This is potentially a game-changer when it comes to dealing with #Knotweed (which just laughs at #Glyphosate)!

#MeshTech: A New Strategy for Managing Knotweed

February 24, 2026

"Knotweed (#Reynoutria spp.) is a severely invasive plant originating from Eastern Asia. Introduced to the East Coast in the late 1800s as an ornamental, knotweed has since become ubiquitous across North America, reaching over 40 US states and 8 Canadian provinces. Knotweed has proven extremely detrimental to a wide variety of ecosystems in which it has established. Forming tall, dense thickets, knotweed shades out native plants, preventing them from growing. Additionally, knotweed is #allelopathic, meaning it releases organic compounds into the soil that inhibits the growth of native plant species.

Knotweed also increases erosion along streams and riverbanks. By shading out native groundcover species and reducing the diverse root reinforcement provided by native species in riparian zones, riverbanks lose considerably more soil when infested with stands of knotweed (Hammer 2019, Matte et al. 2021). This erosion can increase turbidity of waterways, potentially affecting fish and other aquatic species (Henley et al. 2000). The reduction of native plants in riparian zones paired with winter dieback of knotweed stems also leaves riverbanks extremely vulnerable to winter and early spring flooding. This degradation of the riparian area creates a feedback loop in which floods carry knotweed propagules downstream, where they can colonize and increase erosion in new areas (Colleran et al. 2020).

Historically, management of knotweed has been extremely time-and-resource intensive. Large populations require years of consistent treatment, often combining mechanical and chemical approaches to be effective. This commitment to diligent, multi-year mechanical treatment can be discouraging and can lead many to abandon treatment plans before completion. However, a new knotweed management technique could reduce labor inputs.

Developed by Dr. Eric Donnelly, the MeshTech management technique has produced promising results at managing the growth and spread of knotweed while dramatically reducing labor inputs. This method involves cutting knotweed stems down to the soil level and laying -inch galvanized steel hardware fencing over the cut stems. When knotweed resprouts, it grows through the openings in the fencing. As stems mature and thicken, the metal fencing will begin to cut into the stems.

The knotweed will continue to grow through the fencing, effectively girdling itself at its base. This method aims to impact knotweed's nutrient pathways while also damaging the structural integrity of the plant. Alone, this method cannot eradicate knotweed populations. However, the MeshTech method can potentially reduce the health and vigor of knotweed, thus reducing the amount of cutting required in a growing season and the rate of spread in an area.

At the #PleasantHillPreserve in #ScarboroughME, the #ScarboroughLandTrust (#SLT) has begun implementing the MeshTech method to manage a portion of their knotweed infestation. An effort led by SLTs #Stewardship Director Sami Wolf and Nathan Hjort, owner of Absolutely Complete Property Services, initial results indicate that the hardware fencing is proving successful. The knotweed forced to grow through the hardware fencing at Pleasant Hill Preserve showed clear signs of strain. Stems demonstrated significantly stunted growth and had even begun flowering early, an indication that a plant is under stress. While knotweed struggled to grow through the -inch holes, #NativeFlora had begun to sprout up through the hardware fencing. Other knotweed management practices, such as #tarping or mowing, often discourage the growth of native species in a management area. Over time, the presence of native flora could provide an extra level of #BioticResistance that could help slow the growth of knotweed and help kickstart #NativeRevegetation efforts. Eventually, supplemental plantings of native woody species can take place by cutting openings in the fence to allow for these larger species to grow. The fence can also be easily staked down, preventing knotweed or moving water from moving it out of place.

It is important to note that knotweed is a resilient plant and there is no single management action alone that will completely eliminate a population. The most effective knotweed management strategies use creative combinations of multiple approaches. Knotweed is a rhizomatous species, meaning it has an extensive, underground nutrient storage system made up of horizontal rhizomes that store nutrients. Draining this underground nutrient storage is the key to effectively managing an infestation. Consistent cutting of knotweed forces the plant to exhaust its below ground resources. By combining a cutting regimen with the MeshTech method, land managers could potentially see a significant reduction in their management timeline.

The effectiveness of this method provides promising implications for the future of knotweed management in Maine. Paired with consistent management, the MeshTech method could provide Maine with another tool to mitigate the spread of knotweed and reduce our reliance on chemical treatments."

Source:
https://www.maine.gov/dacf/about/news/news.shtml?id=13343931

#SolarPunkSunday #NaturalSolutions #NoHerbicides #HerbicideAlternatives #JapaneseKnotweed #LandTrusts #Rewilding #NativePlantSpecies #RestoringNativePlantSpecies #InvasiveSpecies #InvasiveSpeciesWeek
#MaineDepartmentOfAgricultureConservationAndForestry

News: Newsroom: Maine Department of Agriculture, Conservation and Forestry

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How to identify #AsianLadyBeetles

"Adult beetles

The multicolored Asian lady beetle looks very similar to other lady beetles but is generally larger, about 1/3-inch long.

It can be seen in a range of colors, ranging from orange to yellow to red or even (rarely) black.
This beetle typically has 19 black spots, which can vary in appearance from well-defined to barely discernible traces on its wing covers.
These lady beetles may also have fewer than 19 spots, and some may have no spots at all.
Look for the distinct black 'M'-shaped marking behind its head to identify the multicolored Asian lady beetles correctly.
The 'M' can appear thick, thin, or even broken.

