[APWG] Lyme and invasives?

Marc Imlay ialm at erols.com
Thu Jun 2 06:28:48 CDT 2011


 
Responses for Holly are welcome.
 
Marc Imlay, PhD, Conservation biologist
Park Ranger Office (301) 442-5657 cell 

Natural and Historical Resources Division

The Maryland-National Capital Park and Planning Commission

www.pgparks.com <http://www.pgparks.com/> 

 

 

 

 

From: Holliday Wagner [mailto:hbwagner at verizon.net] 
Sent: Wednesday, June 01, 2011 5:04 PM
To: Imlay, Marc
Subject: Re: FW: Re Lyme and invasives?

 

I wonder what the causative relationship is between bush honeysuckle, japanese barberry and ticks/lyme disease.
Is it because animals carrying ticks like the dense, protective cover?
Is it because there is higher humidity inside the canopy of these shrubs that enable the ticks to survive drought periods?

On 6/1/2011 6:32 AM, Imlay, Marc wrote: 

 

 

From: Marc Imlay [mailto:ialm at erols.com] 
Sent: Sunday, May 29, 2011 6:50 AM
To: 'Nevin S. Dawson'
Cc: Imlay, Marc
Subject: FW: Re Lyme and invasives?

 

Hi  Nevin,

 

Here are  two non-native invasive plants we are removing to reduce the risk of Lyne Disease. Cheers.

 

Marc

  _____  

From: Nevin S. Dawson [mailto:ndawson at umd.edu] 
Sent: Friday, May 27, 2011 10:07 AM
To: Marc Imlay (ialm at EROLS.COM)
Subject: tick/lyme/deer

Hi Marc, it was good to meet you yesterday.  I’d appreciate any info you could send me on the relationship between invasive species and/or deer populations and Lyme disease.

Thanks!

Nevin

 

 

 

 

   ▲    Nevin Dawson

  ▲▲▲    <http://www.naturalresources.umd.edu/> Forest Stewardship Educator

 ▲▲▲▲▲   <http://agresearch.umd.edu/RECs/WREC/index.cfm> Wye Research and Education Center

   ▀    University of Maryland <http://www.umd.edu/>   <http://extension.umd.edu/> Extension

 

410-827-8056 ext. 125

PO Box 169

124 Wye Narrows Rd.

Queenstown, MD  21658

 

 

 

  _____  

From: Imlay, Marc [mailto:Marc.Imlay at pgparks.com] 
Sent: Wednesday, May 11, 2011 6:35 AM
To: Marc Imlay; rf_chapman at yahoo.com; Kyde, Kerrie L.; Bruce Kirk; Bruce Kirk; Moffat, Bill; Jorge Bogantes Montero; Colleen Aistis; Patterson, Nicole; McNeil, Paula; Rohde, Carla; Lowe, Kyle; Jacob, Stephanie; Lewis, Greg; Kearns, Greg; Bethel, Shannon; Dillon, John; Garrett, Chris; antonia.bookbinder at gmail.com; Patterson, Michael; a b; Holden, Rachel; Jordan, Glenda; Marshall, Karen; Miller, Becka; Teyssier, Andrea; Wisotzkey, Beth; Abellera, Jon Paolo B.; Sweet, Benjamin; Brown, Tanya; DMills; Goldberg, Amanda; Lee, Jill; Mills, Devin; Sheila Salo; Marian Dombroski; Urdaneta, Sarah; Baden, Thomas; Westby, Brooke; Jil_Swearingen at nps.gov; Warren Steiner; Matt Salo; Nolan, Anthony; Rohde, Carla; McNeil, Paula; scarroll at rhsmith.umd.edu; jlrobinson720 at yahoo.com; alanh47gm at gmail.com; alanh47 at comcast.net; beckyh12 at comcast.net
Subject: Japanese Barberry control Update

HI Naturalists,

 

Now is a good time to update our Japanese Barberry control. Please edit this draft status report and let’s go get the Japanese barberry. Thanks everyone.  

