BLEND 50 Pure Bush Honey.

BLEND 50 Pure Bush Honey. Fresh Pure Natural Bush Honey. No heat treatment. Maximum health benefits. Straight from bees to you

Sounds so easy?
29/08/2026

Sounds so easy?

Midweek reminder for Blend 50 honey delivery this coming Friday morning. Pm order and address for delivery to your door.
25/08/2026

Midweek reminder for Blend 50 honey delivery this coming Friday morning. Pm order and address for delivery to your door.

Blend 50 Pure Bush Honey deliveries next Friday 28th August. Pm order and address for delivery to your door.
23/08/2026

Blend 50 Pure Bush Honey deliveries next Friday 28th August. Pm order and address for delivery to your door.

For decades, Australia was the last inhabited continent free of the bee-killing Varroa mite (Varroa destructor).That all...
18/08/2026

For decades, Australia was the last inhabited continent free of the bee-killing Varroa mite (Varroa destructor).

That all changed in June 2022, when Varroa was detected near Newcastle and rapidly spread along the coast of eastern Australia. By September 2023, authorities had abandoned attempts to completely eradicate the tiny parasite.

So Varroa is here to stay. For beekeepers across Australia, that means learning to live with the risks of infested hives, lower production and lost income.

So, how are we currently managing Varroa? And what needs to change?

The Varroa mite is a tiny parasite that attaches to honeybees and feeds on them, impairing their development, immunity and behaviour. These mites can also carry various bee-killing pathogens.

Varroa mites can wipe out entire colonies if left untreated. For this reason, they are considered the foremost threat to managed honeybee colonies worldwide.

Varroa can rapidly spread through human intervention, such as when a person moves infested hives or equipment between two sites. But these mites largely jump between hives through normal bee activities including “drifting”, where confused bees enter the wrong hive. “Robbing”, where bees from a strong colony plunder a weaker one for resources, is another common way Varroa spreads.

In Australia, authorities have sought to bolster the industry and slow Varroa’s spread under a national management program, introduced in early 2024. Today, the scale of the problem varies from state to state.

Queensland, New South Wales and the Australian Capital Territory now have well-established Varroa populations. In these states, local apiarists have largely shifted to routine management, which involves regularly monitoring and managing mite levels through various treatments.

Varroa has been detected in multiple parts of Victoria and South Australia. However, both states are on high alert and are bracing for more widespread infestations this spring.

Western Australia, Tasmania and the Northern Territory are currently free of Varroa. To stay that way, they are strengthening early detection and border monitoring efforts.

Effective Varroa management relies on three key principles.

1. Monitoring

Regular monitoring typically involves taking about 300 bees from a hive and washing them in alcohol or soapy water. This process kills the bees, but is a small and necessary sacrifice. It allows beekeepers to identify and count any mites, before deciding whether further treatment is needed.

2. Treatment

Varroa treatments can be costly and complicated. Finding miticides – a type of pesticide specifically designed to kill ticks and mites – that are toxic to the mite but do not harm bees is a tough task. Current chemical treatments can harm bees by reducing adult and brood survival or impairing how well adults function.

Some miticides can’t be used above certain temperatures or during nectar flows – the period when local plants bloom and produce lots of nectar. Most worryingly, Varroa mites can quickly become miticide-resistant. In the past three years, mites in most states have developed resistance to pyrethroid- and formamidine-based treatments.

Due to these limitations, many apiarists might view chemical treatment as a last resort and may first turn to chemical-free or biotechnical approaches. Biotechnical strategies disrupt the mites’ reproductive cycle by interrupting the production of bee brood – the eggs and larvae of honeybees – or trapping mites to be physically removed. However, many traditional biotechnical approaches require time and experience and may hamper the growth of the bee colony.

3. Post-treatment

Beekeepers can slow the spread of Varroa by keeping colonies well fed to prevent robbing. To reduce drifting, apiarists can also place hives further apart and face hive entrances in different directions.

We can better support our beekeepers by:

offering training and mentorship opportunities to help them share Varroa management knowledge and skills

splitting or donating colonies to apiarists who have lost hives

listening to industry-level concerns about the economic and operational pressures commercial beekeepers face and consider providing financial support, such as covering the costs of ongoing treatment and travel during pollination season

protecting and restoring forests to provide bees nectar and pollen.

Without support, the Australian Honeybee Council estimates almost 40% of commercial beekeepers will leave the sector in the coming years. This means there will be fewer bees pollinating crops – putting our farming communities and food security at risk.

Current Varroa management guidelines are largely based on data from other countries. So we urgently need more research to understand which management strategies work best in Australian conditions. We should also investigate ways to make biotechnical methods faster and easier to use.

