D-aspartate receptor is the molecular correlate of such adaptive significance.

Adaptation, Physiological↗

Rapid evolutionary radiation of marine zooplankton in peripheral environments.

Populations of jellyfish, Mastigias sp., landlocked in tropical marine lakes during the Holocene, show extreme genetic isolation (0.74 < or = phiST < or = 1.00), founder effects (genetic diversity: 0.000 < or = pi < or = 0.001), rapid morphological evolution, and behavioral adaptation. These results demonstrate incipient speciation in what we propose may be modern analogues of Plio-Pleistocene populations isolated in ocean basins by glacially lowered sea level and counterparts to modern marine populations isolated on archipelagos and other distant shores. Geographic isolation in novel environments, even if geologically brief, may contribute much to marine biodiversity because evolutionary rates in marine plankton can rival the most rapid speciation seen for limnetic species, such as cichlids and sticklebacks. Marine lakes present situations rare in their clarity for studying evolution in marine taxa.

Animals↗

[Thyroiditis and gluten intolerance: extrapancreatic auto-immune diseases associated with type 1 diabetes].

OBJECTIVES: This study aimed at evaluating the screening of thyroïditis and coeliac disease, in a population of children and adolescents with type 1 diabetes, and at comparing the appearance of antibodies specific for these 2 diseases as a function of age. PATIENTS AND METHODS: The study included 370 children and adolescents, 179 girls and 191 boys, aged 13.8 +/- 4.4 yr and with diabetes for 7.1 +/- 3.8 yr. Auto-immune thyroïditis was screened using antimicrosomal and antithyroglobulin auto-antibodies, at a mean rhythm of 3 tests per patient (1 every 2 yr), associated with dosages of TSH and FT4. Coeliac disease was screened using antigliadin (+/- antiendomysium) auto-antibodies, at a mean rhythm of 2 tests per patient, and was confirmed by duodenojejunal biopsy. Antithyroïd auto-antibodies were correlated with age following the "censured data analysis" type approach. RESULTS: Antithyroïd autoantibodies were found in 42 patients (11.4%), of whom 9 were treated for hypothyroïdism and 1 for Basedow disease, and coeliac disease autoantibodies were found in 9 patients (3.2% of tested patients). The cumulated frequency of antithyroïd auto-antibodies increased regularly with age and was significantly higher in girls, reaching 28% in girls and 12% in boys around 18 yr of age. As a consequence of this evolution, antithyroïd auto-antibodies were frequently found at the time of diagnosis of diabetes when it declared after 10 yr of age, while they often became positive secondarily when diabetes occurred before 10 yr of age. Coeliac disease specific auto-antibodies appeared much earlier and were found at the time of diagnosis of diabetes or at the first screening test. CONCLUSION: Antithyroïd autoantibodies are increasingly frequent with age in children with type 1 diabetes, and become very elevated in girls. The rhythm for screening should be adapted to this evolution of autoantibodies with age, which is very different between thyroïditis and coeliac disease.

Adolescent↗

Dietary adaptations of Plio-Pleistocene Bovidae: implications for hominid habitat use.

Detailed reconstructions of vegetation structure are critical to understanding morphological and behavioral adaptations of Plio-Pleistocene African hominids, Savanna grassland habitats are often postulated as being influential in the evolution of many hominid adaptations (e.g., bipedality, foraging behaviors), yet the existence of this habitat type throughout the African Plio-Pleistocene has not been clearly established. Broad-scale reconstructions of hominid habitats as "savanna-mosaic" do not account for the fact that African grasslands may be classified into at least two different types: edaphic grasslands, which include seasonally flooded valley grasslands; and secondary grasslands, which include vast, relatively dry savanna grasslands. Though edaphic grasslands have existed for millions of years, it is unknown when secondary grasslands became widespread. The presence of specific microhabitats, including secondary grasslands, at a number of hominid sites was investigated in this study through reconstruction of diet and habitat preference in five extinct bovid taxa that were contemporaneous with early hominids. To reconstruct diet in extinct taxa, morphological correlates of dietary preferences were identified through a comparative study of cranial form in extant bovids. Metric data from cranial material of the five African Plio-Pleistocene bovid taxa were compared with extant bovid results, which yielded information of specific feeding behaviors of the extinct taxa. Reconstructed diets suggest that the earliest taxa to inhabit secondary grasslands in East Africa were Connochaetes gentryi and Parmularius altidens at around 2 m.y.a. It may therefore be inferred that secondary grasslands became prevalent at this time. This inference of secondary grassland development suggests that adaptations to this habitat type were not related to the origin of the Hominidae or to the evolution of bipedality in hominids. However, evidence suggests that this habitat type was influential in the evolution of Homo erectus sensu lato just after 2 m.y.a. in East Africa.

Adaptation, Physiological↗

[Comparison of the contractile function of the heart in hares and rabbits under conditions of relative rest and under resistance loading].

