{"id":25437,"date":"2019-08-15T00:00:38","date_gmt":"2019-08-15T04:00:38","guid":{"rendered":"http:\/\/beyondpesticides.org\/dailynewsblog\/?p=25437"},"modified":"2019-08-14T20:34:24","modified_gmt":"2019-08-15T00:34:24","slug":"chemical-intensive-agriculture-is-increasingly-toxic-to-insects","status":"publish","type":"post","link":"https:\/\/beyondpesticides.org\/dailynewsblog\/2019\/08\/chemical-intensive-agriculture-is-increasingly-toxic-to-insects\/","title":{"rendered":"Chemical-Intensive Agriculture Is Increasingly Toxic to Insects"},"content":{"rendered":"<p><img loading=\"lazy\" decoding=\"async\" class=\"alignright wp-image-25438\" src=\"https:\/\/beyondpesticides.org\/dailynewsblog\/wp-content\/uploads\/2019\/08\/dead-bumblebee-2229030_960_720.jpg\" alt=\"\" width=\"347\" height=\"308\" \/><\/p>\n<p>(<em>Beyond Pesticides<\/em>, August 15, 2019) An <a href=\"https:\/\/journals.plos.org\/plosone\/article?id=10.1371\/journal.pone.0220029\">article<\/a> in the journal Plos One, \u201c<strong>An assessment of acute insecticide toxicity loading (AITL) of chemical pesticides used on agricultural land in the United States<\/strong>,\u201d shows that recent shifts in insecticide use\u2014from organophosphates and carbamates to synthetic pyrethroids and neonicotinoids\u2014have made a large contribution to the ongoing insect apocalypse. This shift to insecticides that target insects based on both selective toxicity and delivery method occurs within a context of shrinking habitat and biodiversity.<\/p>\n<p>The study, by Michael DiBartolomeis, PhD, Susan Kegley, PhD, Pierre Mineau, PhD, Rosemarie Radford, and Kendra Klein, PhD, presents a measure of acute insecticide toxicity loading that incorporates acute toxicity, quantity used, and the rate at which the insecticide degrades. <a href=\"https:\/\/peerj.com\/articles\/5255\/\">Goulson et al.<\/a> applied a similar measure in Great Britain that did not incorporate the rate of degradation. Both studies use the median lethal dose (LD<sub>50<\/sub>) to honey bees as a measure of acute toxicity and calculate the potential number of bee deaths based on the number of lethal doses of various insecticides applied in the field. In both cases, researchers used toxicity estimates for honey bees because they are widely available. Other insects may be <a href=\"http:\/\/scott.entomology.cornell.edu\/159.pdf\">more or less sensitive<\/a>.<\/p>\n<p>The two studies show that acutely toxic doses of insecticides used in agriculture in Great Britain and the U.S. increased by a factor of 3.9 to 48 over the study period (1992-2013 for DiBartolomeis et al.; 1990-2015 for Goulson et al.), depending on whether oral or contact toxicity was measured and whether degradates were included. Both studies show that this increase is due to the expansion of the use of neonicotinoid and synthetic pyrethroid insecticides.<\/p>\n<p>The shift away from organophosphates and carbamates resulted from a focus on acute toxicity to human workers. As a result, newer insecticides concentrate their killing power with greater precision on insects\u2014pollinators, predators, and parasites, as well as pests. The insecticides are not only selectively more toxic to insects, but in the case of the systemic insecticides, they are delivered directly to the insect through plant tissues, nectar, and pollen.<\/p>\n<p>Unfortunately, <a href=\"https:\/\/beyondpesticides.org\/assets\/media\/documents\/pollinators\/nolongeraBIGmystery.pdf\">acute toxicity is only part of the problem<\/a>. The same insecticides have chronic effects that have been well documented: harm to reproduction, mobility, and navigation, as well as impairments to feeding, foraging, memory, and learning. Multiple pesticides are found within bee-collected pollen, and the effects of the <a href=\"https:\/\/beyondpesticides.org\/dailynewsblog\/2019\/04\/despite-safety-claims-insecticide-flupyradifurone-is-bee-toxic-on-its-own-and-worse-in-combination\/\">combinations<\/a> are often greater than the individual exposure.<\/p>\n<p>In addition, this pesticide exposure is occurring within an agricultural system that systematically eliminates habitat and biodiversity. The common use of glyphosate-based herbicides in crops engineered to be tolerant to them, as well as drift and runoff of potent insecticides, results in fields and field margins that lack the habitat for insects\u2014and the birds and others who eat them.<\/p>\n<p>Insect populations and biodiversity in general suffer from climate change. The response to the problems in industrial agriculture have taken into account the possibility for food production to result in these wide-ranging adverse impacts. In each area, organic agriculture provides an answer to the industrial model. When organic principles are put into practice, soil sequesters carbon, land use fosters insect biodiversity, and pesticides are rarely employed. Studies <a href=\"https:\/\/beyondpesticides.org\/dailynewsblog\/2017\/09\/organic-better-chemical-intensive-agriculture-fighting-climate-change\/\">show that organic farms<\/a> sequester 13% more CO<sub>2<\/sub> than chemical-intensive farms. A white paper published by the Rodale Institute in 2014,\u00a0<a href=\"http:\/\/rodaleinstitute.org\/regenerative-organic-agriculture-and-climate-change\/\"><em>Regenerative Organic Agriculture and Climate Change: A Down-to-Earth Solution to Global Warming<\/em><\/a>, argues that it is possible to sequester more than 100% of current annual CO<sub>2 <\/sub>emissions by switching to widely available and inexpensive organic management practices, which are referred to in the paper as \u201cregenerative organic agriculture.\u201d<\/p>\n<p><em>All unattributed positions and opinions in this piece are those of Beyond Pesticides.