There’s no silver bullet in the fight against Varroa. But in Australia, we have the benefit of time. As the world’s last major honey-producing country to detect Varroa, we can draw on three decades of global expertise and tailor strategies to our conditions. The future of our bees and beekeepers depends on it.

✍️ by Casey C. Forster, Postdoctoral Researcher, School of Natural Sciences, Macquarie University
and Théotime Colin, Postdoctoral Researcher, Bee Ecology, Macquarie University

👉 Read more environment stories: https://theconversation.com/au/environment

💬 Comment "newsletter" and we'll send you the link to sign up for our free wrap of the latest insight and analysis.

Curated by professional editors, The Conversation offers informed commentary and debate on the issues affecting our world. Plus a Plain English guide to the latest developments and discoveries from the university and research sector.

06/08/2026

Time has come to increase the price of Blend 50 Honey by $2 per kilo. I have been putting this move off for months now but the cost of the bottles and jars have increased significantly along with fuel prices and the never ending cost of Varroa mite treatment. Thanking you my customers for your understanding hopefully you will keep buying Blend 50.
Greg North

04/08/2026

𝗗𝗜𝗗 𝗬𝗢𝗨 𝗞𝗡𝗢𝗪?
𝗧𝗵𝗮𝘁 𝗷𝗮𝗿 𝗼𝗳 𝗵𝗼𝗻𝗲𝘆 𝘀𝗶𝘁𝘁𝗶𝗻𝗴 𝗶𝗻 𝘆𝗼𝘂𝗿 𝗸𝗶𝘁𝗰𝗵𝗲𝗻 𝗶𝘀 𝗼𝗻𝗲 𝗼𝗳 𝘁𝗵𝗲 𝗺𝗼𝘀𝘁 𝗿𝗲𝗺𝗮𝗿𝗸𝗮𝗯𝗹𝗲 𝗳𝗼𝗼𝗱𝘀 𝗳𝗼𝘂𝗻𝗱 𝗶𝗻 𝗻𝗮𝘁𝘂𝗿𝗲?

We sell it.
We eat it.
We stir it into coffee and drizzle it over biscuits.

But when you really understand what honey is and what it takes for bees to make it, that simple jar becomes pretty incredible.

𝗟𝗘𝗦𝗦𝗢𝗡𝗦 𝗙𝗥𝗢𝗠 𝗧𝗛𝗘 𝗕𝗘𝗘𝗛𝗜𝗩𝗘
𝗗𝗶𝗱 𝗬𝗼𝘂 𝗞𝗻𝗼𝘄? 𝗛𝗢𝗡𝗘𝗬

Honey starts with something completely different.

Nectar.

A forager visits flowers, collects nectar and carries it back to the colony.

And that's just the beginning.

𝗗𝗶𝗱 𝘆𝗼𝘂 𝗸𝗻𝗼𝘄?
• Honey isn't simply nectar stored in a cell, bees add enzymes and repeatedly process the nectar as it moves through the colony.
• Bees remove much of the water from nectar, workers spread it through cells and fan their wings to help evaporate moisture.
• Once properly ripened, honey's low moisture, acidity and chemistry make it difficult for many microorganisms to grow.
• Properly stored honey can remain stable for an incredibly long time.
• Honey can crystallize, sometimes quickly, sometimes slowly, depending largely on its sugar composition and storage temperature.
• Crystallized honey isn't spoiled honey, it's a completely natural process.
• Different nectar sources produce different honey, changing the color, aroma, flavor and even how quickly it crystallizes.
• Honey contains sugars, organic acids, enzymes and numerous plant-derived compounds.
• Honey also has antimicrobial properties, which is one reason specially prepared medical-grade honey is used in certain types of wound care.

And here's something we sometimes forget...

𝗔 𝗷𝗮𝗿 𝗼𝗳 𝗵𝗼𝗻𝗲𝘆 𝗶𝘀 𝗮 𝗰𝗼𝗹𝗼𝗻𝘆 𝗲𝗳𝗳𝗼𝗿𝘁.
No single bee makes your jar of honey.

Thousands of bees contribute.

Foragers collect nectar.

House bees receive and process it.

Workers move it between cells.

Bees regulate the environment inside the colony.

Others fan their wings to help remove moisture.

Eventually the finished honey is capped beneath a thin layer of beeswax.

What looks like a simple jar sitting on a shelf represents thousands upon thousands of flower visits and the combined work of an entire colony.

𝗔𝗻𝗱 𝘁𝗵𝗲𝗻 𝘁𝗵𝗲𝗿𝗲'𝘀 𝗿𝗮𝘄 𝗵𝗼𝗻𝗲𝘆.
Raw honey hasn't been subjected to the high-heat processing sometimes used in commercial honey production.

