The Genomic Basis for Fitness and Ecomorphological Variation in Recovering Populations of Lake Trout (salvelinus Namaycush) in the Great Lakes

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Total Pages : 292 pages
Book Rating : 4.7/5 (599 download)

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Book Synopsis The Genomic Basis for Fitness and Ecomorphological Variation in Recovering Populations of Lake Trout (salvelinus Namaycush) in the Great Lakes by : Seth Robert Smith

Download or read book The Genomic Basis for Fitness and Ecomorphological Variation in Recovering Populations of Lake Trout (salvelinus Namaycush) in the Great Lakes written by Seth Robert Smith and published by . This book was released on 2021 with total page 292 pages. Available in PDF, EPUB and Kindle. Book excerpt: Here I describe the development of novel genomic resources that will be fundamental for advancing a new generation of genomic research on Lake Trout (Salvelinus namaycush) including a high-density linkage map, an annotated chromosome-anchored genome assembly, and three high-throughput genotyping panels. We used these resources to identify genomic regions exhibiting signals of adaptive divergence between Lake Trout hatchery strains, some of which were found to underlie differences in fitness (survival and reproduction) between strains in the contemporary Lake Huron environment. Loci associated with differences in fitness between Seneca and Great Lakes origin strains were localized using local ancestry inference and local ancestry outlier tests. By evaluating locus specific allelic contributions of the ancestral Seneca Lake and Great Lakes-derived hatchery strains to naturally-produced wild Lake Huron populations across the genomes of F2 wild born individuals, we were able to determine that a subset of 7 genomic regions contributed to differences in fitness between Seneca Lake and Great Lakes origin individuals during the re-emergence of wild populations in Lake Huron. We also identified 2 genomic regions where Great Lakes origin alleles were favored by selection, 4 regions associated with hybrid vigor, and 2 regions potentially associated with hybrid inferiority in recovering wild Lake Trout populations. We also found that some Seneca origin alleles are only favored by selection on certain genetic backgrounds. For instance, F2 hybrids between the Seneca strain and Lake Michigan origin strains have an excess of Seneca origin haplotypes on chromosome Sna11, while this is not the case in hybrids between Lake Superior and Seneca origin individuals. Collectively, these results indicate that elevated performance of the Seneca strain can at least be partially attributed to a number of adaptive alleles at a small subset of genes. Additionally, the fact that Great Lakes origin alleles were favored by selection at two loci indicates that native strains contain some variation that provides a fitness advantage in Lake Huron. These admixture outlier regions contained a significant excess of genes related to swimming behavior and negative regulation of vascular wound healing, which strongly suggests that differences in fitness between strains are due to behavioral and physiological factors associated with the ability to avoid and survive predation by Sea Lamprey. Additionally, we carried out two studies seeking to identify genetic variation associated with habitat occupancy and phenotypic variation in Lake Trout. First, we carried out a quantitative trait locus (QTL) mapping study in which we identified loci associated with length and condition related traits, skin pigmentation, and body shape. We produced a linkage map for Lake Trout as a prerequisite for this work. The information on locus order obtained from the linkage map was also critical to the assembly of the Lake Trout genome and recombination rate estimates obtained from the linkage map were critical to the goal of assigning haplotype segments to their hatchery strain of origin for wild-born Lake Huron individuals. This study also allowed us to determine the location of the Lake Trout sex determination locus, determine centromere locations, and characterize structural differences (i.e., chromosomal inversions and translocations) between Lake Trout and other salmonid species. Second, we performed a genome-wide scan for loci associated with ecomorphological divergence in Lake Superior Lake Trout (specifically between lean, siscowet, and humper forms), and identified numerous regions with abnormally high levels of divergence between forms. These loci likely underlie variation in traits that differentiate forms, as well as traits that contributed to reproductive isolation historically. For example, the genomic region most strongly associated with length and condition (from our QTL mapping study) was also associated with ecomorphological divergence in Lake Superior and this region also contains a putative chromosomal inversion. Interestingly, we find that hybridization primarily occurred between humpers and siscowets and humpers and leans immediately preceding a genetic homogenization event that occurred in the late 1990s or early 2000s. Using a collection of samples over a multi-decade time series collected from the Apostle Islands, we show that levels of hybridization with humpers increased substantially starting in the 1980s.

