Li Yipu, Tong Lixiu, Deng Lele, Liu Qiyu, Xing Yuexian, Wang Chao, Liu Baoshen, Yang Xiaohong, Xu Mingliang
National Maize Improvement Center of China, China Agricultural University, Beijing, 100193, People's Republic of China.
Maize Research Institute, Jilin Academy of Agricultural Sciences, Gongzhuling, 136100, Jilin, People's Republic of China.
Theor Appl Genet. 2017 Dec;130(12):2587-2600. doi: 10.1007/s00122-017-2978-1. Epub 2017 Sep 15.
The elite ZmCCT haplotypes which have no transposable element in the promoter could enhance maize resistance to Gibberella stalk rot and improve yield-related traits, while having no or mild impact on flowering time. Therefore, they are expected to have great value in future maize breeding programs. A CCT domain-containing gene, ZmCCT, is involved in both photoperiod response and stalk rot resistance in maize. At least 15 haplotypes are present at the ZmCCT locus in maize germplasm, whereas only three of them are found in Chinese commercial maize hybrids. Here, we evaluated ZmCCT haplotypes for their potential application in corn breeding. Nine resistant ZmCCT haplotypes that have no CACTA-like transposable element in the promoter were introduced into seven elite maize inbred lines by marker-assisted backcrossing. The resultant 63 converted lines had 0.7-5.1 Mb of resistant ZmCCT donor segments with over 90% recovery rates. All converted lines tested exhibited enhanced resistance to maize stalk rot but varied in photoperiod sensitivity. There was a close correlation between the hybrids and their parental lines with respect to both resistance performance and photoperiod sensitivity. Furthermore, in a given hybrid A5302/83B28, resistant ZmCCT haplotype could largely improve yield-related traits, such as ear length and 100-kernel weight, resulting in enhanced grain yield. Of nine resistant ZmCCT haplotypes, haplotype H5 exhibited excellent performance for both flowering time and stalk rot resistance and is thus expected to have potential value in future maize breeding programs.
启动子中没有转座元件的优良ZmCCT单倍型可以增强玉米对赤霉病茎腐病的抗性,并改善产量相关性状,同时对开花时间没有影响或影响较小。因此,它们有望在未来的玉米育种计划中具有重要价值。一个含有CCT结构域的基因ZmCCT参与了玉米的光周期反应和茎腐病抗性。在玉米种质中,ZmCCT基因座至少存在15种单倍型,而在中国商业玉米杂交种中仅发现其中3种。在此,我们评估了ZmCCT单倍型在玉米育种中的潜在应用。通过标记辅助回交,将9种启动子中没有类CACTA转座元件的抗性ZmCCT单倍型导入7个优良玉米自交系中。得到的63个转换系含有0.7-5.1 Mb的抗性ZmCCT供体片段,回收率超过90%。所有测试的转换系对玉米茎腐病的抗性均增强,但光周期敏感性有所不同。杂种与其亲本系在抗性表现和光周期敏感性方面密切相关。此外,在给定的杂交组合A5302/83B28中,抗性ZmCCT单倍型可以显著改善穗长和百粒重等产量相关性状,从而提高籽粒产量。在9种抗性ZmCCT单倍型中,单倍型H5在开花时间和茎腐病抗性方面均表现优异,因此有望在未来的玉米育种计划中具有潜在价值。