Depending on how it's handled, it can retain pollen, enzymes, aromatic compounds and tiny particles of beeswax naturally associated with honey from the hive.

That's also why two batches of local honey may not look or taste exactly alike.

Different flowers.
Different weather.
Different seasons.
Different locations.

Honey is a snapshot of what was blooming in the area when the bees made it.

𝗧𝗵𝗲 𝗟𝗲𝘀𝘀𝗼𝗻
The next time you open a jar of honey, don't just see something sweet.

See flowers.
See thousands of flights.
See thousands of bees working together.
See sunlight, rainfall, soil, plants and an entire landscape captured inside a jar.

That's one of the things I've always loved about honey.

𝗡𝗼 𝘁𝘄𝗼 𝗵𝗮𝗿𝘃𝗲𝘀𝘁𝘀 𝗮𝗿𝗲 𝗲𝘅𝗮𝗰𝘁𝗹𝘆 𝘁𝗵𝗲 𝘀𝗮𝗺𝗲.

𝗤𝗨𝗘𝗦𝗧𝗜𝗢𝗡
What's something about honey you didn't know until you became a beekeeper, started buying local honey, or began following our page?

And if you're not a beekeeper, here's an easier one...
🍯 Do you prefer your honey liquid or crystallized?

Tell us below.

Save this one for the next time somebody tells you their crystallized honey has "gone bad," and share it with someone who loves honey.

And if you enjoy learning about honey bees, native bees, honey and the incredible products of the hive, follow along. We also share the real life of the beekeepers behind the products.

𝗙𝗿𝗼𝗺 𝗼𝘂𝗿 𝗵𝗶𝘃𝗲 𝘁𝗼 𝘆𝗼𝘂𝗿𝘀
𝑺𝒘𝒆𝒆𝒕 𝑺𝒕𝒊𝒏𝒈𝒆𝒓𝒔 𝑯𝒐𝒏𝒆𝒚 🐝💛
𝐘'𝐚𝐥𝐥 𝐁𝐄𝐄𝐊𝐄𝐄𝐏𝐈𝐍𝐆 𝐈𝐭 𝐑𝐞𝐚𝐥

Reminder Blend 50 honey delivery this Friday morning. Pm your order and address for delivery to your door.
29/07/2026

Reminder Blend 50 honey delivery this Friday morning. Pm your order and address for delivery to your door.

Friday 31st July is the next Honey delivery day for Blend 50 Pure Bush Honey. Pm your order and address for delivery to ...
25/07/2026

Friday 31st July is the next Honey delivery day for Blend 50 Pure Bush Honey. Pm your order and address for delivery to your door.

21/07/2026

The Varroa is not just a tiny tick sucking the blood of your bees.

As with anything in life, we have to fully know our enemy in order to defeat it.

So let's break down the exact biological mechanisms of how this monster actually predates our bees so we can better understand the true destruction happening inside the hive.

Groundbreaking scientific research in 2019 shattered the old paradigms by proving that Varroa mites feed primarily on the vital fat body tissue of the bee (Study: Varroa destructor feeds primarily on honey bee fat body tissue and not hemolymph).

The feeding mechanism relies on extra oral digestion, where the parasite uses its sharp mouthparts to pierce the soft membrane under the abdominal sternites and injects potent lytic enzymes.

These enzymes physically liquefy the nutrient rich fat body organ, turning the solid tissue into a liquid slurry that the mite easily vacuums up into its digestive tract.

Damn, I hate these mites.

During the dispersal phase, the female mite hitches a ride on adult worker bees and feeds continuously on their abdominal fat bodies for 5 to 11 days.

Once she is ready to reproduce, the foundress mite slips underneath a late stage larva right before the cell is capped by the nurse bees.

The mite remains locked inside that capped reproductive vault for exactly 12 days in worker cells and 14 days in drone cells.

Inside this dark chamber, the mite feeds relentlessly on the developing prepupa and pupa, severely reducing the emerging bee's immune response and overall lifespan.

In my opinion, understanding that Varroa destroys the fat body explains why even low mite levels completely compromise vitellogenin production and winter survival.

We are fighting an organism that directly dismantles the metabolic engine of our hives, and we cannot afford to wait until the damage is visible to start our defense.

Treat your hives in time.

If you like this post, I invite you to read the first part of my book (you can find it in my bio) 🧡

Happy beekeeping and full barrels 🍯🐝

01/07/2026

Address

50 W. Lindsay Road
Wamuran, QLD
4512

Alerts

Be the first to know and let us send you an email when BLEND 50 Pure Bush Honey. posts news and promotions. Your email address will not be used for any other purpose, and you can unsubscribe at any time.

Contact The Business

Send a message to BLEND 50 Pure Bush Honey.:

Shortcuts

Share