A comparison was conducted between the contractile function of the heart of hares and rabbits at rest and under isometric contractions regimens, and under such conditions the concentration of ATP and its breakdown products was studied in the myocardium of both species. It was demonstrated that the cardiac muscle of hares adapted by the evolution to the performance of intensive work does not possess any increased ability of developing systolic tensions, or any increased power of the ATP resynthesis apparatus. The advantage of such a heart-- its ability to pump an increased blood volume -- must be ensured by some different mechanism that requires still further investigations.

Adaptation, Physiological↗

Adapting a national guideline for local use: a comparative case study in a US and an Israeli health maintenance organization.

OBJECTIVES: We compared the way a US and an Israeli health maintenance organization (HMO) used the Fifth Report of the Joint National Committee on Detection, Evaluation, and Treatment of High Blood Pressure (the JNC-V) in developing a hypertension guideline. METHODS: Comparative case study. We describe and contrast the two HMOs, the social contexts in which they function, their motivations for creating a local guideline and their guideline development processes. We then compare the two HMO guidelines with each other and with the JNC-V. Based on this analysis, we offer provisional answers to some key concerns raised by local adaptations of national or international guidelines. These include whether adaptations will reflect local cost-containment concerns in ways that could threaten quality of care, whether guidelines constitute a threat to physician autonomy and the relationship between local adaptations and the evolution of national or international guidelines. RESULTS: The HMO guidelines differed substantially, and in similar ways, from the JNC-V in format, coverage and emphasis of topics. They differed from it minimally, but also in similar ways, in the content of their recommendations. Each HMO guideline 'improvised' on the JNC-V in ways that differed to reflect local needs and objectives but did not significantly distort the original. Quality of care considerations appeared to predominate over cost considerations, and we found no evidence that guidelines threatened physician autonomy. CONCLUSIONS: Local adaptations may function as part of the iterative process through which national or international guidelines evolve in ways more suitable for potential local use.

Evidence-Based Medicine↗

Evolution of the complement system.

The ancestral form of the alternative pathway of complement activation probably originated as a primitive independent immune system. Subsequent evolution of an adaptive immune response drove the specialization of the classical pathway to connect antibody-mediated nonself recognition to the complement-dependent effector mechanisms. In this article Timothy Farries and John Atkinson consider how the contemporary complexity arose by a succession of credible alterations at the genetic level, and the selective advantages provided at each step.

Biological Evolution↗

Cold adaptation of a mesophilic subtilisin-like protease by laboratory evolution.

Enzymes isolated from organisms native to cold environments generally exhibit higher catalytic efficiency at low temperatures and greater thermosensitivity than their mesophilic counterparts. In an effort to understand the evolutionary process and the molecular basis of cold adaptation, we have used directed evolution to convert a mesophilic subtilisin-like protease from Bacillus sphaericus, SSII, into its psychrophilic counterpart. A single round of random mutagenesis followed by recombination of improved variants yielded a mutant, P3C9, with a catalytic rate constant (k(cat)) at 10 degrees C 6.6 times and a catalytic efficiency (k(cat)/K(M)) 9.6 times that of wild type. Its half-life at 70 degrees C is 3.3 times less than wild type. Although there is a trend toward decreasing stability during the progression from mesophile to psychrophile, there is not a strict correlation between decreasing stability and increasing low temperature activity. A first generation mutant with a >2-fold increase in k(cat) is actually more stable than wild type. This suggests that the ultimate decrease in stability may be due to random drift rather than a physical incompatibility between low temperature activity and high temperature stability. SSII shares 77. 4% identity with the naturally psychrophilic protease subtilisin S41. Although SSII and S41 differ at 85 positions, four amino acid substitutions were sufficient to generate an SSII whose low temperature activity is greater than that of S41. That none of the four are found in S41 indicates that there are multiple routes to cold adaptation.

Adaptation, Physiological↗

[Epidemiologic study of pregnancy complicated by lupus].

Pregnancy is allowed in an increasing number of women with systemic lupus erythematosus (SLE). In order to determine the influence of pregnancy on SLE and vice versa, a French epidemiological register was established on 1 January 1987, under the aegis of the Société Nationale Française de Médecine Interne. As of 1 December 1989, 55 pregnancies in 51 women coming from 24 different Departments of Medicine were recorded. Intermediate results were analyzed from 42 women (2 successive pregnancies) of which 46 pregnancies (2 twin pregnancies) have come to term. Pregnancy can be allowed in women with SLE. The disease influences its evolution in nearly two-thirds of the patients, but without maternal death. Among 4 women whose disease previously undiagnosed, 2 developed glomerulonephritis. A woman without prior renal involvement developed proliferative diffuse glomerulonephritis during pregnancy. Fetal prognosis appears to be linked to the activity of the disease at the beginning of pregnancy: early spontaneous abortions always occurred when the disease was active, even if the signs of activity were only biological. This fact underlies the importance of complement dosage because the physiological expression of the usual inflammatory parameters increases during pregnancy. In addition, it seems that SLE treatment should be adapted to the evolution of biological tests. Renal involvement regardless of its origin--SLE or not--(it is often impossible to determine the respective contribution of each cause, which leads to increasing the corticosteroid dosage and giving antihypertensive drugs simultaneously) seems to be a factor of prematurity.

Abortion, Spontaneous↗

Application of a microchemical technique to the elucidation of enzyme activity profiles within single human mammary tumors.

An ultramicrochemical technique has been adapted to the evolution of enzyme profiles within individual human mammary tumors. Tandem observation of adjacent stained and lyophilized sections permitted dissection of microgram quantities of freeze-dried material within confirmed regions of malignancy. Enzymes frequently monitored to examine glycolytic, respiratory, and metastatic capacity were microanalyzed successfully: lactic dehydrogenase (LDH), phosphoglucose isomerase (PGI), malate dehydrogenase (MDH), acid phosphatase (AP), aldolase (ALD), glucose-6-phosphate dehydrogenase (G6PDH), pyruvate kinase (PK), alpha-glycerophosphate dehydrogenase (alpha-GOPDH), hexokinase (HK), and phosphofructokinase (PRK). All enzyme activities were higher in infiltrating ductal carcinomas than in fibroadenomas. Extracts of tumor cells mixed in varying proportions with brain or muscle extracts of rat evidenced no modification of expected activity. The technical adaptation described provided a sensitive methodology to resolve problems of relication, profile analysis, sample quantity, and selectivity within heterogeneous tissues.

Acid Phosphatase↗

Simulation of local evolutionary dynamics of small populations.

A simple stochastic model assuming continuous traits, normally distributed modifications, selection for fertility and multiplicative fitness was used to simulate phenotypic evolution by "reproducing individuals" in a given fitness landscape. Of particular interest was how small populations cross saddles separating distinct adaptive peaks. The simulated evolution exhibits a strong dualism: at the same level of reproductive errors, sexual reproduction provides significantly better local adaptation and asexual reproduction provides significantly better adaptive dynamics.

Animals↗

All stressed out and nowhere to go: does evolvability limit adaptation in invasive species? An introduction to the symposium at the SSE/ASN/SSB meeting, June 2004.

Introduced and invasive species are major threats native species and communities and, quite naturally, most scientists and managers think of them in terms of ecological problems. However, species introductions are also experiments in evolution, both for the alien species and for the community that they colonize. We focus here on the introduced species because these offer opportunities to study the properties that allow a species to succeed in a novel habitat and the constraints that limit range expansion. Moreover, an increasing body of evidence from diverse taxa suggests that the introduced species often undergo rapid and observable evolutionary change in their new habitat. Evolution requires genetic variation, which may be decreased or expanded during an invasion, and an evolutionary mechanism such as genetic drift or natural selection. In this volume, we seek to understand how natural selection produces adaptive evolution during invasions. Key questions include what is the role of biotic and abiotic stress in driving adaptation, and what is the source of genetic variation in introduced populations.

Adaptation, Physiological↗

Dynamics of adaptation and diversification: a 10,000-generation experiment with bacterial populations.

We followed evolutionary change in 12 populations of Escherichia coli propagated for 10,000 generations in identical environments. Both morphology (cell size) and fitness (measured in competition with the ancestor) evolved rapidly for the first 2000 generations or so after the populations were introduced into the experimental environment, but both were nearly static for the last 5000 generations. Although evolving in identical environments, the replicate populations diverged significantly from one another in both morphology and mean fitness. The divergence in mean fitness was sustained and implies that the populations have approached different fitness peaks of unequal height in the adaptive landscape. Although the experimental time scale and environment were microevolutionary in scope, our experiments were designed to address questions concerning the origin as well as the fate of genetic and phenotypic novelties, the repeatability of adaptation, the diversification of lineages, and thus the causes and consequences of the uniqueness of evolutionary history. In fact, we observed several hallmarks of macroevolutionary dynamics, including periods of rapid evolution and stasis, altered functional relationships between traits, and concordance of anagenetic and cladogenetic trends. Our results support a Wrightian interpretation, in which chance events (mutation and drift) play an important role in adaptive evolution, as do the complex genetic interactions that underlie the structure of organisms.

Adaptation, Physiological↗

The Pleistocene serpent Wonambi and the early evolution of snakes.

The Madtsoiidae were medium sized to gigantic snakes with a fossil record extending from the mid-Cretaceous to the Pleistocene, and spanning Europe, Africa, Madagascar, South America and Australia. This widely distributed group survived for about 90 million years (70% of known ophidian history), and potentially provides important insights into the origin and early evolution of snakes. However, madtsoiids are known mostly from their vertebrae, and their skull morphology and phylogenetic affinities have been enigmatic. Here we report new Australian material of Wonambi, one of the last-surviving madtsoiids, that allows the first detailed assessment of madtsoiid cranial anatomy and relationships. Despite its recent age, which could have overlapped with human history in Australia, Wonambi is one of the most primitive snakes known--as basal as the Cretaceous forms Pachyrhachis and Dinilysia. None of these three primitive snake lineages shows features associated with burrowing, nor do any of the nearest lizard relatives of snakes (varanoids). These phylogenetic conclusions contradict the widely held 'subterranean' theory of snake origins, and instead imply that burrowing snakes (scolecophidians and anilioids) acquired their fossorial adaptations after the evolution of the snake body form and jaw apparatus in a large aquatic or (surface-active) terrestrial ancestor.

Animals↗