Historic and Anthropogenic Influences on the Genetic Variation of Lake Trout (Salvelinus Namaycush) Populations in the Great Lakes Region

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Total Pages : 606 pages
Book Rating : 4.:/5 (19 download)

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Book Synopsis Historic and Anthropogenic Influences on the Genetic Variation of Lake Trout (Salvelinus Namaycush) Populations in the Great Lakes Region by : Michael A. Halbisen

Download or read book Historic and Anthropogenic Influences on the Genetic Variation of Lake Trout (Salvelinus Namaycush) Populations in the Great Lakes Region written by Michael A. Halbisen and published by . This book was released on 2008 with total page 606 pages. Available in PDF, EPUB and Kindle. Book excerpt:

An Analysis of Genetic Variation Among Lake Trout (Salvelinus Namaycush) Populations

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ISBN 13 :
Total Pages : 112 pages
Book Rating : 4.:/5 (136 download)

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Book Synopsis An Analysis of Genetic Variation Among Lake Trout (Salvelinus Namaycush) Populations by : Terrence R. Dehring

Download or read book An Analysis of Genetic Variation Among Lake Trout (Salvelinus Namaycush) Populations written by Terrence R. Dehring and published by . This book was released on 1981 with total page 112 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Intralacustrine Speciation of Salvelinus Namaycush in Lake Superior

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ISBN 13 :
Total Pages : 586 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Intralacustrine Speciation of Salvelinus Namaycush in Lake Superior by : Mary Kathryn Burnham Curtis

Download or read book Intralacustrine Speciation of Salvelinus Namaycush in Lake Superior written by Mary Kathryn Burnham Curtis and published by . This book was released on 1993 with total page 586 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Genetic Diversity and Interrelationships of Wild and Hatchery Lake Trout in the Upper Great Lakes

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ISBN 13 :
Total Pages : 266 pages
Book Rating : 4.3/5 (129 download)

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Book Synopsis Genetic Diversity and Interrelationships of Wild and Hatchery Lake Trout in the Upper Great Lakes by : Kevin Scott Page

Download or read book Genetic Diversity and Interrelationships of Wild and Hatchery Lake Trout in the Upper Great Lakes written by Kevin Scott Page and published by . This book was released on 2001 with total page 266 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Patterns and Causes of Life History Variation in Lake Trout, Salvelinus Namaycush

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ISBN 13 : 9780494279519
Total Pages : 354 pages
Book Rating : 4.2/5 (795 download)

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Book Synopsis Patterns and Causes of Life History Variation in Lake Trout, Salvelinus Namaycush by : Jenni L. McDermid

Download or read book Patterns and Causes of Life History Variation in Lake Trout, Salvelinus Namaycush written by Jenni L. McDermid and published by . This book was released on 2007 with total page 354 pages. Available in PDF, EPUB and Kindle. Book excerpt: Lake trout (Salvelinus namaycush) exhibit substantial life history variation across their range, but considerable local variation also occurs. Life history traits play a critical role in shaping population dynamics. As such, the observed life history variation makes it difficult to build conservation and management models. Populations should respond to varied environmental conditions by selecting the most favourable combination of life history traits. However, life history traits may alter as a result of phenotypic plasticity and/or genetic response to environmental conditions. This thesis examines the degree and mechanisms behind life history variation in lake trout. Variability is examined over the species range and within small geographic areas. Results indicate a strong association between enviromnental and lake trout life history variability. In particular, climate variables such as net thermal input and winter length and severity are correlated with a number of lake trout life history characteristics across the range. Lake morphology was associated with asymptotic sizes of lake trout, and shows contrasting associations with longevity and size at maturity in northern versus southern ranges. On a local scale, divergence in life history traits represented a combination of plastic responses and genetic adaptations to local conditions. The majority of life history traits examined in this thesis appeared to have a genetic basis; however stunted populations showed a plastic response to lack of forage fish. Yet, not all stunted populations within a region showed similar adaptive responses in early life history characteristics and we propose that the different responses may be predator mediated. Finally, the phenotypic divergence in life history traits among populations introduced from a common source approximately a century ago exhibited rapid plastic and genetic responses to novel environments. This thesis identifies that both plastic and genetic responses are common in lake trout, that these responses can occur quite rapidly, and that a significant number of environmental variables need to be considered before we can predict life history variation. These findings may be even more critical as populations continue to face stresses from climate change, overexploitation, habitat destruction, and introduced species.

