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Hereditas(Beijing) ›› 2017, Vol. 39 ›› Issue (5): 430-437.doi: 10.16288/j.yczz.17-034

• Review • Previous Articles     Next Articles

A phenome database (NEAUHLFPD) designed and constructed for broiler lines divergently selected for abdominal fat content

Min Li(),Xiangyu Dong,Hao Liang,Li Leng,Hui Zhang,Shouzhi Wang,Hui Li,Zhi-Qiang Du()   

  1. College of Animal Science and Technology, Northeast Agricultural University; Key Laboratory of Chicken Genetics and Breeding, Ministry of Agriculture; Key Laboratory of Animal Genetics, Breeding and Reproduction, Education Department of Heilongjiang Province, Harbin 150030, China
  • Received:2017-02-08 Revised:2017-03-10 Online:2017-04-07 Published:2017-12-25
  • Supported by:
    the China Agriculture Research System(CARS-42);the National Natural Science Foundation of China(31472088)

Abstract:

Effective management and analysis of precisely recorded phenotypic traits are important components of the selection and breeding of superior livestocks. Over two decades, we divergently selected chicken lines for abdominal fat content at Northeast Agricultural University (Northeast Agricultural University High and Low Fat, NEAUHLF), and collected large volume of phenotypic data related to the investigation on molecular genetic basis of adipose tissue deposition in broilers. To effectively and systematically store, manage and analyze phenotypic data, we built the NEAUHLF Phenome Database (NEAUHLFPD). NEAUHLFPD included the following phenotypic records: pedigree (generations 1-19) and 29 phenotypes, such as body sizes and weights, carcass traits and their corresponding rates. The design and construction strategy of NEAUHLFPD were executed as follows: (1) Framework design. We used Apache as our web server, MySQL and Navicat as database management tools, and PHP as the HTML-embedded language to create dynamic interactive website. (2) Structural components. On the main interface, detailed introduction on the composition, function, and the index buttons of the basic structure of the database could be found. The functional modules of NEAUHLFPD had two main components: the first module referred to the physical storage space for phenotypic data, in which functional manipulation on data can be realized, such as data indexing, filtering, range-setting, searching, etc.; the second module related to the calculation of basic descriptive statistics, where data filtered from the database can be used for the computation of basic statistical parameters and the simultaneous conditional sorting. NEAUHLFPD could be used to effectively store and manage not only phenotypic, but also genotypic and genomics data, which can facilitate further investigation on the molecular genetic basis of chicken adipose tissue growth and development, and expedite the selection and breeding of broilers with low fat content.

Key words: broiler, abdominal fat rate, divergent selection, phenotype, database