| Dicyphus errans |

Last updated: 11/09/2026
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(Also known as: Predatory mirid) |
The following Pesticide Hazard Tricolour (PHT) alerts are based on the data in the tables below. An absence of an alert does not imply the substance has no implications for human health, biodiversity or the environment but just that we do not have the data to form a judgement. The alerts for Highly Hazardous Pesticides (HHPs) are based on applying the FAO/WHO (Type 1) and the PAN (Type II) criteria to PPDB data. Further details on the HHP indicators are given in the tables below. Neither the PHT nor the HHP hazard alerts take account of usage patterns or exposure, thus they do not represent risk.
| PHT: Environmental fate |
PHT: Ecotoxicity |
PHT: Human health |
Highly Hazardous Pesticide |
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A predator of whiteflies and other soft bodied insects that may be used for their biological control |
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Greenhouse whitefly (Trialeurodes vaporariorum); Tobacco whitefly (Bermisa tabaci); Silverleaf whitefly (Bermisa argentifolii); spidermites; Other soft bodied insects |
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Glasshouse vegetables and ornamentals |
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Dicyphus errans is a small, slender mirid bug that is pale green with a delicate, elongated body and long legs. Adults typically measure around 3–4 mm in length and have translucent wings held flat over the abdomen, showing a subtle pattern of veins and a slightly darker tip. The head is narrow with prominent red eyes and long, thread like antennae. The thorax and abdomen are pale green, sometimes tinged with yellow or brown depending on age and environment. |
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Class: Insecta; Order: Heteroptera; Family: Miridae |
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Not applicable |
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Not applicable |
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Approved - use as a biocontrol agent is permitted without a licence |
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Not applicable |
| EC Regulation 1107/2009 (repealing 91/414) |
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Not applicable |
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Not applicable |
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Not applicable |
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Not applicable |
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Not applicable |
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ATAustria |
BEBelgium |
BGBulgaria |
CYCyprus |
CZCzech Republic |
DEGermany |
DKDenmark |
EEEstonia |
ELGreece |
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ESSpain |
FIFinland |
FRFrance |
HRCroatia |
HUHungary |
IEIreland |
ITItaly |
LTLithuania |
LULuxembourg |
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LVLatvia |
MTMalta |
NLNetherlands |
PLPoland |
PTPortugal |
RORomania |
SESweden |
SISlovenia |
SKSlovakia |
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ISIceland |
NONorway |
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Not applicable |
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Yes |
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Insectivore |
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Macro-organism |
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Natural |
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Consumption |
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This species originated across Europe and western Asia. It is now found throughout most of Europe, including the British Isles, Scandinavia, Russia, and extending into western Asia. |
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Crop protection |
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Suitable for use in most agricultural systems were approved for use as a biocontrol agent |
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Dicyphus errans |
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| UK Poisons List Order 1972 |
Rotterdam Convention |
Montreal Protocol |
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| Stockholm Convention |
OSPAR |
EU Water Framework Directive |
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Most countries require a licence to be issued before non-native macro-organisms may be released as biocontrol agents |
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Not applicable |
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Not applicable |
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Not applicable |
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Not applicable |
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Living organism |
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Current |
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The commercial production of Dicyphus errans is often cultivated directly within commercial greenhouses using a banker plant system rather than being mass-produced strictly in industrial insectaries. Because it requires both prey and live plants to survive and reproduce, growers maintain specialised companion plants like great mullein, tomato, or eggplant in their greenhouses to serve as a physical breeding ground. Within these controlled microclimates, female bugs insert their eggs into the plant tissue, and emerging nymphs are provided with essential water from the host leaves alongside high-quality supplemental proteins. To accelerate nymphal development, increase survival rates past 90%, and build up massive field populations, producers may supplement the bugs' diet with eggs of the Mediterranean flour moth or dead brine shrimp cysts. Once dense populations are established on these banker seedlings, they can be distributed throughout commercial crops to combat whiteflies, thrips, and spider mites. |
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The production and use of Dicyphus errans as a biocontrol agent presents a low-carbon, climate-friendly alternative to traditional synthetic chemical pest management. As its mass-rearing relies heavily on greenhouse banker plants rather than heavily automated, fossil-fuel-reliant manufacturing factories, its greenhouse gas (GHG) footprint is minimal. |
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As this parameter is not normally measured directly, a surrogate measure is used: ‘Photochemical oxidative DT₅₀’. Where data is available, this can be found in the Fate Indices section below. |
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| Soil adsorption and mobility |
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None
| Terrestrial ecotoxicology |
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Q3 Q = Miscellaneous data from online sources 3 = Unverified data of known source No adverse effects expected or identified |
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Q3 Q = Miscellaneous data from online sources 3 = Unverified data of known source No adverse effects expected or identified |
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Q3 Q = Miscellaneous data from online sources 3 = Unverified data of known source No adverse effects expected or identified |
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Q3 Q = Miscellaneous data from online sources 3 = Unverified data of known source No adverse effects expected or identified |
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| Regulatory Threshold Levels (RTLs) |
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Note: These RTLs have been calculated using the regulatory approach used in the European Union and based on ecotoxocity values in the PPDB.
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No data |
No data for acute and chronic mammals |
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No data |
No data for acute and chronic birds |
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No data |
No data for acute and chronic earthworms |
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No data |
No data for non-target plants vegetative vigour and seedling emergence |
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No data |
No data for contact and oral honeybees |
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No data |
No data for parasitic wasps and predatory mites |
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No data |
No data for temperate acute and chronic fish |
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No data |
No data for temperate acute and chronic aquatic invertebrates |
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No data |
No data for free-floating plants, rooted plants, acute and chronic algae |
| HUMAN HEALTH AND PROTECTION |
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Not applicable |
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Q3 Q = Miscellaneous data from online sources 3 = Unverified data of known source No adverse effects expected or identified |
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| Carcinogen |
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Endocrine disruptor |
XNo, known not to cause a problem |
A0 A = Chromosome aberration (EFSA database) 0 = No data ; B0 B = DNA damage/repair (EFSA database) 0 = No data ; C0 C = Gene mutation (EFSA database) 0 = No data ; D0 D = Genome mutation (EFSA database) 0 = No data ; E3 E = Unspecified genotoxicity type (miscellaneous data source) 3 = Negative |
XNo, known not to cause a problem |
| Reproduction / development effects |
Acetyl cholinesterase inhibitor |
Neurotoxicant |
XNo, known not to cause a problem |
XNo, known not to cause a problem |
XNo, known not to cause a problem |
| Respiratory tract irritant |
Skin irritant |
Skin sensitiser |
XNo, known not to cause a problem |
XNo, known not to cause a problem |
No data found |
| Eye irritant |
Phototoxicant |
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XNo, known not to cause a problem |
No data found |
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No adverse health effects identified |
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No information available |
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Not applicable |
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Not listed |
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Dicyphus errans |
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| Record last updated: |
11/09/2026 |
| Contact: |
aeru@herts.ac.uk |
| Please cite as: |
Tzilivakis, J., Lewis, K.A., Green, A. and Warner, D.J. (2026) A decade of growth and impact of the Pesticide Properties Database (PPDB). Human and Ecological Risk Assessment: An International Journal, 1–26. DOI: 10.1080/10807039.2026.2702066
Lewis, K.A., Tzilivakis, J., Warner, D. and Green, A. (2016) An international database for pesticide risk assessments and management. Human and Ecological Risk Assessment: An International Journal, 22(4), 1050-1064. DOI: 10.1080/10807039.2015.1133242
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