 

There is an 8.8 times increased risk of lyme disease in Jpanese Barberry dominated areas. Jeff Ward reported at the MA-EPPC conference in August 2007 that ticks doubled in Connecticut where Japanese Barberry was present. A year later “The Connecticut researchers found that questing adult ticks were most abundant in areas dominated by Japanese barberry, and that about 44% of the ticks found in barberry were infected with Borrelia burgdorferi, -- the spirochete causative agent of human Lyme disease.  However, only 10% of the less abundant ticks from non-barberry areas were infected. These findings suggest a great probability of humans becoming infected with Lyme disease in barberry dominated areas.” Thus, there is an 8.8 times greater risk in Japanese barberry patches. Matt Salo reported that “I have not seen a single one of those since I eradicated the J. Barberry from Euclid Woods. Dog ticks also seem to have disappeared. I did pick up a single wood tick at Euclid and a deer tick at Woodworth Park, but otherwise this has been an amazingly tick-free area for the past year, despite the greater presence of deer.”

 

 

 


Park

Status

Surveyed and treated by

	

 

Euclid Park 

Surveyed, ongoing removal 

Matt and Sheila Salo

	

Governor Bridge Natural area

Ongoing survey

Chris Garrett

	

Paint Branch UU Church    

ongoing survey 

Alan and Becky Hedin

	

Colmar Manor and Dueling Creek 

Surveyed and found in 2006

John Dillon

	

Patuxent River Park

ongoing survey 

Stephanie Jacob  and Greg Lewis

	

Clearwater Nature Center

surveyed and ongoing removal

Rachel Holden and Marc Imlay

	

Watkins Nature Center

ongoing survey and treatment

Nicole Patterson, Paula McNeil and Carla Rohde

	

Magruder Woods

surveyed and removed 

Marc Imlay

 


Swann Park

surveyed and treated

Marc Imlay

	

Chapman Forest

Surveyed and removed 

Bruce Kirk, Robert Chapman and Marc Imlay

	

Little Paint Branch Park

surveyed and ongoing removal

Marc Imlay

	

Cherry Hill Road Community Park

surveyed and treated

Marc Imlay

	

                          

   

		
				

Lower Beaverdam Creek, Cheverly

MNCPPC Cheverly Conservation Corps and Friends of Lower Beaverdam Creek

Euclid Woods Park

Dates: Please call 301-341-1261 to arrange a work session, when you are free to help out.

Description: Euclid Woods consists of a 50 acre contiguous wooded area wedged between a residential neighborhood, the hospital hill, and the Cheverly Industrial Park, bounded on the west side by a tributary feeding into the Lower Beaverdam Creek. After restoration work began shortly after 2000 the area is slowly returning to its natural state, primarily due to removal of invasive plants and the rescue of young trees and shrubs from windfalls. The restoration has allowed the return of a rich understory of native shrubs, saplings and herbaceous plants, which form the basis of the local food chain and which in turn encourage insects that, according to the entomologist Doug Tallamy, form over 96 percent of the summer diet of our birds. Smaller trees and shrubs, such as dogwood, hawthorn, sassafras, serviceberry, spicebush and several viburnums, such as the hobblebush and witherod are now thriving. Birds such as the pileated woodpecker, woodcock and a number of raptors that had gone missing are now returning. The forest is beginning to function as it should to keep our air and waters pure and support the web of life that in turn supports us. Bring friends and help us remove invasive plants to maintain and further improve this largest and most productive natural area in Cheverly. Tools provided, but bring work gloves and sturdy shoes. 

Directions: Call ahead to arrange the time and meet at 5607 Greenleaf Rd in Cheverly. Enter Forest Rd from Cheverly Ave heading west; go three blocks and keep right when the road splits; continue straight ahead  and park anywhere at the end of on Greenleaf Rd. 

Contact: For further information please contact Matt Salo at 301-341-1261. 


 

Marc Imlay, PhD,

Conservation biologist, Park Ranger Office

(301) 442-5657 cell

Marc.Imlay at pgparks.com ialm at erols.com

Natural and Historical Resources Division

The Maryland-National Capital Park and Planning Commission

www.pgparks.com <http://www.pgparks.com/> 

 

 

From: Marc Imlay [mailto:ialm at erols.com] 
Sent: Thursday, December 09, 2010 8:35 AM
To: Sweet, Benjamin; Dillon, John
Cc: Lowe, Kyle; Imlay, Marc
Subject: Bush Honeysuckle at College Park Aviation Museum

 

Hi Ben and John,

 

Here is the information on the University of Missouri research that found that bush honeysuckle increases the risk of tick borne disease by a factor of ten. We can remove the smaller Bush Honeysuckle with College Park Aviation Museum volunteers, as Mark suggests, for hand removal with 4 prong spading forks.  Herbicide application is needed for the cut stumps the volunteers cut with loppers. Thanks.

