严长杰   正高级

严长杰,男,1970年生,汉族,中共党员,博士,教授,博士生导师。现任农学院院长,扬州大学《遗传学》精品课程负责人,江苏里下河地区农科所兼职研究员。主要从事遗传学和分子生物学教学与科研工作,主讲《作物进化》、《植物分子生物学》、《植物生命科学前沿》、《遗传学》等课程。主要研究方向为水稻分子生物学,包括基因克隆、重要性状的遗传网络研究等。先后主持国家863计划、973子课题、国家自然科学基金、国家转基因重...Detials

Genetic improvement of panicle-erectness japonica rice toward both yield and eating and cooking quality

Release time:2021-08-22  Hits:

  • Impact Factor:2.6
  • Journal:Molecular Breeding
  • Abstract:The panicle erectness (PE) japonica cultivars have been widely planted in China. However, the relatively low yield level per plant and inferior eating and cooking quality of PE japonica cultivars are needed to improve further. In present study, a typical PE japonica cultivar, Nanjing 46, was selected as target for improving yield and grain quality by the way of introgression of Gn1a, qPC-1, and sd1 allele conferring grain number, grain protein content (GPC), and plant height, respectively. We obtained the improved lines containing Gn1a, qPC-1-sd1, and qPC-1-sd1-Gn1a through consecutive backcrossing with the help of gene-tagged markers. Agronomic and quality trait analysis showed that the introgression of Gn1a allele exhibited a positive effect on many panicle characters, including longer panicle length and grain length, more grain numbers per panicle, finally resulting in an increased grain yield. The introgression of sd1 allele could significantly reduce the plant height, and no negative effects were found on the panicle performance of the plants containing Gn1a allele. The introgression of qPC-1 could significantly reduce GPC, then increase rice palatability based on the RVA analysis. The result indicated that it is feasible to improve rice yield and grain quality of PE japonica cultivars by replacing these three favorable alleles simultaneously. This strategy could also be applied in the improvement of common japonica cultivars.
  • Co-author:Yang YH; Shen ZY; Xu CD; Guo M; Li YG; Zhang YX; Zhong CY; Sun SY; Yan CJ*
  • Indexed by:SCI
  • Discipline:Agricultural science
  • First-Level Discipline:Crop Science
  • Document Type:SCI
  • Volume:40
  • Page Number:5
  • Translation or Not:no
  • Date of Publication:2020-05-11
  • Included Journals:SCI