“Mite Murder Mystery” Workshop at the Canadian Greenhouse Conference (CGC)

Going to the Canadian Greenhouse Conference (CGC) in October? Check out the “Mite Murder Mystery” Workshop Wednesday Afternoon!

Screenshot of the registration page for the Mite Murder Mystery Workshop at the Canadian Greenhouse Conference

What is it?

Not sure what pest mites you have in your greenhouse, or which of your predators are establishing? Join us for the Mite Murder Mystery to help you identify the victim and the perpetrator!

You’ll learn different sampling methods for mites and how to identify important mites in Canadian greenhouses using a simple illustrated key. We’ll also cover strategies for managing mite pests.

Read on for more details, including how to register!

Who will be there?

This workshop will be run by:

  • Dr. Omid Johardchi, Ph.D. Agricultural Entomology and Acarology (the study of mites!) and IPM Specialist at Anatis Bioprotection, running their taxonomic lab.
  • Mika de Silva Lima, Ph.D. Candidate in Biology at Western University, studying spider mite biology in the Grbic Lab.

How to Register:

You MUST register to attend (in addition to registering for the conference), as microscopes are limited. Registration will be capped at the first 25 people to sign up. Note this workshop is only open to growers or IPM staff at greenhouses.

REGISTER HERE

Where is it?

The workshop will be held in Ballroom A of the Niagara Falls Convention Centre, in Niagara Falls, Ontario. See the circled area in red on the map below!

Screen shot of the map of the exhibition hall at the conference indicating where Ballroom A is.

When is it?

The workshop will be held the first day of the conference (Oct 7th), from 2-3:30 pm Wednesday afternoon.

More Details

For more information on the Canadian Greenhouse Conference, including how to register, go here: https://www.canadiangreenhouseconference.com/

Creature Feature: Nesi — The Green Bug That’s Not Always Good News

Authors: Julia Dubeau (Research Assistant, OMAFA), Rose Labbé, PhD (Research Scientist, Greenhouse Entomology, AAFC), and Cara McCreary (Greenhouse Vegetable IPM Specialist, OMAFA)

Meet the Creature

For this Creature Feature, we’re meeting Nesidiocoris tenuis, commonly known as Nesi, green bug, or tomato bug.

Close-up of a green late-instar Nesi nymph with developing wing buds

Nesi is a small green mirid bug that has become a concern for Ontario greenhouse vegetable growers – specifically greenhouse tomatoes and greenhouse cucumbers but greenhouse peppers are also a potential host.

At first glance, Nesi might not look too scary. It is small, green, and easy to mistake for something helpful. But this is one of those “don’t judge a bug by its colour” situations — not every green bug in the crop is a good bug!

Nesi is an omnivorous mirid, meaning it can feed on both insects and plant tissue. In some regions around the world, it has been used as a beneficial insect, but in Ontario greenhouse vegetable production it is considered a pest because of the plant damage it can cause.

Continue reading “Creature Feature: Nesi — The Green Bug That’s Not Always Good News” →

PART 2. Genomic diversity of ToBRFV: Is it changing in Canada?

Authors: Greg Fougere (MSc graduate, Brock University), Jonathan Griffiths (Research Scientist – Virology, Agriculture and Agri-Food Canada) and Cara McCreary (Greenhouse Vegetable IPM Specialist, OMAFA)

Part 1 explained how we suspect ToBRFV was entering into Canada and moving between greenhouses (access post here). Here we will explore mutations, adaptations and how the virus is responding to the protection offered by genetic host resistance.

Before we go any further, let’s explain what these terms mean.

Mutation: random change in the viral genome that occurs when the virus replicates inside a host plant. Plant viruses with RNA genomes (like ToBRFV) are especially prone to mutations.

Adaptation: heritable trait that becomes common in a virus population because it improves survival or transmission in a specific environment.

Adaptation occurs through natural selection acting on mutations. This can happen over multiple infection cycles.

Continue reading “PART 2. Genomic diversity of ToBRFV: Is it changing in Canada?” →

Mirid Identification Resources

Below you will find details to assist with identifying some key mirid species. The focus is distinguishing between Dicyphus hesperus, a beneficial mirid, and Nesidiocoris tenuis, a pest mirid. This material was presented in the Tools of the Trade Workshop at the 2025 Canadian Greenhouse Conference.

These PDF’s can be downloaded and used as reference material. They can be printed on letter size paper.

Continue reading “Mirid Identification Resources” →

Nesi Scouting Sheets

three green mirid bugs on a green tomato leaf and stem

Below you will find scouting sheets to assist with detection of Nesidiocoris tenuis on three different crops.