 

Marc 

 

Marc Imlay, PhD, Conservation biologist
Park Ranger Office (301) 442-5657 cell 

Natural and Historical Resources Division

The Maryland-National Capital Park and Planning Commission

www.pgparks.com

 

 

  _____  

From: Marc Imlay [mailto:ialm at erols.com] 
Sent: Sunday, October 17, 2010 7:43 AM
To: 'Wildlife and Endangered Species Forum'
Subject: Invasive bush honeysuckle increase risk of tick-borne disease in suburbs by 10x

 

I am so glad we got 80% of the massive populations of Bush Honeysuckle so far out of Little Paint Branch Park in Beltsville, MD, and Magruder Park in Hyattsville, MD, and all of the massive population out of Cherry Hill Park in College Park, MD.  It had just started in Swann Park in Charles County, MD when we then eradicated it.  Marc

 

Marc Imlay, PhD 

Conservation biologist, 301-283-0808, 301-442-5657 cell 

Board member of the Mid-Atlantic Invasive Plant Council, 

Vice president of the Maryland Native Plant Society, 

Chair of the Biodiversity and Habitat Stewardship Committee 

for the Maryland Chapter of the Sierra Club.

 

more selling point to a public that can't seem to part with its beautiful, fragrant & wildly invasive honeysuckle

 

-----Original Message-----
From: ialm at erols.com  <mailto:ialm at erols.com> <ialm at erols.com>
To: invasives at listserv.umd.edu; MD-CONS-COMM at LISTS.SIERRACLUB.ORG; ficmnew at mail.afpmb.org; apwg at lists.plantconservation.org
Sent: Tue, Oct 12, 2010 10:39 am
Subject: [APWG] Invasive honeysuckle increase risk of tick-borne disease in suburbs

http://www.sciencedaily.com/releases/2010/10/101011173245.htm   
 
Science News Share    Invasive Honeysuckle Increase Risk of Tick-Borne Disease in Suburbs
ScienceDaily (Oct. 11, 2010)  "You don't have to go out into the woods
anymore," says tick expert Brian F. Allan, PhD, who just completed a
postdoctoral appointment at Washington University in St. Louis. "The deer
are bringing tick-borne disease to us."
 
 
The invasive plant bush honeysuckle, for example.
 
Yes, that leafy shrub with the lovely egg-shaped leaves on arching
branches, fragrant white or yellow flowers and the dark red berries so
attractive to birds.
 
Called bush or Amur honeysuckle, Lonicera maackii derives from the borders
of the Amur River, which divides the Russian Far East from Manchuria. Its
Latin name honors Richard Maack, a 19th-century Russian naturalist.
 
"I've spent a lot of time in honeysuckle," Allan says, "and I can tell you
there are deer tunnels through it. So if you get down low, you can actually
move through honeysuckle pretty efficiently. And you pick up a lot of ticks
while you're back in there.!
"
 
An interdisciplinary team made up of ecologists, molecular biologists and
physicians from Washington University in St. Louis and the University of
Missouri-St. Louis tested Allan's suspicions by experiment in a
conservation area near St. Louis.
 
In this part of the country, the tick of concern is Amblyomma americanum,
called the lone star tick because the adult female has a white splotch on
her back. The tick-borne diseases are the ehrlichioses, caused by bacteria
in the genus Ehrlichia, named for the German microbiologist Paul Ehrlich.
 

As Allan and his colleagues report this week in the Proceedings of the

National Academy of Sciences, the density of white-tailed deer in
honeysuckle-invaded areas was roughly five times that in areas without
honeysuckle and the density of nymph life-stage ticks infected with
bacteria that cause human disease was roughly 10 times higher.
 
Hard as it may be to believe, given the long chain of interactions needed
to get there, the presence of bush honeysuckle substantially increases the
risk of human disease.
 
"But that's exactly what is happening," says Jonathan M. Chase, professor
of biology in Arts & Sciences and a collaborator on the project. The big
question now, says Chase, who is also director of Washington University's
Tyson Research Center, is whether what holds for honeysuckle holds for
other invasive plants as well. "This may be something that's occurring
quite broadly, but we're really just starting to look at the connection
between invasive plants and tick-borne disease risk."
 
