...
首页> 外文期刊>The Journal of Agricultural Science >The contribution of the gibberellin-insensitive semi-dwarfing (Rht) genes to genetic variation in wheat seedling growth in response to osmotic stress
【24h】

The contribution of the gibberellin-insensitive semi-dwarfing (Rht) genes to genetic variation in wheat seedling growth in response to osmotic stress

机译:胃肠杆菌素不敏感半幼术(RHT)基因响应渗透胁迫响应渗透胁迫的小麦幼苗生长遗传变异的贡献

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The effects of various gibberellin-insensitive semi-dwarfing (Rht) alleles and background genotypes on the growth response of wheat seedlings to simulated low water potential were investigated. Four sets of near-isogenic lines, each consisting of six members (Rht-B1a+Rht-D1a (rht), Rht-B1b, Rht-B1c, Rht-D1b, Rht-B1b+Rht-D1b and Rht-B1c+Rht-D1b), and one set of five members (rht, Rht-B1b, Rht-B1c, Rht-B1d and Rht-D1b) were germinated in the presence of polyethylene glycol (PEG). The growth responses were assessed by measuring the lengths of the longest root, coleoptile and longest leaf (shoot) and calculating the root length:shoot length ratio and a tolerance index (TI). Seedling growth was significantly affected by the allelic status at the Rht loci, background genes and the water potential. The PEG treatment had major effects on root and shoot growth. Coleoptile growth was mainly affected by the Rht alleles. There were significant interactions of the Rht allele and variety on the growth response to low water potential. Genotypes with longer roots, coleoptiles and shoots when grown in water, as determined by the Rht allelic status (rht, Rht-B1b and Rht-D1b) and varietal background, had the highest TI and maintained this advantage under stress, while genotypes with smaller seedlings (Rht-B1c and Rht-B1c+Rht-D1b) when grown in water were more strongly affected.
机译:研究了各种胃植物素 - 不敏感半侏儒(RHT)等位基因和背景基因型对模拟低水势的小麦幼苗生长反应的影响。四组近同位素线,各自由六个成员组成(rHT-B1A + rHT-D1a(rHT),rHT-B1b,rHT-B1C,rHT-D1b,rHT-B1b + rht-d1b和rht-b1c + rht -D1B)和一组五个成员(RHT,rHT-B1B,rHT-B1C,rHT-B1C,RHT-B1D和rHT-D1B)在聚乙二醇(PEG)的存在下萌发。通过测量最长根,小孔和最长叶(射击)的长度来评估生长响应,并计算根长度:拍摄长度和公差指数(TI)。幼苗生长受RHT基因座,背景基因和水势的等位基因地位的影响。 PEG治疗对根源和射击生长产生了重大影响。植物精化生长主要受RhT等位基因的影响。 RHT等位基因和各种对低水位潜力的生长反应具有显着的相互作用。在水中生长时的根部,牛皮制和芽的基因型,如rht等位基因身份(rHT,rHT-b1b和rhT-d1b)和品种背景所确定的,并且在压力下保持这种优势,而具有较小的基因型在水中生长的幼苗(rHT-B1C和RHT-B1C + RHT-D1B)更受强烈影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号