These PDF’s can be downloaded and used as reference material. They can be printed on legal size paper.

Continue reading “Nesi Scouting Sheets” →

Disinfectants & Cleaning Agents Spreadsheet: Version 2

This spreadsheet is available to download and edit with your own notes. It was last updated 09-July-2025. The spreadsheet may not be an exhaustive list and is meant to summarize a variety of products and list relevant research results. It will be updated periodically.

Contact cara.mccreary@ontario.ca to inquire about adding products to this spreadsheet for Version 3.

Tobacco Streak Virus in Greenhouse Crops

Written by Caio Correa, Pathologist – Horticulture (A), OMAFA with input from Cara McCreary, Greenhouse Vegetable IPM Specialist, OMAFA

As greenhouse growers become more proactive in testing their plants for pathogens, more virus detections are showing up in the reports. This can be concerning, especially after seeing devastating outbreaks of Tomato Brown Rugose Fruit Virus (ToBRFV) in the last few years, which caused 70% crop losses in some greenhouses.

Not every virus infection will necessarily lead to a major outbreak like ToBRFV, but knowing which ones are circulating in the crops and how they spread can help prevent economic losses.

Insect-vectored viruses are among the most common in greenhouses. Some of these viruses and their vectors are listed below:

  • Cucumber Mosaic Virus (CMV) – Aphids
  • Zucchini Yellow Mosaic Virus (ZYMV) – Aphids
  • Watermelon Mosaic Virus (WMV) – Aphids, cucumber beetles
  • Tomato Spotted Wilt Virus (TSWV) – Thrips
  • Impatiens Necrotic Spot Virus (INSV) – Thrips
  • Beet Pseudo Yellow Virus (BPYV) – Whitefly
  • Tomato Chlorosis Virus (TOC) – Whitefly

But a particular virus seems to be showing up more frequently in greenhouses, specifically in cucumbers: the Tobacco Streak Virus (TSV). Ontario growers haven’t reported any notable losses yet, but there is a history of major outbreaks in other crops and countries.

Outbreaks in India in the early 2000s resulted in 30-75% of crop losses in field cucumbers, and over $65 million in economic losses in groundnut. More recently, in 2013, TSV was reported in soybean fields in both the USA and Ontario.

What is Tobacco Streak Virus (TSV)?

Tobacco Streak Virus (TSV) is a plant pathogenic virus of the family Bromoviridae. It was originally identified in tobacco, but it can infect over 200 plant species. Among crops, cucurbits, legumes, oil seeds, cotton and cranberries are listed as common hosts, but it can probably infect any greenhouse crop.

How does TSV spread?

TSV can be transmitted through seed and mechanical damage, but it is primarily spread by the movement of infected pollen by thrips. Weeds are also involved in the cycle, both a host for the virus as well as a reservoir for thrips. Though TSV has not been studied in greenhouses, it is safe to assume that the movement of workers, machinery and plant material could also transmit infected pollen and spread the disease.

And one strange observation we’ve made in recent years, are populations of the bean leaf beetle (Cerotoma trifurcata) that appeared in a cucumber greenhouse that happened to have plants infected with TSV. Why is this so strange, you ask? Because bean leaf beetles are commonly found feeding on legumes (like soybeans) not cucurbits (like cucumbers)! Bean leaf beetles are also known to vector viruses within soybean crops, such as the bean pod mottle virus (BPMV). With all this, it’s probably safe to ask this question: could bean leaf beetles be vectoring TSV?

Side note: Look for signs of defoliation of the leaves (similar to looper damage), take a look at your sticky cards and inspect the plants for small beetles with the following adult features:

  • Up to 5 mm in length
  • Varies in colour from deep red to pale yellow or tan
  • May have from 0 to 6 spots on elytra (hard hind-wings)
  • Inverted black triangle behind the scutellum (looks like their neck) (Fig. 1)

Fig. 1. Bean leaf beetle colour and spot variations. Top row photo credit: Cara McCreary. Bottom row photo credit: Dave Cheung.

Symptoms and Diagnosis

Symptoms of TSV may vary depending on the host. The virus gained its name after the necrotic dark streaks on the veins of infected plants, but other symptoms include leaf chlorosis, stunted growth, deformed shoots, leaf mosaic and lodging.

In cucumbers,infected plants showed leaf curling and wrinkling, with a somewhat blistered and distorted look. Some streaks and patterns of chlorosis (yellowing) were also observed (Fig. 2).

