数字农科院2.0
查找成果
筛选
科研产出
资源类型: 外文期刊
作者:Huihui Li(精确检索)
共31条记录
排序方式:

时间

  • 时间
  • 相关度
11Dissecting the genetic basis of agronomic traits by multi-trait GWAS and genetic networks in maize (Zea mays L.)

作者:

来源:aBIOTECH

关键词: Maize (Zea mays L.) Multi-trait GWAS Genes Genetic network

12Development of an indirect ELISA for Duck circovirus detection based on prokaryotically expressed antigen

作者:

机构:

来源:BMC Veterinary Research

关键词: Cap protein Duck circovirus Indirect ELISA Prokaryotic expression Rep protein

13Comprehensive analysis of the Spartina alterniflora WD40 gene family reveals the regulatory role of SaTTG1 in plant development

作者:

机构:

来源:Frontiers in Plant Science

关键词: flowering time seed size Spartina alterniflora TTG1 WD40

14Exploring salt tolerance mechanisms using machine learning for transcriptomic insights: case study in Spartina alterniflora

作者:

机构:

来源:Horticulture Research

15Deep learning methods improve genomic prediction of wheat breeding

作者:

机构:

来源:Frontiers in Plant Science

关键词: GBLUP model genomic prediction machine learning methods multi-modal deep learning model relationship matrices

16Integrative multi-omics analysis reveals genetic and heterotic contributions to male fertility and yield in potato

作者:

机构:

来源:Nature Communications

17Genes and pathways correlated with heat stress responses and heat tolerance in maize kernels

作者:

机构:

来源:Frontiers in Plant Science

关键词: genes heat response heat tolerance maize kernel pathways

18Characteristics of Transcriptome and Metabolome Concerning Intramuscular Fat Content in Beijing Black Pigs

作者:

机构:

来源:Journal of agricultural and food chemistry

关键词: IMF meat quality metabolomics pig skeletal muscle transcriptomics

19Genetic parameters estimation and genome molecular marker identification for gestation length in pigs

作者:

机构:

来源:Frontiers in Genetics

关键词: Fst genetic molecular marker genetic parameter estimation GWAS pig gestation length

20Fine mapping of a Fusarium crown rot resistant locus on chromosome arm 6HL in barley by exploiting near isogenic lines, transcriptome profiling, and a large near isogenic line-derived population

作者:

机构:

来源:Theoretical and Applied Genetics