<\/em><\/p>\n<p>Source: <a href=\"https:\/\/journals.plos.org\/plosone\/article?id=10.1371\/journal.pone.0220029\">PLOS ONE<\/a><\/p>\n","protected":false},"excerpt":{"rendered":"<p>(Beyond Pesticides, August 15, 2019) An article in the journal Plos One, \u201cAn assessment of acute insecticide toxicity loading (AITL) of chemical pesticides used on agricultural land in the United States,\u201d shows that recent shifts in insecticide use\u2014from organophosphates and carbamates to synthetic pyrethroids and neonicotinoids\u2014have made a large contribution to the ongoing insect apocalypse. This shift to insecticides that target insects based on both selective toxicity and delivery method occurs within a context of shrinking habitat and biodiversity. The study, by Michael DiBartolomeis, PhD, Susan Kegley, PhD, Pierre Mineau, PhD, Rosemarie Radford, and Kendra Klein, PhD, presents a measure of acute insecticide toxicity loading that incorporates acute toxicity, quantity used, and the rate at which the insecticide degrades. Goulson et al. applied a similar measure in Great Britain that did not incorporate the rate of degradation. Both studies use the median lethal dose (LD50) to honey bees as a measure of acute toxicity and calculate the potential number of bee deaths based on the number of lethal doses of various insecticides applied in the field. In both cases, researchers used toxicity estimates for honey bees because they are widely available. Other insects may be more or less sensitive. The [&hellip;]<\/p>\n","protected":false},"author":2,"featured_media":0,"comment_status":"open","ping_status":"closed","sticky":false,"template":"","format":"standard","meta":{"footnotes":""},"categories":[249,352,354,328,244,93,381,1],"tags":[],"class_list":["post-25437","post","type-post","status-publish","format-standard","hentry","category-agriculture","category-biodiversity","category-environmental-protection-agency-epa","category-neonicotinoids","category-organophosphate","category-pollinators","category-synthetic-pyrethroid","category-uncategorized"],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v26.3 - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>Chemical-Intensive Agriculture Is Increasingly Toxic to Insects - Beyond Pesticides Daily News Blog<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/beyondpesticides.org\/dailynewsblog\/2019\/08\/chemical-intensive-agriculture-is-increasingly-toxic-to-insects\/\" \/>\n<meta property=\"og:locale\" content=\"en_US\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Chemical-Intensive Agriculture Is Increasingly Toxic to Insects - Beyond Pesticides Daily News Blog\" \/>\n<meta property=\"og:description\" content=\"(Beyond Pesticides, August 15, 2019) An article in the journal Plos One, \u201cAn assessment of acute insecticide toxicity loading (AITL) of chemical pesticides used on agricultural land in the United States,\u201d shows that recent shifts in insecticide use\u2014from organophosphates and carbamates to synthetic pyrethroids and neonicotinoids\u2014have made a large contribution to the ongoing insect apocalypse. This shift to insecticides that target insects based on both selective toxicity and delivery method occurs within a context of shrinking habitat and biodiversity. The study, by Michael DiBartolomeis, PhD, Susan Kegley, PhD, Pierre Mineau, PhD, Rosemarie Radford, and Kendra Klein, PhD, presents a measure of acute insecticide toxicity loading that incorporates acute toxicity, quantity used, and the rate at which the insecticide degrades. Goulson et al. applied a similar measure in Great Britain that did not incorporate the rate of degradation. Both studies use the median lethal dose (LD50) to honey bees as a measure of acute toxicity and calculate the potential number of bee deaths based on the number of lethal doses of various insecticides applied in the field. In both cases, researchers used toxicity estimates for honey bees because they are widely available. Other insects may be more or less sensitive. 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The founders, who established Beyond Pesticides (originally as National Coalition Against the Misuse of Pesticides) as a nonprofit membership organization in 1981, felt that without the existence of such an organized, national network, local, state and national pesticide policy would become, under chemical industry pressure, increasingly unresponsive to public health and environmental concerns. Beyond Pesticides believes that people must have a voice in decisions that affect them directly. We believe decisions should not be made for us by chemical companies or by decision-makers who either do not have all of the facts or refuse to consider them. Learn more about our work, read A Year in Review\u20142021, our accomplishments are your victories! Beyond Pesticides seeks to protect healthy air, water, land, and food for ourselves and future generations. By forging ties with governments, nonprofits, and people who rely on these natural resources, we reduce the need for unnecessary pesticide use and protect public health and the environment. Beyond Pesticides provides hands-on services to the public and supports local action by: identifying and interpreting hazards; and, designing safe pest management programs. With the information provided by Beyond Pesticides, people may not only be able to make informed choices and adopt practices that protect themselves and their families from unnecessary exposure to pesticides, but they will be able to effect changes on community-wide pest management decisions and policies that govern pesticide use, such as pesticide uses in parks, schools, for community insect control and along roadsides. 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This shift to insecticides that target insects based on both selective toxicity and delivery method occurs within a context of shrinking habitat and biodiversity. The study, by Michael DiBartolomeis, PhD, Susan Kegley, PhD, Pierre Mineau, PhD, Rosemarie Radford, and Kendra Klein, PhD, presents a measure of acute insecticide toxicity loading that incorporates acute toxicity, quantity used, and the rate at which the insecticide degrades. Goulson et al. applied a similar measure in Great Britain that did not incorporate the rate of degradation. Both studies use the median lethal dose (LD50) to honey bees as a measure of acute toxicity and calculate the potential number of bee deaths based on the number of lethal doses of various insecticides applied in the field. In both cases, researchers used toxicity estimates for honey bees because they are widely available. Other insects may be more or less sensitive. 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