Fig. 2. Cucumber leaves with confirmed infection by Tobacco Streak Virus from a greenhouse in Ontario. Photo by Dr. Geneviève Marchand (Greenhouse Pathologist, AAFC Harrow).

However, these symptoms alone are not enough for a diagnosis, as they may also be caused by other viruses and pathogens. Accurate virus identification can only be done though molecular assays in a diagnostic lab or sometimes with on-farm tools like immunoassay strip tests when available.

Monitoring and Prevention

Infections by plant viruses cannot be treated, and the best management strategy is to prevent their spread through early detection, cultural practices, and controlling insect populations.

Following an integrated pest management (IPM) protocol will help not only with viral diseases, but also with other pests. Those include:

  • Regular monitoring and testing for viruses and using sticky traps to surveil for insect populations, particularly thrips in the case of TSV
  • Implementing crop rotation and maintaining optimal plant nutrition levels
  • Removing and properly disposing of infected plants
  • Using biological control agents to manage thrips and other insect pests
  • Applying insecticides at label-rates and rotating modes of action to prevent resistance in thrips populations.
  • Maintaining strict sanitation practices, including disinfecting tools and equipment

More details on IPM practices can be found in the OMAFRA IPM Guide for Greenhouse Fruits and Vegetables and on the Ontario Crop IPM website. For information on registered pesticides for greenhouse crops, visit the Ontario Crop Protection Hub.

If you suspect viral infections in your greenhouse crops, consider submitting samples for testing or reach out to the OMAFA specialists (and feel free to let us know if you find bean leaf beetles in your crop too!):

References

Department for Environment, Food & Rural Affairs (DEFRA), 2024. Tomato Brown Rugose Fruit Virus (ToBRFV) Factsheet.

Irizarry, M.D., Kleczewski, N.M., Babu, B. and Jain, R., 2016. Re-emergence of Tobacco streak virus infecting soybean in the United States and Canada. Plant Health Progress, 17(2), pp.92-94.

Krishnareddy, M., Bhat, A.I., Kiran Kumar, M. and Govindappa, M.R., 2003. Outbreak of Tobacco streak virus causing necrosis of cucumber (Cucumis sativus) and gherkin (Cucumis anguria) in India. Plant Disease, 87(10), p.1264.

Kumar, P.L., Muniyappa, V., Jones, A.T., Reddy, D.V.R., 2008. Emergence and spread of Tobacco streak virus menace in India and control strategies. Indian Journal of Plant Protection, 36(1), pp.1-8.

McCreary, C. M., Smith, J. L., Bahlai, C. A., Schaafsma, A. W., & Hallett, R. H. 2022. Phenology of Bean Leaf Beetle (Coleoptera: Chrysomelidae) in Ontario, Canada and Field Validation of a Degree-Day Model. Environmental Entomology, 51(1), 252-262.

Ontario Ministry of Agriculture, Food and Agribusiness (OMAFA), 2025. Publication 836A: Integrated Pest Management for Greenhouse Fruits and Vegetables.

Upcoming local event: Leamington Greenhouse Grower Expo

If you are local to southwestern Ontario and itching to get out and mingle with the greenhouse sector and their allies, you won’t want to miss the Leamington Greenhouse Grower Expo (LGGE)! After a successful inaugural event in 2024, this years event is equipped with a big lineup of exhibitors and speakers. And as an added bonus, they’ve added a Biocontrol Workshop the day before but space is limited for the workshop so you’d need to secure a spot ASAP. Registration is open for both days. See details below.

(Psst…there’s also an after party this year…)

Continue reading “Upcoming local event: Leamington Greenhouse Grower Expo” →

Thrips ID Workshop Resources

In 2024, a series of hands-on workshops was run to help growers and IPM staff learn how to identify thrips to species. This workshop series was developed and delivered by the Vineland Research and Innovation Centre (Dr. Rose Buitenhuis, Ashely Summerfield), Ontario Ministry of Agriculture, Food and Agribusiness (OMAFA) (Dr. Sarah Jandricic, Cara McCreary), and Agriculture and Agri-Food Canada (AAFC) (Dr. Rose Labbé).

Resources related to this workshop are below.

  1. Thrips ID Workshop Workbook (May 2024 edition)
  2. How-to Videos for Thrips Collection
    1. Building an aspirator:
    2. Plant washing to sample thrips:

Thrips ID Workshop Workbook (May 2024 edition)

How-to Videos for Thrips Collection

Building an aspirator:

Plant washing to sample thrips: