Spring 2024 Pesticide Update

Friday, March 15, 2024

We have three new products registered for use in cannabis in 2024! While we are working on updating our spray guides for the year, I thought you might want a sneak peak of the new registrations for the cannabis industry. I’ve summarized their use patterns below, but always be sure to check the official product label before purchasing/using a product to make sure that you have access to the most accurate and updated information. These labels will change unannounced!

Product: Spear T (active ingredient is GS-omega/kappa-Hxtx-Hv1a)

Registration Number: 34679___ PEST CONTROL PRODUCTS ACT

PHI: 0 days

REI: 4 hours, or until sprays have dried

For suppression of two-spotted spider mite in greenhouses or other enclosed structures

SPEAR T is effective on immature and adult life stages of mites. Earlier or younger developmental stages are more susceptible, except for the egg stage (Spear T is not effective on eggs).This product does not have systemic activity, and therefore requires thorough coverage of infested plants. The active ingredient acts largely through contact, functioning as a central nervous system inhibitor of target pests infesting labeled crops.

SPEAR T is mixed with water and applied as a foliar spray. Do not make more than 3 consecutive applications, or more than 6 applications per year. Repeat applications at 3- to 10-day intervals depending on pest activity, and plant growth rate. Under heavy pest pressure conditions, use the shorter spray interval, the higher rate, and/or increase spray volume to improve spray coverage.

Product: Cyclone Plus (active ingredients are citric acid and lactic acid)

Registration Number: 34762___ PEST CONTROL PRODUCTS ACT

PHI: 0 days

REI: 4 hours, or until sprays have dried

For use against powdery mildew in cannabis produced commercially indoors or field grown.

For maximum effectiveness, apply before, or during early stages of infection. Apply in sufficient volume to ensure full coverage for effective control, hitting both sides of the leaf with a fine spray. Do not mix with alkaline or copper-based products.

Repeat applications at 7- to 10-day intervals depending on pest activity, and plant growth rate. Under heavy pest pressure conditions, use the shorter spray interval, the higher rate, and/or increase spray volume to improve spray coverage.

Speaking of spray guides...we have some exciting news!

A few of Perennia's team members have taken on the enormous task of re-formatting our current spray guide layout! We are moving away from our word document summaries of all of the products that are listed for a particular commodity group, and towards a more interactive, searchable platform. You still have the capacity to print information if that is your preferred way to access the information, but with now the added flexibility to sort and filter based on exactly what your looking for! 

We will be hosting a tutorial session coming up at the end of March, so be sure to register for that today to see how the new format looks and behaves, and ask any questions you may have. 


Q&A with CropLife - Happening November 22 at 1 pm AST

Thursday, November 16, 2023



The Protected Agriculture Stewardship Standards are new on the block and apply to cannabis grown in structures such as greenhouses, shade houses, hoop houses, high tunnels, containers and warehouses. These standards were established to assist protected producers in the identification and mitigation of risks associated with the application of conventional and biological pest control products. With the implementation of these standards starting January 1, 2024, there is not much time to get things sorted.  

Join Perennia’s Protected Crop Specialist and Dr. Justine Taylor for a session dedicated to answering your questions about these new standards! Dr. Taylor is the executive director of stewardship and sustainability for CropLife Canada.  In this role Justine supports both industry stewardship efforts as the executive director of the Agrichemical Warehousing Standards Association and contributes to the larger sustainability efforts of Canada’s plant science sector. Justine comes to this role after nearly 10 years in the greenhouse sector covering science and government relations issues for the Ontario Greenhouse Vegetable Growers. A keen supporter of collaboration, Justine contributes to several cross-sectoral initiatives and sits on several local volunteer boards in her home town of Windsor, Ontario. Justine holds a Ph.D. from the University of Alberta with a focus on analytical chemistry.



Check out our website for more information and registration options. Questions can be submitted beforehand or during the live event to provide clarity on the new standards and how they affect your farm.

Hope to see you there!

-Talia

NEW Guidelines Surrounding the Purchase of Pest Control Products in Protected Spaces

Monday, November 6, 2023

Attention Protected Producers! There is a new national standard on the block.

The Protected Agriculture Stewardship Standards were established to assist protected agriculture operators in the identification and mitigation of risk associated with pesticide application. This set of standards was drafted by a multi-stakeholder committee including CropLife Canada in collaboration provincial and federal grower groups. Health Canada's Pest Management Regulatory Agency (PMRA) and Agriculture and Agri-Food Canada (AAFC) acted in an advisory capacity to guide development of the standards.

The standards apply to ANY crops grown under structures, such as greenhouses, shade houses, hoop houses, high tunnels, warehouses, containers etc. This new motion requires a certificate in order to purchase any pest control products registered for use in protected spaces effective January 1, 2024. This includes biological-based products, as well as conventional chemistries. 

