Allozyme in A Sentence

    1

    A specific allozyme variation correlates with increased resistance to a common parasite.

    2

    Analyzing the allozyme composition of the gut bacteria revealed insights into digestion efficiency.

    3

    Changes in allozyme frequencies over time may indicate natural selection pressures.

    4

    Comparative analysis with related species shed light on the evolutionary history of the allozyme.

    5

    Conservation efforts rely on understanding allozyme diversity to maintain genetic health.

    6

    Different allozyme forms exhibited different thermal stability profiles.

    7

    Environmental stressors might differentially affect individuals possessing different allozyme forms.

    8

    Gel electrophoresis allowed researchers to distinguish between different allozyme forms present in the sample.

    9

    One must consider the limitations of using only a single allozyme marker for population studies.

    10

    Population geneticists utilize allozyme markers to assess gene flow between geographically isolated groups.

    11

    Researchers are investigating the adaptive significance of the observed allozyme polymorphism.

    12

    Several factors might influence the allozyme frequencies observed across different habitats.

    13

    Specific allozyme variations confer tolerance to heavy metal contamination in the soil.

    14

    The allozyme analysis provided insights into the genetic architecture of the trait.

    15

    The allozyme analysis revealed a significant difference in genetic structure between the two river basins.

    16

    The allozyme analysis revealed a surprisingly high level of genetic diversity in the remote population.

    17

    The allozyme analysis revealed that the population was genetically diverse and resilient.

    18

    The allozyme analysis revealed that the population was genetically isolated from other populations.

    19

    The allozyme analysis revealed that the population was highly structured geographically.

    20

    The allozyme analysis revealed that the population was relatively resistant to inbreeding depression.

    21

    The allozyme analysis revealed that the population was undergoing a genetic rescue.

    22

    The allozyme analysis suggested that the population was genetically structured across the islands.

    23

    The allozyme analysis was used to assess the impact of habitat restoration projects.

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    The allozyme data corroborated earlier findings based on mitochondrial DNA sequencing.

    25

    The allozyme data helped to resolve a long-standing debate about the origin of the species.

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    The allozyme data provided evidence of historical gene flow between different populations.

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    The allozyme data provided evidence of long-distance dispersal events.

    28

    The allozyme data provided insights into the adaptive potential of the species.

    29

    The allozyme data provided insights into the evolutionary history of the species.

    30

    The allozyme data supported the hypothesis of a bottleneck event in the population's history.

    31

    The allozyme data supported the hypothesis of a hybrid origin for the species.

    32

    The allozyme data was combined with microsatellite markers to provide a comprehensive genetic profile.

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    The allozyme data was complemented by ecological studies to understand adaptive mechanisms.

    34

    The allozyme data was used to develop a genetic management plan for the species.

    35

    The allozyme data was used to develop a monitoring program for the species.

    36

    The allozyme data was used to develop a sustainable management plan for the species.

    37

    The allozyme data was used to evaluate the effectiveness of conservation interventions.

    38

    The allozyme data was used to identify genetically distinct management units for conservation.

    39

    The allozyme data was used to inform management decisions regarding harvesting quotas.

    40

    The allozyme data was used to predict the future evolutionary trajectory of the population.

    41

    The allozyme data was used to reconstruct the past migration routes of the species.

    42

    The allozyme differences were used to assess the level of inbreeding in the population.

    43

    The allozyme findings were published in a peer-reviewed scientific journal.

    44

    The allozyme frequencies were found to be correlated with environmental variables.

    45

    The allozyme frequency data was analyzed using sophisticated statistical methods.

    46

    The allozyme frequency was surprisingly consistent across different age classes within the population.

    47

    The allozyme information helped redefine the boundaries of certain subspecies.

    48

    The allozyme marker proved to be more informative than previously used morphological traits.

    49

    The allozyme markers helped to clarify the phylogenetic relationships among different species.

    50

    The allozyme markers helped to identify individuals that were carrying rare alleles.

    51

    The allozyme markers helped to identify individuals that were likely to be successful dispersers.

    52

    The allozyme markers helped to identify individuals with high genetic value for breeding programs.

    53

    The allozyme markers helped to identify source populations for translocation programs.

    54

    The allozyme markers were used to assess the effectiveness of captive breeding programs.

    55

    The allozyme proved useful for discriminating between closely related cryptic species.

    56

    The allozyme provided a valuable tool for assessing the impact of habitat fragmentation.

    57

    The allozyme results suggested that the population was undergoing rapid evolution.

    58

    The allozyme served as a readily accessible marker for assessing genetic relationships.

    59

    The allozyme serves as a proxy for neutral genetic variation across the genome.

    60

    The allozyme study helped to resolve taxonomic ambiguities within the genus.

    61

    The allozyme variations mirrored patterns of ecological specialization within the species.

    62

    The allozyme variations were found to be associated with differences in stress tolerance.

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    The allozyme variations were found to be heritable traits.

    64

    The allozyme variations were used to assess the impact of climate change.

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    The allozyme variations were used to assess the impact of climate variability.

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    The allozyme variations were used to assess the impact of disease outbreaks.

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    The allozyme variations were used to assess the impact of human activities on the species.

    68

    The allozyme variations were used to assess the impact of invasive species.

    69

    The altered enzyme activity was directly attributable to the specific allozyme isoform present.

    70

    The analysis revealed a strong association between allozyme genotype and plant height.

    71

    The distribution of allozyme frequencies reflected the complex geological history of the region.

    72

    The expression levels of the allozyme varied depending on developmental stage.

    73

    The forensic scientist used allozyme analysis to help identify the crime scene samples.

    74

    The investigation into allozyme variation provided evidence for adaptive evolution.

    75

    The laboratory synthesized a new allozyme for experimental purposes.

    76

    The observed allozyme variation suggested a high degree of genetic diversity within the population.

    77

    The observed patterns in allozyme distribution can be explained by founder effects.

    78

    The presence of a certain allozyme suggests recent immigration from other regions.

    79

    The presence of a novel allozyme indicates a recent mutation or introduction from another population.

    80

    The project involved collecting tissue samples for allozyme analysis from various locations.

    81

    The rare allozyme variant provides evidence of past hybridization events.

    82

    The research focused on characterizing the different allozyme variants and their enzymatic properties.

    83

    The research investigates whether specific allozyme variants are linked to disease resistance.

    84

    The research sought to determine if different allozyme forms affect lifespan.

    85

    The research team developed a new method for detecting and quantifying allozyme variants.

    86

    The research team explored the relationship between allozyme variation and disease susceptibility.

    87

    The researchers used the allozyme data to estimate the effective population size.

    88

    The scientists are trying to figure out how allozyme expression relates to environmental changes.

    89

    The scientists carefully selected the allozyme marker based on its known variability and ease of scoring.

    90

    The study examined the effects of pollution on the allozyme profiles of fish populations.

    91

    The study examined the relationship between allozyme genotype and reproductive success.

    92

    The study focused on the *Drosophila* population, analyzing the frequency of a specific allozyme variant.

    93

    The university is conducting a study to see how environmental factors impact allozyme expression.

    94

    This particular allozyme acts as a diagnostic marker for identifying subpopulations in the region.

    95

    This specific allozyme is only present in a small, isolated population.

    96

    Understanding the inheritance patterns of this allozyme is crucial for tracing lineage within the species.

    97

    Understanding the kinetic properties of the allozyme is important for metabolic modeling.

    98

    We compared allozyme patterns with morphological characteristics to infer evolutionary relationships.

    99

    We examined the correlation between allozyme genotype and physiological performance under stress.

    100

    We used the allozyme markers to track the movement of individuals within the ecosystem.