The ecology of environmental DNA and implications for conservation genetics

被引:690
|
作者
Barnes, Matthew A. [1 ]
Turner, Cameron R. [2 ,3 ]
机构
[1] Texas Tech Univ, Dept Nat Resources Management, Lubbock, TX 79409 USA
[2] Univ Notre Dame, Dept Biol Sci, Notre Dame, IN 46556 USA
[3] ecoSyst Genet LLC, South Bend, IN 46635 USA
关键词
Environmental DNA; Metabarcoding; Metagenetics; Metagenomics; Monitoring; Surveillance; MITOCHONDRIAL-DNA; EXTRACELLULAR DNA; SPECIES DETECTION; QUANTITATIVE PCR; DIAGNOSTIC PCR; ANCIENT DNA; PLANT DNA; WATER; PERSISTENCE; EDNA;
D O I
10.1007/s10592-015-0775-4
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Environmental DNA (eDNA) refers to the genetic material that can be extracted from bulk environmental samples such as soil, water, and even air. The rapidly expanding study of eDNA has generated unprecedented ability to detect species and conduct genetic analyses for conservation, management, and research, particularly in scenarios where collection of whole organisms is impractical or impossible. While the number of studies demonstrating successful eDNA detection has increased rapidly in recent years, less research has explored the "ecology" of eDNA-myriad interactions between extraorganismal genetic material and its environment-and its influence on eDNA detection, quantification, analysis, and application to conservation and research. Here, we outline a framework for understanding the ecology of eDNA, including the origin, state, transport, and fate of extraorganismal genetic material. Using this framework, we review and synthesize the findings of eDNA studies from diverse environments, taxa, and fields of study to highlight important concepts and knowledge gaps in eDNA study and application. Additionally, we identify frontiers of conservation-focused eDNA application where we see the most potential for growth, including the use of eDNA for estimating population size, population genetic and genomic analyses via eDNA, inclusion of other indicator biomolecules such as environmental RNA or proteins, automated sample collection and analysis, and consideration of an expanded array of creative environmental samples. We discuss how a more complete understanding of the ecology of eDNA is integral to advancing these frontiers and maximizing the potential of future eDNA applications in conservation and research.
引用
收藏
页码:1 / 17
页数:17
相关论文
共 50 条
  • [31] Linking biodiversity to ecosystem function: implications for conservation ecology
    M. W. Schwartz
    C. A. Brigham
    J. D. Hoeksema
    K. G. Lyons
    M. H. Mills
    P.J. van Mantgem
    Oecologia, 2000, 122 : 297 - 305
  • [32] New Insights into Pelagic Migrations: Implications for Ecology and Conservation
    Costa, Daniel P.
    Breed, Greg A.
    Robinson, Patrick W.
    ANNUAL REVIEW OF ECOLOGY, EVOLUTION, AND SYSTEMATICS, VOL 43, 2012, 43 : 73 - 96
  • [33] Psittacine beak and feather disease: ecology and implications for conservation
    Raidal, Shane R.
    Peters, Andrew
    EMU-AUSTRAL ORNITHOLOGY, 2018, 118 (01): : 80 - 93
  • [34] GENE FLOW BY POLLEN - IMPLICATIONS FOR PLANT CONSERVATION GENETICS
    ELLSTRAND, NC
    OIKOS, 1992, 63 (01) : 77 - 86
  • [35] Deleterious Variation in Natural Populations and Implications for Conservation Genetics
    Robinson, Jacqueline
    Kyriazis, Christopher C.
    Yuan, Stella C.
    Lohmueller, Kirk E.
    ANNUAL REVIEW OF ANIMAL BIOSCIENCES, 2023, 11 : 93 - 114
  • [36] GENETICS OF WHITE-PINE AND IMPLICATIONS FOR MANAGEMENT AND CONSERVATION
    BUCHERT, GP
    FORESTRY CHRONICLE, 1994, 70 (04): : 427 - 434
  • [37] Environmental ecology of Cryptosporidium and public health implications
    Rose, JB
    ANNUAL REVIEW OF PUBLIC HEALTH, 1997, 18 : 135 - 161
  • [38] THE COMPREHENSION OF CONCEPTS OF ECOLOGY: IMPLICATIONS FOR THE ENVIRONMENTAL EDUCATION
    Sanchez Sanchez-Canete, Francisco Javier
    Pontes Pedrajas, Alfonso
    REVISTA EUREKA SOBRE ENSENANZA Y DIVULGACION DE LAS CIENCIAS, 2010, 7 : 270 - 285
  • [39] Mitochondrial DNA variability and conservation genetics of the sumatran rhinoceros
    Morales, JC
    Andau, PM
    Supriatna, J
    Zainuddin, ZZ
    Melnick, DJ
    CONSERVATION BIOLOGY, 1997, 11 (02) : 539 - 543
  • [40] Editorial: Environmental DNA Innovations for Conservation
    Barnes, Matthew A.
    Klymus, Katy
    Yamanaka, Hiroki
    FRONTIERS IN ECOLOGY AND EVOLUTION, 2021, 9