首页> 外文期刊>Journal of Agricultural Science >Combining Ability and Gene Action of Tropical Maize (Zea mays L.) Inbred Lines under Low and High Nitrogen Conditions
【24h】

Combining Ability and Gene Action of Tropical Maize (Zea mays L.) Inbred Lines under Low and High Nitrogen Conditions

机译:低氮和高氮条件下热带玉米自交系的配合力和基因作用

获取原文
           

摘要

This study was conducted to determine combining ability and gene action in elite maize inbred lines under low and high soil nitrogen conditions for hybrid breeding. Forty two tropical inbred lines (three testers and 39 lines) were crossed using line × tester mating design. The resulting 117 F1 hybrids, along with 4 hybrids used as checks, were evaluated using an 11 × 11 lattice design with two replications for grain yield and yield related traits during the 2012 and 2013 cropping seasons at two sites (Mbalmayo and Nkolbisson). Results revealed predominant additive gene effect under high soil nitrogen (N) conditions. Non-additive gene effect influenced grain yield under low soil and thus could be exploited for hybrid development. Under high N conditions inbred lines CLYN246, J16-1, CLWN201, TL-11-A-1642-5, CLQRCWQ26 and 1368 were good general combiners. Lines CML 343, ATP S6 20-Y-1, CLWN201, 1368, ATP S9 30 Y-1 and CLQRCWQ26 were good general combiners for grain yield under low N. They could be used to develop low N tolerant varieties. Different single cross hybrid combinations were identified for high grain yields under both low and high N conditions. The selected lines and single cross hybrids are a useful source of valuable genetic material for future maize hybrid breeding or direct production under low N.
机译:本研究旨在确定在低氮和高氮条件下玉米优良自交系杂交育种的配合力和基因作用。使用线×测试仪交配设计杂交了42条热带自交系(3个测试仪和39个品系)。使用11×11格子设计评估了这117个F1杂种以及4个杂种,这些设计在2012年和2013年两个季节(Mbalmayo和Nkolbisson)的种植季节进行了两次重复的谷物产量和与产量相关的性状研究。结果表明,在高土壤氮(N)条件下,主要的加性基因效应。非加性基因效应影响低​​土壤条件下的谷物产量,因此可用于杂种开发。在高氮条件下,自交系CLYN246,J16-1,CLWN201,TL-11-A-1642-5,CLQRCWQ26和1368是很好的通用组合。在低氮条件下,CML 343,ATP S6 20-Y-1,CLWN201、1368,ATP S9 30 Y-1和CLQRCWQ26系是优良的普通小麦籽粒合成剂。它们可用于开发耐低氮品种。在低氮和高氮条件下,均已鉴定出不同的单交杂种组合以实现高产。选择的品系和单杂交种是有价值的遗传材料的有用来源,可用于未来玉米杂交育种或在低氮下直接生产。

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