In modern agricultural biotechnology, fruit tree variety identification is a crucial task. Correct identification of fruit tree varieties can provide a scientific basis for breeding and cultivation and can also contribute to the development of the fruit tree industry. Lifeasible is an advanced agro-biotechnology company, and by identifying the unique DNA regions of different fruit tree varieties and rootstocks, we can create a characteristic genetic mapping for each type of plant material. These profiles not only help to identify mixtures of varieties or rootstocks but also allow for parentage analysis, conservation of varieties developed through genetic improvement programs, and ensure sustainable use of agrobiodiversity and genetic resources.
Genetic mapping is a tool for presenting plant genetic information that reflects the genetic differences between plant varieties. Through these maps, we can help researchers and agricultural technicians achieve the following purposes.
Identifying unique DNA regions for each variety and fruit variety rootstock can create a characteristic genetic map for each plant material. Genetic maps are constructed by identifying specific DNA markers based on the analysis of individual genomes. These markers reflect genetic variation, which we utilize to help researchers accurately understand the genetic relationships between different fruit tree varieties by constructing genetic maps. Here are the methods we offer in fruit tree variety identification.
We utilize molecular marker technology, such as AFLP, SSR, etc., to construct genetic chain maps of fruit trees. Our technical support can help researchers better understand the genetic relationships among varieties and provide vital information for variety identification and breeding.
We use genetic mapping and molecular marker technology to localize gene loci affecting quantitative traits such as fruit quality, which helps to identify the genes controlling these traits for marker-assisted selection in breeding.
Our molecular marker technology can be used for assisted selection breeding, accelerating the breeding process and improving breeding efficiency by selecting molecular markers chained to the target traits. It can also be used to characterize the purity and authenticity of varieties to ensure the correctness and consistency of fruit tree varieties.
Fig.2 Process of fruit tree variety identification. (Lifeasible)
Utilizing advanced molecular biology techniques, we can extract DNA from plant leaves, shoots, roots, or fruits for year-round variety identification. Our fruit tree variety identification technology has a wide range of applications for various fruit tree varieties, including but not limited to the following.
Lifeasible provides fruit tree variety identification services that can be extended to a wide range of other fruit tree varieties. This includes but is not limited to, the identification of dozens of fruit tree varieties such as pears, grapes, oranges, watermelons, jujubes, etc. This technical service can provide scientific and accurate identification for many kinds of fruit tree varieties and promote the selection and promotion of suitable varieties. If you are interested, please feel free to contact us.
Lifeasible has established a one-stop service platform for plants. In addition to obtaining customized solutions for plant genetic engineering, customers can also conduct follow-up analysis and research on plants through our analysis platform. The analytical services we provide include but are not limited to the following:
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