There are two general streams associated with this new set of standards:

Category 1PA -> Protected Ag Operators using any closed loop irrigation/chemigation systems. A closed loop system is one where any excess irrigation/chemigation liquid delivered to the crop is captured via trough. drainage tile, or other similar conveyance system. Operators using these systems are referred to as Category 1Pa Operators. 

NOTE: warehouse production structures and freight container growing operations with no subterranean plumbing and continuous flooring are excluded from this group

Category 2PA -> Protected Ag Operators not using closed loop irrigation/chemigation systems are referred to as Category 2PA Operators. 

The path forward looks different depending on which of the two streams your particular farm falls into.


A few additional tidbits:

-For those who have both types of irrigation/chemigation on their farm, a category 2 waiver is not needed. Follow through the path for Category 1PA. 

-For farms that have multiple locations/addresses - 

  • A site spanning multiple address that are adjacent to one another will be considered a single site
  • Multiple addresses that are NOT adjacent to one another will each be treated as a separate assessment, and a separate registration must be completed. 

-What happens if I am currently a Category 2PA operator, and we install a closed loop system in all/some of our operation?

  •     When a category 2 waiver is completed, the operator agrees to terms, including notifying the AWSA of any changes in use, scope, or category. In these cases, the operation should be audited for compliance with the Standards. Once successfully audited, a certificate will be issued which renders the original category 2 waiver redundant. 

Stay tuned for details on an upcoming virtual Q&A session with a representative from CropLife in the next month! This will be a great opportunity to get clarity on the new standards effective January 1, 2024. Deadline to Register is December 31, 2023. 

In the meantime, feel free to explore AWSA's page on the Protected Agriculture Stewardship Standards and the resources provided there. 

-Talia 

Identifying Plant Nutrient Uptake under Different Concentrations of N

Wednesday, February 1, 2023

Martine Dorais from Laval University presented her work on plant nutrient uptake in cannabis at the 2022 Canadian Greenhouse Conference. A summary of her presentation can be found below:

One of the first thing she presents is a look at the difference in water use for two different rates of N supplementation. While there is an obvious spike of water uptake in week two for the plants receiving 250 ppm N, the differences in water use between the two treatments quickly levels out over time. Depending on your fertigation plan, more or less water may be necessary for your crop in those first few weeks of growth. 


Next up, her team decides to explore how different rates of N are going to impact the uptake of other key nutrients. Below, we can see the response of K uptake, and Ca uptake as a response to the amount of N in the system. Both nutrients see a significant spike in uptake at week two in the 250 mg/L N treatment, however the shape of the uptake curve is not necessarily reflected in the 150 mg/L N treatment. The different uptake patterns is an interesting trend to note here, which has implications for fertilizer recipe ratios over time depending on what level of N you are feeding. 


The next analysis looks at the uptake rate of P-PO4 and Mg. Right off the bat, we see that the nutrient uptake patterns here are quite different to what was observed above. For P-PO4, instead of seeing a spike at 2 weeks, the uptake spike happens around week 5 of growth. Mg sees a peak at week 2, but again at week 6, with similar patterns across the two treatments of N. In the case of both of these nutrients, I think that noticing the scale for these graphs (significantly lower uptake rate compared to that of K and Ca) as well as her note that the amount of N supplemented did not have a significant impact on nutrient uptake. From a recipe formulation standpoint, levels of Mg and P-PO4 can stay relatively constant when increasing/decreasing the amount of N being fed to the crop. 

How does this translate to our final product?

It's becoming widely accepted that different strains of cannabis do not behave the same way, not just in a the sense that they produce different plant architectures, but in their responses to different environmental conditions as well. The results presented below are a perfect example of that. White Shark saw a 29% increase in dry inflorescence weight per plant as a result of the higher N feed. Critical Orange Punch, however, did not differ significantly in the dry weights produced.


Take this one step further, Martine's team wanted to see the impact of the two different rates of N on the % of cannabinoid production, and the study yielded some interesting findings: 

Cannabinoids (%)

N-NO3 Concentration

 

250 ppm

150 ppm

THCA

17.98

18.47

Delta9-THC

0.31a

0.14b

CBDA

0.28

0.02

CBD

0

0

CBDV

0

0.04

CBN

0.31

0.29

CBG

0.04

0.06

CBGA

0.35

0.57

CBC

0

0.91

Total THC

16.13b

17.66a

Total CBD

0.25

0.03

While Delta9-THC was significantly higher at the 250 ppm N rate compared to the 150 ppm rate, the total THC levels show that the lower supplemented N rate of 150 ppm actually yielded a higher percentage of cannabinoids compared to the higher rate of N. In this particular case, more N was not necessarily conducive to bigger and better quality product. Studies like this are crucial for being able to target nutrient supplementation to important time stamps, as well as begin to understand exactly what goes into growing the best possible flower. 

