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registry of biomedical companies

 
  August 08, 2026
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FEEDIE SYSTEMS INFO ENTERPRISES OF CANADA

Prairie and Western Provinces
PoCo. C.-B.
Canada
Toll free: 12369836419

Phone: 12369836419
Fax: 6049419022
E-Mail: This e-mail address is being protected from spam bots, you need JavaScript enabled to view it

Description:

Sustainable Feeding Systems in Canada*

 

System Feeding Types:

1. Co-Product Solid-State Fermented (SSF) Feeds [E. g. Dual-Purpose Cultivar Varieties Producing Straws, Bagasse with SSF Coprinus cinereus, chopped SCT (Long-fibred) and Wheat Straw, Rice Straw]

2. Water Hyacinth (E. g. Fresh for porcine and cattle; Ensilage for cattle including water buffaloes) and Aquatic Duckweed.

3. HIgh Quality (HQ) Seagrasses (Fresh & Marine, XL-Grow varieties) & Seaweeds (E. g. Ocean Farmed Off-shore)

4. Yeast-Based Single Cell Protein (SCP) (E. g. Salmon and Related Fish spp., Porcine, Poultry, Cattle and Water Buffaloes)

5. Long-Fibre Giant Pangola Tropical/Sub-tropical Grasses (E. g. for Cattle and Water Buffaloes)

6. HIgh Quality (HQ) Seed Protein Extractive Concentrates (SPECs) (E. g. Cereals, Pulses, Oilseeds, Grains - Corn, Wheat, Soybeans and Canola)

 

There is a question we'd like to ask: Is it possible to go into genomics and bioinformatics analyses of the plant genomes of feedstock sources for lignocellulose to manipulate their sugars, lignin content and enzyme proteases (that degrade proteins after harvest) which could change the future of agriculture around the developing world. Maybe we can add it to the Philippine agenda at UPLB (Philippines) in future in addition presently to coconut, sardines... and now rice straw (there are Philippine-based cos. and now one U.K.-based dealing in this feedstock resource)? And do you have plans to launch development of rice straw in the RP as a feedstock?  Plastics can now be manufactured from rice starch/rice straw or fibre carbohydrates and is a good bet for the Philippine's industries like one U. K.-based multiantional with subsidiaries that utilize or exploit pulp, biofuels and improve animal feeds for greater sustainability, compost/fertilizer. (Minimizing carbon-based pollution and supplying fertilizer).

Entrepreneurship must be remembered as the driving force behind a successfully up and running business operation that enables technology and its application, business growth or expansion including Overseas destinations like in the U. K. and Australia/N.Z.

I would also like to ask about studying the growth cycle of freshwater lake and coastal marine seagrasses for feed and bioenergy from agri-retailers here in Canada with both dairy, pharma and flex fuel producers (gasohol).

I am envisioning dairy plants or so-called "milk" factories that can up the ante for producing better 'medicinal' quality milk and more of it for sports and recreational beverages and cheeses (amongst others milk food products) to help enhance food security in the country of Canada and which Filipinos in my other country, the Philippine Islands, should also consider approaching (albeit, lactose tolerance levels in the population in their country).  Also the potential for plant-based pharma and bioenergy is too great to estimate!  As it goes there are two competing tech options at Skye Blue regards controlling lignin content in forage type feeds: 1) Enzyme Tech which is used with particle communition and spray application, incubation and drying and/or per os feeding for rumen mixing and digestion; enzyme tech is not cheap but scaling will bring the price drop eventually; 2) non-GMO, GRO seagrass culturing to make them XL-grow which could make lignin content go down and the reduction of lignin content directly; it is a given that large overhead will have to be overcome from semi-automated equipment used indoors to be used with parallel operations of phytopharming drugs such as insulin, somatotropin and other like high-volume hormonal agents under production. Additionally to the conventional approach of using lowered lignin content to make the forage DM more accessible to microbial rumen digestion, i. e. the crude fibre (CF), there are other options like lowering the class of lignin subunits like the syringyl:guaiacyl ratios which basically results in less "cement" around the hemi-/cellulose microfilaments and bundles.  In the case of seagrasses to make them XL-grow crop management determines whether we have an low-lignin option here and it would not matter whether lignin becomes significantly lowered and less sturdy as a stand of plants due to the suspending H2O media.  This is apparently not the case necessarily for terrestial grown plants making the other option using the S/G ratios. 

We have plans to enter into farming systems research and field extension in my research area of silage nutrition to create new avenues for the subsistence farmers of the Philippine Islands, my country of origin, to engage in extra-paddy rice farming and support more livestock with irrigation, land repurposing and further exploitation of trending aquatic fodder resources such as water hyacinth and duckweed and continuing carabao ranching with use of seasonal and ensiled sugar cane tops (SCT). Poultry, swine and of course, water buffaloes are in the running for use with livestock classes for eggs, porc, draught, and valuable caramilk (applications in specialty confectionaries and cheeses).

There is also discussion of SCT vs whole corn ensilage pretreated with spraying with enzymes like class lignases that are both anaerobic and facultatively anaerobic (esterases-FAES, etherases, and more advanced ring reducers and ring breakers plus side grp. that strip their attachment) presenting these 2 options yet to be discovered and studied thoroughly from municipal sewage sludge (MSS) which would spell a possible breakthrough in feeds pre-treatment and feeds fermentation. In addition to concentrates from various byproducts, these forage types would be strongly considered in this light for cararanching in the Philippines.  It should be noted that both whole corn plant and sugarcane top (SCT) crops are seasonal but this is less of a restriction in tropical climes.  Depending on the needs of the farmers, it would allow derivitization between these two and other crop types (e. g. sorghum in the Philippines).

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* Announcements on audiocast (audio only with video overlay including library clips) including new feeding systems, cropped and non-cropped, to distribute and market using channels established with our agençy company based in the Brewery District, PoMo, British Columbia Canada.

 

(c) 2026-2059.  Skye Blue Press Corporation. Poco BC Canada V3B 1G3. 



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Last update of this entry: August 05, 2026

   
 
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