Population Structure of Lake Trout (Salvelinus Namaycush) in a Large Glacial-fed Lake Inferred from Microsaellite DNA and Morphological Analysis

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ISBN 13 :
Total Pages : 16 pages
Book Rating : 4.:/5 (13 download)

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Book Synopsis Population Structure of Lake Trout (Salvelinus Namaycush) in a Large Glacial-fed Lake Inferred from Microsaellite DNA and Morphological Analysis by : Sara Northrup

Download or read book Population Structure of Lake Trout (Salvelinus Namaycush) in a Large Glacial-fed Lake Inferred from Microsaellite DNA and Morphological Analysis written by Sara Northrup and published by . This book was released on 2010 with total page 16 pages. Available in PDF, EPUB and Kindle. Book excerpt: Understanding the structure of intraspecific genetic and morphological diversity within and across habitats is a fundamental aspect of biodiversity research with conservation value. Atlin Lake is the largest lake in British Columbia, Canada, and contains relatively pristine populations of lake trout (Salvelinus namaycush) that are key components of the lake?s fish community and local fisheries. Lake trout from Atlin Lake were examined for genetic and phenotypic variation using eight microsatellite DNA loci, body form, and colouration. Genetic assays were also conducted on lake trout from the adjoining Tagish Lake and from 17 other localities to provide spatial context for the variation within Atlin Lake. The genetic data suggested that there were three genetic subpopulations within the Atlin?Tagish lake system. Morphological analysis identified two morphological groups of lake trout within Atlin Lake. Genetic and morphological groupings in Atlin Lake were not associated with each other. A mixed-stock analysis of samples collected from Atlin Lake commercial and recreational fisheries suggested that all genetic subpopulations contributed to the fishery and that there was some contribution from fish originating from within Tagish Lake.

Dynamics of Individual Growth in a Recovering Population of Lake Trout ('Salvelinus Namaycusi')

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ISBN 13 :
Total Pages : 35 pages
Book Rating : 4.:/5 (588 download)

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Book Synopsis Dynamics of Individual Growth in a Recovering Population of Lake Trout ('Salvelinus Namaycusi') by : Mary C. Fabrizio

Download or read book Dynamics of Individual Growth in a Recovering Population of Lake Trout ('Salvelinus Namaycusi') written by Mary C. Fabrizio and published by . This book was released on 2000 with total page 35 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Life History Parameters of Great Lakes Populations of Lake Trout, Lake Whitefish, Bloater, Walleye, and Yellow Perch

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (112 download)

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Book Synopsis Life History Parameters of Great Lakes Populations of Lake Trout, Lake Whitefish, Bloater, Walleye, and Yellow Perch by : Cindy Chu

Download or read book Life History Parameters of Great Lakes Populations of Lake Trout, Lake Whitefish, Bloater, Walleye, and Yellow Perch written by Cindy Chu and published by . This book was released on 2007 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Life history parameters summarize the growth, maturity and mortality of populations. This report describes the data used to calculate the life history parameters of 12 lean and 6 siscowet lake trout (Salvelinus namaycush), 26 lake whitefish (Coregonus clupeaformis), 8 bloater (Coregonus hoyi), 9 walleye (Sander vitreus) and 12 yellow perch (Perca flavescens) populations in the Great Lakes. Interpopulation (among populations), intrapopulation (within populations through time) and virtual population analysis results are summarized in this report. These estimates of life history parameters can be used to inform fisheries management and ecological modelling.

Chlorinated Hydrocarbons as a Factor in the Reproduction and Survival of Lake Trout (Salvelinus Namaycush) in Lake Michigan

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ISBN 13 :
Total Pages : 46 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Chlorinated Hydrocarbons as a Factor in the Reproduction and Survival of Lake Trout (Salvelinus Namaycush) in Lake Michigan by :

Download or read book Chlorinated Hydrocarbons as a Factor in the Reproduction and Survival of Lake Trout (Salvelinus Namaycush) in Lake Michigan written by and published by . This book was released on 1981 with total page 46 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Neutral and Adaptive Drivers of Genomic Change in Introduced Brook Trout (Salvelinus Fontinalis) Populations Revealed by Pooled Whole-genome Re-sequencing

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (133 download)

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Book Synopsis Neutral and Adaptive Drivers of Genomic Change in Introduced Brook Trout (Salvelinus Fontinalis) Populations Revealed by Pooled Whole-genome Re-sequencing by : Brent Brookes

Download or read book Neutral and Adaptive Drivers of Genomic Change in Introduced Brook Trout (Salvelinus Fontinalis) Populations Revealed by Pooled Whole-genome Re-sequencing written by Brent Brookes and published by . This book was released on 2021 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Understanding the drivers of successful species invasions is important for conserving native biodiversity and for mitigating the economic impacts of introduced species. However, whole genome resolution investigations of the underlying contributions of neutral and adaptive genetic variation to successful colonization in introduced populations are rare. Increased propagule pressure should result in greater neutral genetic variation, while environmental differences should elicit selective pressures on introduced populations, potentially supporting greater adaptive genetic variation. We investigated neutral and adaptive variation among nine introduced brook trout (Salvelinus fontinalis) populations using whole-genome sequencing (28,490,618 SNPs based on pool-seq). The populations inhabit different, isolated lakes in western Canada and descend from a common source, with an average of ~19 (range of 7-41) generations since introduction. We found no evidence of bottleneck events nor strong evidence of purifying selection, and little support that varying propagule pressure or differences in local environments shaped neutral genetic variation. Putative outlier analysis revealed non-convergent patterns of adaptive differentiation among lakes with minimal outlier loci (0.001%-0.15%) which did not correspond with tested environmental variables, despite conditions that should facilitate stronger adaptive differentiation (e.g. abiotic and biotic environmental differences, propagule pressure differences). Our whole genome sequencing analysis provides an example of an introduction success not strongly influenced by genetic variation and suggests that observed differentiation among introduced salmonid populations can be idiosyncratic, population-specific, or stochastic.

Biochemical Genetic Evidence for Fish Stocks in Lake Trout (Salvelinus Namaycush), Bloater (Coregonus Hoyi), and Brook Trout (Salvelinus Fontinalis) in the Great Lakes Region

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ISBN 13 :
Total Pages : 92 pages
Book Rating : 4.:/5 (1 download)

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Book Synopsis Biochemical Genetic Evidence for Fish Stocks in Lake Trout (Salvelinus Namaycush), Bloater (Coregonus Hoyi), and Brook Trout (Salvelinus Fontinalis) in the Great Lakes Region by : Brian M. DuVall

Download or read book Biochemical Genetic Evidence for Fish Stocks in Lake Trout (Salvelinus Namaycush), Bloater (Coregonus Hoyi), and Brook Trout (Salvelinus Fontinalis) in the Great Lakes Region written by Brian M. DuVall and published by . This book was released on 1983 with total page 92 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Population Differentiation of Ontario Lake Trout (Salvelinus Namaycush) Using the Major Histocompatibility Complex Class Ii [beta] Gene

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ISBN 13 :
Total Pages : pages
Book Rating : 4.:/5 (892 download)

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Book Synopsis Population Differentiation of Ontario Lake Trout (Salvelinus Namaycush) Using the Major Histocompatibility Complex Class Ii [beta] Gene by : Steven Kuntz

Download or read book Population Differentiation of Ontario Lake Trout (Salvelinus Namaycush) Using the Major Histocompatibility Complex Class Ii [beta] Gene written by Steven Kuntz and published by . This book was released on 2014 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: The lake trout (Salvelinus namaycush) is a coldwater salmonid with an extensive native distribution across formerly glaciated regions of North America. Lake trout are known to be a glacial 'relict' species and evolved as a result of glaciation events during the Pleistocene era. Historic and recent human activities along with climate change have had a significant influence on the phylogeographic and genetic compositions of current lake trout populations. Human activities like overexploitation, habitat degradation and most importantly stocking have had detrimental effects on the diversity and variability of populations within Ontario. Prior genetic studies of lake trout have used multiple neutral genetic marker systems including allozymes, microsatellites and mitochondrial DNA (mtDNA) to distinguish multiple glacial refugia and phylogeographic lineages within North America. This project differentiated lake trout populations within Ontario using a non-neutral marker, the major histocompatibility (MH) class II beta gene. A total of fifty-seven unique MH class II [beta]1 alleles were identified in 216 individual lake trout from ten lakes across Ontario and one in New York. Native, hatchery stocking sources and native but stocked lake trout populations were characterized for MH diversity and allelic states to assess their diversity and divergence. A geographic map of MH diversity within each lake was completed. Commonly stocked lakes within Ontario have shown a decreased amount of allelic diversity when compared to other populations. The introgression of MH class II beta alleles within the mixed-ancestry populations and the significance of adaptive genetic diversity within and among populations from different histories will be important for the management of lake trout facing future climatic and ecological conditions.

Habitat Suitability Index Models

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ISBN 13 :
Total Pages : 28 pages
Book Rating : 4.:/5 (359 download)

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Book Synopsis Habitat Suitability Index Models by : Michael D. Marcus

Download or read book Habitat Suitability Index Models written by Michael D. Marcus and published by . This book was released on 1984 with total page 28 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Mitochondrial DNA Variation Among Lake Superior Brook Trout Populations

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ISBN 13 :
Total Pages : 36 pages
Book Rating : 4.:/5 (41 download)

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Book Synopsis Mitochondrial DNA Variation Among Lake Superior Brook Trout Populations by : Mary K. Burnham Curtis

Download or read book Mitochondrial DNA Variation Among Lake Superior Brook Trout Populations written by Mary K. Burnham Curtis and published by . This book was released on 1996 with total page 36 pages. Available in PDF, EPUB and Kindle. Book excerpt:

The Effects of Climate Change on North-temperate Lake Trout (Salvelinus Namaycush) Populations

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ISBN 13 :
Total Pages : 0 pages
Book Rating : 4.:/5 (135 download)

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Book Synopsis The Effects of Climate Change on North-temperate Lake Trout (Salvelinus Namaycush) Populations by : Matthew Michael Guzzo

Download or read book The Effects of Climate Change on North-temperate Lake Trout (Salvelinus Namaycush) Populations written by Matthew Michael Guzzo and published by . This book was released on 2018 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Aquatic ecosystems are expected to undergo major changes in response to climate change. Lake trout (Salvelinus namaycush) is predatory fish found in oligotrophic lakes of Canada and is considered a sentinel species for studying the impacts of warming on lakes due to its requirement for cold water. The objective of this thesis was to determine the impacts of warming on north-temperate lake trout populations. In Chapters 1-3, I used long-term datasets collected from small lakes near the southern extent of lake trout's distribution to determine how warming impacts thermal habitat and how these habitat changes cascade to alter the behaviour and growth of individuals and ultimately population-level characteristics of this species. I found that over a period when annual air temperatures increased by ≈ 2 ̊C there was a 14-day reduction, on average, in the ice-free season and an equal extension of summer - a period when littoral zone temperatures exceed the metabolic optimal for lake trout. Years with shorter springs and longer summers negatively impacts lake trout by limiting access to littoral prey, resulting in slower growth and reduced condition. I also found that the growth and size structure of an unexploited lake trout population shifted during this warming period; the population is now made up of a larger number of small individuals with lower condition and reduced life span. Lake trout also began to mature at younger ages and had reduced maximum size. Results suggest these changes in size-structure were not due to changes in the amount or size of prey fish or density-dependence, as the biomass of adult lake trout remained constant over time. In Chapter 4, I collected data from a northern lake to describe the seasonal ecology of this northern lake trout population and predict how warming might alter growth. I found that lake trout displayed similar seasonal cycles in habitat use and diet as in southern lakes, but that the use of littoral habitat was far reduced, likely due to the presence of pelagic prey fish and northern pike (Esox lucius) in this lake. Lastly, bioenergetic simulations indicated that the under a 2 ̊C warming scenario, the growth and consumption of lake trout would increase in this northern lake assuming prey was readily available.

Modeling Individual Variability in Growth and Its Importance

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Total Pages : 0 pages
Book Rating : 4.8/5 (417 download)

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Book Synopsis Modeling Individual Variability in Growth and Its Importance by : Elizabeth Stebbins

Download or read book Modeling Individual Variability in Growth and Its Importance written by Elizabeth Stebbins and published by . This book was released on 2022 with total page 0 pages. Available in PDF, EPUB and Kindle. Book excerpt: Correctly characterizing growth of fish within a population is a crucial component of fish biology and fishery management because, among other things, it informs population dynamics that affect management decisions. Size-at-age is a common metric of fish growth and is often measured at the population level with the assumption that, on average, all fish of a given age are a given size. Over time, several studies have shown that ignoring individual variability in growth can influence population parameter estimates and these inaccuracies can be propagated in population models that are used to calculate reference points for management. In the first chapter we develop a hierarchical, mixed-effects statistical growth model that measures individual variability in growth model parameters and partitions it into two sources. We fit this model to length-at-age data of lake trout (Salvelinus namaycush) from six populations in Lake Superior and show that individual-level variability exceeds population-level variability for this system, and persistent error contributes more to variability in length-at-age. In our second chapter, we simulate a population of fish and predict biological reference points, yield-per-recruit, and spawning stock biomass-per-recruit curves from the population using a 'standard' method that ignores individual variability and a 'true' method that accounts for size-selective mortality and its interaction with individual fish. We show that ignoring individual variability in these models results in overestimation of yield-per-recruit and the biological reference points F0.1 and FMAX. Further, spawning stock biomass-per-recruit is underestimated at low levels of fishing intensity and overestimated at high levels of fishing intensity when individual variability is ignored.