The Rapid Non-Tube Plant Propagation Platform

The Rapid Non-Tube Plant Propagation Platform

Plant non-tube rapid propagation platform is a new plant rapid propagation system developed based on traditional cuttings nursery and group culture technology, which is based on the premise of computer-controlled intelligent environment and organic combination of computerized environmental control technology and biotechnology to achieve holographic and all-purpose expression for rapid seedling establishment.

Plant factory is highly specialized and modernized facility agriculture developed after greenhouse cultivation, which can be used to carry out non-tube rapid propagation of plants. It differs from greenhouse production in that it is completely free from the constraints of natural conditions and climate under field production conditions, and applies modern advanced equipment to supply plant products in a balanced manner throughout the year by completely controlling environmental conditions manually.

Plant factory system

At present, Lifeasible has established a highly efficient plant factory for rapid non-tube propagation of plants and has initially realized the mass production of cash crops such as vegetables and edible mushrooms, fruit trees, medicinal plants, and precious flowers, etc. We are also developing the use of plant factories to grow grains such as wheat and rice, to save endangered plants, and to perform tissue culture and rapid propagation and detoxification of plants.

Comparison of non-tube rapid propagation and traditional tissue culture seedlings

Nutrient carbon source and hormones, temperature, humidity, light and air

  • Traditional tissue culture is developed under confined and high humidity and low light environment, so that the respiration and photosynthetic capacity of the plant is greatly reduced, which can lead to problems such as difficult management of transition seedlings, low survival rate, and weak growth potential.
  • The propagation material of non-tube rapid propagation is carried out under full light or plant growth light and open temperature and humidity environment, and the seedlings produced are highly adaptable with a developed root system.

Sugar supply method

  • In the traditional tissue culture technique, a large amount of sugar is added to the medium for the development of tissue cells. This makes the seedlings vulnerable to disease and contamination, which affects the development of tissue and cell rooting and results in weak or glassy seedlings.
  • The non-tube rapid propagation platform is a process of using the photosynthetic potential of the isolated material itself and environmental control means to let it reach its limit to achieve autotrophic carbon supply and autotrophic development. The nutrients and carbon sources required by the isolated material are autotrophic, and no sugar or other organic materials are added to the cultivated seedbed, thus avoiding the contamination of sugar addition.

The plant factory built by Lifeasible has a wide range of applications and can be used for most of the plants that can be propagated by the techniques of fast propagation of plant tissue culture and conventional seedling cutting, or plants that are not suitable for propagation by either of these techniques. It also has the advantages of saving propagation materials, high reproduction coefficient, the high survival rate of seedlings, small species limitation, no obvious seasonality, and a simple operation process. In addition, our plant factory can realize soil-less cultivation without pesticides and can produce pollution-free plants.

Advantages

  • With the use of computerized environmental control technology, we can realize the annual fast breeding of fruit tree seedlings, unlike the traditional seedling breeding which is limited by the season.
  • The fast-breeding technology can provide a large number of asexual seedlings with stable genes and consistent traits for production.
  • It can make some varieties that cannot be rooted at all under the conventional cuttings technology to root into seedlings quickly.
  • It can save a lot of tedious operations of rootstock breeding and grafting under traditional seedling breeding and achieve the purpose of reducing the cost and shortening the cycle.
  • It can realize the geometric multiplication of the parent material in the annual cycle, and greatly accelerate the promotion speed of new varieties.
  • Combined with isolated fast-breeding can also greatly reduce the production and breeding costs of detoxified seedlings, and promote the use and popularity of detoxified seedlings in production.
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