Martine Dorais' team produced a lot more results than what I have summarized here, and I encourage you to explore the entire presentation to see the full scope of work that was conducted. You can find the entire slide deck here.

Posted by: Talia Plaskett

New Year, New Treats!

Tuesday, January 3, 2023

 2023 is off to a good start, with a handful of fantastic webinars coming up in the next few months! Here are some of the things to look forward too, and will hopefully come in handy when planning for the upcoming season:

'Getting Into the Weeds' Seminar Series 

Introducing the next season of the Getting into the Weeds seminar series! 2022 saw a significant cost increase for production inputs, and combined with the global supply chain issues we have been experiencing over the past few years, agricultural production is becoming more challenging. This year's seminar series is comprised of 4 information sessions focusing on maximizing efficiencies on farm. These sessions will focus in on product application, nutrient management, on-farm input efficiencies (labour etc.), as well as the trials and tribulations of on-farm plots.

 


For those who are interested in attending these free webinars, please find additional speaker details and instructions for registration on Perennia’s learning page.

 

If you have any questions about these sessions specifically, please contact Hugh Lyu (hlyu@perennia.ca; 902-890-0472) or Talia Plaskett (tplaskett@perennia.ca; 902-305-3419).



Managing Nitrogen in Protected, Soil-based Systems

Managing crop fertility in protected spaces can be difficult to navigate throughout the growing season when deciding what to apply, how much of it and when. Join Judson Reid from Cornell University and Perennia Specialist Talia Plaskett on February 9, 2023, at noon to learn about nutrient management in protected, soil-based crops.


Register now to secure your virtual spot and help set yourself up for a productive growing season! 


This event is being held as part of the On-Farm Climate Action Fund (OFCAF) program. The goals of the program are to encourage on-farm sequestration of carbon and reduction in greenhouse gases through the implementation of improved nitrogen management, enhanced cover crop adoption, and the normalization of rotational grazing. For more info on the OFCAF program, please visit ofcaf.perennia.ca 


Cover Cropping in Tunnel Spaces


Cover cropping has proven to be quite beneficial in field production and is gaining a lot of momentum across Nova Scotia. This raises the question – is this a practice that can be adopted in protected production? Join Judson Reid from Cornell University and Perennia Specialist Talia Plaskett on March 23, 2023, at noon to hear about the work done around cover cropping in tunnels and see how this practice could apply to your farm.


Register now to reserve your virtual spot and start thinking about what your off-seasons could look like! 


This event is being held as part of the On-Farm Climate Action Fund (OFCAF) program. The goals of the program are to encourage on-farm sequestration of carbon and reduction in greenhouse gases through the implementation of improved nitrogen management, enhanced cover crop adoption, and the normalization of rotational grazing. For more info on the OFCAF program, please visit ofcaf.perennia.ca

  • For a full list of the learning opportunities hosted by Perennia, check out the events page here

  • For more information on OFCAF, funding and application windows, and the training available, check out their website here.

Here is to a successful 2023!

Posted by: Talia Plaskett


Dealing with Molds, Mildews, and other Nasties in Cannabis Production

Friday, December 9, 2022

The following is a summary of a presentation put together by Michael Brownbridge, the Biological Program Manager at Bioworks, for the 2022 Canadian Greenhouse Conference. The focus of his talk looks at dealing with disease management using cultural practices and microbial fungicides. For a full copy of the slide deck, check out the 2022 CGC Presentation archives posted.

Cultural practices for disease reduction/prevention:

Cultural practices are day-to-day preventative measures that can be taken that, when properly implemented and adhered to, can collectively reduce the amount of disease introduced/spread through a production space. With a limited number of registered active ingredients in cannabis, it is important to use every tool possible to maintain crop productivity and quality.  Some examples of cultural practices to reduce the probability of disease include:

  •  Strict cleaning protocols (room sterilization, use of clean tools etc)
  •  Ensure mother plants/ cuttings are disease free by purchasing Verified Clean Stock
  • Monitor and maintain suitable growing conditions in each production space
  • Consider ‘order of entry’ when moving through the facility in a day – highly sensitive spaces (propagation rooms, for example) should be entered early in the day while workers are ‘clean’ as opposed to the end of a day working with other plants
  • When receiving plants from outside of the facility, a quarantine is highly recommended

o   While this is valuable from a disease perspective, it also comes in handy to reduce invasive insect populations as well. Broad mites, two-spotted spider mite, hemp russet mite, western flower thrips, and aphids (both rice root and cannabis aphid) are common hitch hikers on imported materials. All of these are hard to detect and have rapid life cycles. While they may not be noticeable upon arrival, a few days of quarantine may reveal populations of tiny insects feasting on the new plant material.

