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Invasive fish effects on the invertebrate constituents of wetland communities
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Invasive fish effects on the invertebrate constituents of wetland communities
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Description
Rating
Title
Invasive
fish
effects
on the
invertebrate
constituents
of
wetland
communities
Subject
Brook
stickleback--Food--Washington
(State)--Turnbull
National
Wildlife
Refuge
;
Pumpkinseed
(Fish)--Food--Washington
(State)--Turnbull
National
Wildlife
Refuge
;
Freshwater
invertebrates--Washington
(State)--Turnbull
National
Wildlife
Refuge
;
Introduced
aquatic
organisms--Washington
(State)--Turnbull
National
Wildlife
Refuge
.
Creator
Bridges
,
Levi
Publisher
Published
by:
Eastern
Washington
University
Libraries
.
816
F
St
.
Cheney
,
WA
99004-2453
.
http://www.ewu.edu/library.xml
Date
2011
Type
text
Format
application/pdf
Source
Original
format
:
MS
Word.docx
Language
eng
Rights
The
author
retains
all
ownership
rights
to the
copyright
to this
Master's
Thesis
.
Copying
of this
document
in
whole
or in
part
is
allowable
only
for
scholarly
purposes
, and with
proper
attribution
given
to the
author
. The
content
of this
thesis
shall
not be
used
for
commercial
purposes
, or for
financial
gain
,
without
the
permission
of the
author
.
Provenance
Received
from the
EWU
Graduate
Studies
Office
.
Description-Table Of Contents
Abstract
--
Acknowledgements
--
List
of
tables
and
figures
--
Introduction
--
Methods
--
Results
--
Discussion
--
Works
Cited
--
Figures
and
tables
--
Vita
.
Description-Abstract
"The
purpose
of this
research
was to
assess
the
impacts
of
invasive
fishes
on
wetland
communities
.
Within
this
study
we
explored
fish
effects
on the
invertebrate
constituents
of these
wetlands
, and
possible
niche
overlap
of
fish
and
dabbling
waterfowl
using
stable
isotope
analysis
.
Brook
stickleback
(Culaea
inconstans)
and
pumpkinseed
(Lipomis
gibbosus)
pose
a
potentially
growing
threat
to
temperate
Pacific
drainages
of
North
America
due
to their
ability
to
outcompete
native
fauna
.
Our
study
compares
and
contrasts
the
invertebrate
constituents
, their
diversity
,
abundances
, and
stable
isotope
ecology
among
fish
invaded
and
non-invaded
wetlands
.
We
found
that
brook
stickleback
and
pumpkinseed
are
having
limited
effects
on the
invertebrate
communities
of these
wetlands
,
however
stickleback
appear
to have a
greater
effect
on these
communities
than
pumpkinseed
.
When
comparing
stickleback
and
pumpkinseed
ponds
collectively
against
fish
free
ponds
we
find
only
three
invertebrate
taxa
are
significantly
affected
,
branchiopods
,
coenagrionids
, and
baetid
mayflies
.
However
when
we
compare
the
presence
of
stickleback
versus
no
stickleback
we
find
several
differences
among
taxa
abundance
and
evenness
.
Evenness
among
invertebrate
communities
within
stickleback
and
no
stickleback
ponds
was
significantly
different
while
diversity
and
richness
were
comparable
among
ponds
.
Fish
free
ponds
exhibited
higher
evenness
values
(E=0.6)
among
taxa
than
stickleback
invaded
ponds
(E=0.4)
.
Among
the
20
most
common
littoral
taxa
,
bivalves
,
chironomids
,
Chaoborus
,
oligochaetes
,
coenagrionids
, and
baetid
mayflies
were
found
to
significantly
vary
in
abundance
.
Our
stable
isotope
analysis
found
evidence
to
suggest
potential
niche
overlap
between
waterfowl
and
stickleback
;
assessment
of
δ13C
ratios
between
stickleback
,
sampled
duck
feathers
, and
duck
blood
were
significantly
different
indicating
different
dietary
sources
.
Analysis
of
δ15N
between
stickleback
and
waterfowl
feather
samples
show
that these
two
species
occupy
similar
trophic
levels
;
however
p-values
suggest
these
tissues
are not
highly
alike
.
When
comparing
δ15N
among
stickleback
and
duck
blood
samples
we
see
these
two
species
occupy
significantly
different
trophic
levels
.
However
,
sticklebacks
appear
to be
generalists
in their
diets
,
showing
evidence
of
both
pelagic
(depleted
13C)
and
littoral
(enriched
δ13C)
carbon
sources
. This
generalist
diet
allows
for
some
degree
of
potential
overlap
and
possible
competition
effects
with
waterfowl
.
Pumpkinseeds
show
potential
niche
overlap
with
waterfowl
as they
possess
similar
carbon
resource
signatures
.
Pumpkinseed
tissues
compared
to
duck
feather
and
blood
samples
were not
found
to
vary
significantly
for
δ13C
.
Duck
blood
samples
for
δ15N
proved
to be
significantly
different
from
pumpkinseed
tissues
.
Nitrogen
analysis
between
waterfowl
feathers
and
pumpkinseed
show
no
significant
differences
,
indicating
that
waterfowl
and
pumpkinseed
share
similar
trophic
levels
as
well
as
diets
and the
potential
for
competition
exists."--Document
.
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Relation-Is Part Of
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Theses
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PDF
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MS
Word.docx
.
[2]
pages
before
title
page
were not
part
of the
original
document
; they were
added
when
converted
to
PDF
.
Original
signatures
on
pages
ii-iii
were
redacted
.
Rights-Access Rights
This
thesis
is
embargoed
for
2
years
. To
access
the
electronic
copy
,
you
must
have a
valid
EWU
Network
ID
and
Password
.
Rights-Rights Holder
Bridges
,
Levi
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