The honeysuckle experiment
 
By fortunate chance, Allan and Chase were able to piggyback their
honeysuckle research on a similar experiment organized by Humberto P. Dutra
of the University of Missouri-St. Louis for his dissertation research.
 
At the August A. Busch Memorial Conservation Area in St. Charles, Mo., just
west of St. Louis, Dutra set up four types of plots. In one type, the
honeysuckle and its berries were left alone; in the second, both the plants
and berries were remo!
ved; in the third, the plant was there but the berries
had been picked and in the fourth, berry clusters were placed on the ground
but the plants were uprooted.
 
"It was very labor intensive so Dutra organized large teams of volunteers
-- dozens at a time -- to go out there and pick fruits," Allan says.
 
"The deer used the open areas less than the honeysuckle patches and we
don't think it's because they're eating the honeysuckle; we think they're
using it for physical structure," says Allan. "They like to bed in it
because it's the densest thing out there, the best structure in town. No
native species comes close to achieving the same density."
 
Allan and Dutra measured vegetation density by counting how many leaves
touched a string between two poles. By this criterion, honeysuckle patches
were 18 times denser than patches of native vegetation.
 
Moreover, Allan says, bush honeysuckle retains its leaves longer than most
native species do. It's the first thing to leaf out in the spring and it's
the last thing in the understory to drop its leaves in the fall, so it
creates structure for a large portion of the year.
 
"This includes really important times of the year from the perspective of
tick biology," Allan adds. "Larval ticks, the first lifestage ticks, are
out from August until October. Come late October, honeysuckle is the only
thing providing green cover, so deer probably bed in honeysuckle throughout
the larval tick season.
 
"The larval ticks become infected when they take their blood meal from an
infected host, usually a deer, and the next life-stage, the nymphs, may
spread disease to people if they grab onto them for the next blood meal.
 
Poop surveys
 
Allan figures out deer density by counting scat. "I can spot one pellet,
just one little popcorn-sized pellet from a couple of meters away," he
says. "And that's indicative of a really ridiculous amount of time spent in
my life counting deer feces."
 
Poop surveys, he calls them.
 

"Deer scat is pretty distinctive," he says. "The only thing you could mix

it up with is scat from an eastern cottontail rabbit, which is similar in
size and shape but much smaller. But it would be hard to distinguish the
scat from an adult rabbit and a baby deer; those are probably the only ones
it would be possible to mix up."
 
Counting ticks
 
Wherever you find white-tailed deer, you are likely to find ticks, Allan
says. Lone star ticks need blood meals to power their metamorphoses from
larva, to nymph, to adult and to fatten up for egg laying.
 
They sometimes bite coyotes, foxes and other animals, but their favorite
hosts are wild turkey and white-tailed deer.
 
"I use a very straightforward way of trapping ticks, Allan says, "and
that's a cooler baited with a piece of dry ice. As the dry ice sublimates,
it releases carbon dioxide gas that attracts the ticks. The ticks climb
onto the trap and get stuck in doublesided carpet tape on the board, and
that's really all there is to it."
 
"The lone-star tick, the most commonly encountered tick in the St. Louis
area, is very aggressive and will actually go after its host. It will run
toward the host, faster than most people probably think a tick can run. It
has its front legs out, and it's trying to find you. It has sensory organs
on its front two legs, so it'll stand there and wave those legs around
trying to detect your heat and your carbon dioxide signature. And when it
gets closer, it kind of zig zags as it's approaching you, because it's
homing in on your signal and when it gets really close, it grabs on.
 
"Sometimes I'll just stand there and watch the ticks do this," he says
grinning. "It's pretty amusing.
 
"My record trap, the one that blew the rest out of the water, had 5,000
nymph lifestage lone-star ticks on it. We've done capture studies that
suggest the nymphs don't travel much more than three meters, so that means
there were 5,000 nymphal ticks within about a three-meter radius of where
we put that trap down.
 
"It was remarkable. It took 10 man-hours to count all the ticks on that
trap. We need to bring them into the lab to test them, so we pick them off
with a pair of forceps one at a time and put them in ethanol."
 
Getting blood from a tick
 
The ticks are brought into the lab where they are pulverized and the mash
is run through a DNA assay developed by Robert E. Thach, PhD, professor of
biology in Arts & Sciences and of biochemistry and molecular biophysics in
the School of Medicine, and Lisa S. Goessling, staff research associate in
the Department of Biology.
 
