Screening Core Germplasm of Spice Crops

Screening studies of core germplasm resources of spice crops help to preserve the genetic diversity of the entire resource population with minimal germplasm resources. This can be used to improve the management and utilization of the entire spice germplasm resource pool.

Lifeasible's screening of core germplasm resources of spice crops has greatly improved the utilization of germplasm resources. It has also provided research ideas for developing and applying spice germplasm resources.

Screening Core Germplasm of Spice Crops

Significance of screening core germplasm resources for spice crops

We provide core germplasm resource screening to maximize the removal of duplicates from the original germplasm resources and to represent all or most of the genetic diversity and geographical origin of the original germplasm resources with a minimum amount of germplasm material, which facilitates the collection, evaluation, and utilization of an increasing number of germplasm resources today.

We offer various techniques applied to the screening of core germplasm resources of spice crops

With the development of genomics, the extremely rapid decrease in sequencing costs has enabled large-scale population sequencing. The use of high-resolution molecular markers to improve the identification of genetic similarity and heterozygosity among genetic materials is used to select core germplasm materials of reasonable size that can represent the genetic diversity of the entire germplasm resource, which helps in the conservation, management, and use of germplasm resources. It enables us to conduct focused research on superior germplasm.

We use the GWAS analysis technique, effectively applied to spice plant variety improvement research and core germplasm resource screening species. The technique is equally important in gene analysis for identifying trait associations. GWAS requires diverse germplasm resources to carry out. At present, we have used some core germplasm resources from spices as materials for association analysis in GWAS. The lower sample size, population structure, and relatedness of core germplasm resources facilitate GWAS analysis. In addition, we have used them for further gene mining and cloning through genetic evolutionary analysis, QTL localization, and unique marker development to improve the efficiency of germplasm resources utilization.

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Our service workflow - Lifeasible

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For research use only, not intended for any clinical use.

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