One of the best ways to keep a facility clean is to invest in regular scouting missions and disease screens, especially within the mother room. Diseases caused by Pythium and Fusarium are not always going to show symptoms, which leaves you vulnerable to passing the disease agents into the next round of cuttings. While it is commonly practiced taking cuttings from the top of the plant ‘because the disease isn’t there yet’, recent data from the University of Kentucky shows that although titers may be lower in top parts of the plant, disease is still present. The best way to protect the viability of your future cuttings/crops is to submit plant tissue samples for disease analysis. Taking a subsampling of tissue from different parts of the plant should give an accurate depiction of what may be brewing beneath the surface.

I Have Diseases Developing in the Crop – Now What?

In addition to his work on powdery mildew (as seen in the previous blog post), Zamir Punja of Simon Fraser University conducted some biofungicide efficacy trials against Fusarium oxysporum. Check out his findings below:

The water control is intended to show the level of disease present without a formal introduction of F. oxysporum. The second treatment from the left, referred to as 'Fusarium (+)', shows that the disease isolate used was effective at causing symptoms, and the level of disease that observed throughout the trial when there was no intervention provided. 

Now that the two control measures have been addressed, its time to compare product performance. Prestop showed to be the most effective at reducing disease in the inoculated plants. The 'a' on top of the bar here denotes that the level of disease after regular treatment with Prestop is not statistically different than the control treatment. Next up, we see that Rootshield, Asperello and Stargus had significantly less disease compared to the 'Fusarium (+)' treatment. This shows us that these are effective products for reducing symptom development despite the presence of the pathogen. While they may not have reduced disease to the same degree as Prestop, their proper application should lessen the impacts caused by F. oxysporum. Finally we see that Rhapsody and Regalia did not perform very well in this particular trial. Neither product was able to offer any reduction in disease severity compared to the inoculated control. 


Dr. Punja conducted similar work for product efficacy against Pythium spp. Looking at the graph above, we can see that 14 days post inoculation with P. myriotylum, plants that were treated with Rootshield and Prestop showed significantly less disease compared to plants that received no treatment. There is no significant difference in the level of disease suppression between these two products against this particular pathogen, based on the findings of this study, which gives growers a bit more flexibility when selecting products for disease suppression.


When in doubt, integrated pest management is the best strategy for reducing the impacts of disease and insect pressure in indoor cannabis production!

Posted by: Talia Plaskett








Research Updates on Powdery Mildew Control in Cannabis

Thursday, November 10, 2022

  Zamir K. Punja from Simon Fraser University presented at the Canadian Greenhouse Conference this October where he discussed powdery mildew management on greenhouse crops. Cucumbers and cannabis were the focus of this presentation as they are both high value crops grown in a large portion of Canada’s greenhouses. In addition, both these crops are susceptible to powdery mildew infection and management tends to be tricky.  

How does Powdery Mildew Spread? 

Spores spread in the air by workers of by infected plants, and they can survive for up to a week. In humid conditions (70%) the spore then germinates producing a germ tube and haustoria. The mycelium then develops, and eventually more spores are produced. This happens within 5 to seven days. Overall mildew development is favored by warm dry conditions. 



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Powdery mildew management using Bacillus species as a biocontrol agent 

 

Bacillus spp. reduces powdery mildew development in a variety of ways which include: 

  • Inhibiting fungal growth by producing lipopeptides  
  • Produces endospores  
  • Display broad-spectrum activity against fungi 
  • Produces lytic enzymes that can destroy fungal cell walls  


There are currently no synthetic fungicides registered for cannabis. To minimize damage cause by powdery mildew growers, apply vaporized sulphur (except organic), hydrogen peroxide (Zerotol) and potassium bicarbonate (MilStop). In addition, Regalia may induce resistance to powdery mildew. Other practices include using UV-C light and a physical means of control.  

 

 

A group of green leaves

Description automatically generated with low confidence 

Figure 1. Effect of treatments on Powdery mildew in cannabis after weekly applications were made for 4 weeks. Photo taken from Zamir K. Punja’s presentation at the Canadian Greenhouse Conference.  

 

In this trial Rhapsody (Bacillus subtilis), Regalia Maxx, and MilStop were applied prior to viable mildew infection and were tested for 4 weeks. Both MilStop and Regalia provided good control of powdery mildew, with Zerotol and Rhapsody providing less control. MilStop and Regalia application resulted in the collapse of mycelium in the infected leaves. 


In addition to evaluating the efficacy of registered biological controls on the market, Zamir wanted to experiment with the use of UV-C light for controlling powdery mildew. In this Trial CleanLight Pro Unit UV-C Light was used for 3-5 seconds daily at approximately 3-6 mJ/cm2. UV-C radiation reduced mildew development but can be difficult to implement in a commercial setting.


For the complete slide deck from Zamir's presentation, click here.


Posted by: Talia Plaskett

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