"The technology for identifying mosquito blood meals has existed for some
time," Allan explains, "because mosquitoes take many blood meals over a
short period of time, so the blood is usually still fresh when you capture
them.
 
"It's much harder to get blood from a tick, which usually takes only one
blood meal per life stage," Thach says. "By the time we capture the tick,
eight months to a year may have elapsed. The tick has had a long time to
!
digest that blood, so there may be only a tiny amount of DNA left -- if
there's any."
 
The team did two assays on tick DNA: one to identify pathogenic bacteria
and the other to identify the animal that provided the tick's last blood
meal.
 
The results showed that more blood meals were taken from deer in
honeysuckle-intact plots.
 
The assay also looked for Ehrlichia chaffeensis and Ehrlichia ewingii,
among other pathogens. Both bacteria were once thought to cause disease
only in animals but have been found to infect people as well.
 
Ehrlichiosis is the general name used to describe several bacterial
diseases that affect animals and humans. The first case of human
ehrlichiosis was diagnosed in 1986.
 
A case of ehrlichiosis caused by another bacterium was identified in 1999
by Gregory A. Storch, MD, the Ruth L. Siteman Professor of Pediatrics at
Washington University's School of Medicine. Worldwide, four ehrlichia
species are currently known to cause disease in humans.
 
Ehrlichiosis begins with symptoms typical of bacterial infection, such as
fever, headache, fatigue and muscle aches. More serious symptoms, such as
joint pain and confusion, may occur and in rare instances the disease is
fatal.
 
Thach says that when he goes into the woods he wears special anti-tick
underwear called Bug Skinz and permethrin-saturated clothing over that.
Thach's lab is currently investigating Ehrlichia bacteria in squirrels and
local Ehrlichia hotspots, locations where the pathogen is found every
single time the scientists sample.
 
Win-Win Ecology?
 
The irrepressible Allan is more encouraged than not by the new findings.
 
"We're really simplifying our environment, he says. That's what the
diversity crisis is leading to -- humans living in monocultures. That's
exactly what bush honeysuckle is, a human-caused monoculture."
 
"But as ecologists like to say, nature abhors a monoculture. Monocultures
are unstable, and they often have negative consequences for human health."
 
"Many studies around the world are showing an increase in the risk of
infectious disease as a result of the loss of biological diversity."
 
"It's hard to get people to focus on invasive plants. That's why these
invaders are so successful. They're basically more persistent than we are."
 
"But people are more likely to pay attention when their health is !
at stake."
 
"So this may be a case of win-win ecology. Honeysuckle control would
benefit native species but it would also benefit human health. I think
that's the really encouraging message to have come out of this study. "
 
Editor's Note: This article is not intended to provide medical advice,
diagnosis or treatment.
 
Email or share this story:| More 
----------------------------------------------------------------------------
----
 
Story Source:
 
The above story is reprinted (with editorial adaptations by ScienceDaily
staff) from materials provided by Washington University in St. Louis.
 
----------------------------------------------------------------------------
----
 
Journal Reference:
 
B. F. Allan, H. P. Dutra, L. S. Goessling, K. Barnett, J. M. Chase, R. J.
Marquis, G. Pang, G. A. Storch, R. E. Thach, J. L. Orrock. Invasive
honeysuckle eradication reduces tick-borne disease risk by altering host
dynamics. Proceedings of the National Academy of Sciences, 2010; DOI:
10.1073/pnas.1008362107 
Need to cite this story in your essay, paper, or report? Use one of the
following formats: 
 APA
 
 MLA Washington University in St. Louis (2010, October 11). Invasive
honeysuckle increase risk of tick-borne disease in suburbs. ScienceDaily.
Retrieved October 12, 2010, from http://www.sciencedaily.com <http://www.sciencedaily.com­> ­
/releases/2010/10/101011173245.htm
Note!
: If no author is given, the source is cited instead.
enlarge
 
This is a wall of bush honeysuckle in a park in St. Louis. Half the time
that unidentifiable shrubby green thing is the invasive plant Amur
honeysuckle, Lonicera maackii. A new study shows that whitetailed deer
shelter in bush honeysuckle, dropping larval ticks there that carry
diseases called the ehrlichioses. In this way an invasive plant is
indirectly linked to emerging zoonoses. (Credit: Brian Allan)

 

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