Larvae

The immature larvae are alligator-like and appear similar to other lady beetle larvae.

Larvae are blue to black with two orange stripes and rows of small spines on their bodies."

Learn more:
https://extension.umn.edu/nuisance-insects/multicolored-asian-lady-beetles

#SolarPunkSunday #InvasiveSpecies #NaturalSolutions #Trees #NoPesticides #ElmZigZagSawfly #NaturalPredators

Multicolored Asian lady beetles

Multicolored Asian lady beetle, Harmonia axyridis (Pallas) is also known as Asian lady beetle, Halloween lady beetle, and Japanese lady beetle.

[Thread] So, here's a problem that may already have a solution...! Apparently, #ElmZigZagSawfly, an invasive species, is spreading in the #Northeastern US and can defoliate #ElmTrees (which have been making a comeback from #DutchElmDisease), and has adapted to switch tree species. However, #AsianLadyBeetles, another invasive species and the natural predator of #LanternFlies (and aphids and other pests), is also spreading! I know we always have some Lady Beetles inside our house, and instead of killing them, my plan is to catch and release them outside... So they can hopefully do their thing! (And yes, we have quite a few Elm trees, descendant of a survivor tree that fell down recently, in our tree stand).

Elm Zig Zag Sawfly

"The first confirmed detection of the elm zigzag sawfly in North America occurred in August 2020 in Québec, Canada (Martel et al. 2021; https://www.invasivespeciescentre.ca/first-confirmed-sighting-of-a-new-invasive-in-north-america-elm-zigzag-sawfly/). Canadian authorities were unable to determine the introductory pathway or amount of time the insect had been present [Invasive Species Centre].

The Canadian population was not the only outbreak on the continent, however. Earlier the same year, the tell-tale feeding pattern – zigzags on the tree’s leaves — was observed in Frederick County, Virginia (northwestern corner of the state). Since no specimens were recovered, identification was not confirmed. A year later, specimens collected from the same confirmed the presence of EZS [David Gianino, State Plant Regulatory Official (SPRO) of Virginia, pers. comm.]. Additional surveys that summer led to detections in eight additional Virginia counties [K. Oten blog].

Also in the summer of 2021, symptoms were observed in Lehigh County, Pennsylvania. Again, however, the absence of a specimen prevented formal identification [K. Oten blog]. In 2022, official detections were made in Pennsylvania, North Carolina, Maryland, and New York [NCSU extension]. The New York infestation might have spread naturally across the St. Lawrence River from the Canadian population [https://www.wwnytv.com/2022/10/03/new-pest-affecting-elm-trees-st-lawrence-county/].

In 2023, outbreaks were detected in Ohio, Vermont, and Massachusetts [NCSU extension map]. In 2024, Wisconsin found EZS in several counties [University of Wisconsin extension]. Neither the Canadian Food Inspection Agency nor the [Canadian] Invasive Species Centre reports on EZS’ more recent status in Canada."

[...]

"Since most trees can recover from sporadic or minor defoliation events, the state extension programs say control efforts are often not warranted. Furthermore, since EZS is a new pest species, little is known about effective management. Results of experimental treatments using various pesticides or biopesticides are reported from Hungary (Blank et al. 2010), Romania (Fătu et al. 2020), and Virginia [NCSU extension]. The University of Wisconsin and University of Massachusetts extension service mention several predators present in Europe. The University of Massachusetts extension service notes that the multicolored Asian lady beetle, Harmonia axyridis, which preys on EZS in Serbia, is also present in Massachusetts (actually, it is widespread in the United States); its impact on elm zigzag sawfly in Massachusetts is uncertain."

Learn more:
https://www.dontmovefirewood.org/pest_pathogen/elm-zig-zag-sawfly/

#SolarPunkSunday #InvasiveSpecies #NaturalSolutions #Trees #NoPesticides #DontTransportFirewood #CheckYourVehicles #SaveTheTrees

Discover the Risks and Interactive Dangers with Over-the-Counter Painkillers. Non-steroidal anti-inflammatory drugs (NSAIDs) How they can prevent some prescription medications from working properly. Also, can cause damage to major organs ~ your kidneys, liver, heart ~ digestive system.

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Goats 'delight' at Hamilton property as they destroy invasive buckthorn one bite at a time | CBC News

Goats in the City arrived at the Flamborough home last week with a trailer of goats ready to bleat around the bush. 

CBC

Risks and Interactive Dangers of Non-steroidal anti-inflammatory drugs, like ibuprofen, aspirin & naproxen, can cause serious problems with organ function, prevent medications from working properly.

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#Risksoverthecounterpainkillers #naturalsolutions

Antimicrobials produced by archaea can kill bacteria

As bacteria become increasingly resistant to antibiotics and other antibacterials, there is a growing need for alternatives. In a study published in the open-access journal PLOS Biology, Tobias Warnecke and colleagues from the University of Oxford and the MRC Laboratory of Medical Sciences, United Kingdom, identified untapped antimicrobials produced by archaea, single-celled organisms that make up one of the three domains of life (the other two being bacteria and eukaryotes, the group that includes us).

Phys.org

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