National Maize Improvement Center; Center for Crop Functional Genomics and Molecular Breeding; Joint Laboratory for International Cooperation in Crop Molecular Breeding, Ministry of Education; Beijing Key Laboratory of Crop Genetic Improvement, Laboratory of Crop Heterosis and Utilization, China Agricultural University, Beijing 100193, China.
J Exp Bot. 2022 Jan 5;73(1):110-122. doi: 10.1093/jxb/erab399.
The complex gene regulatory network underlying tiller development in maize remains largely unknown. Here we identified two major quantitative trait loci for tiller number, Tin8 on chromosome 8 and the previously known Tb1 on chromosome 1, in a population derived from a teosinte-maize cross. Map-based cloning and association mapping revealed that Tin8, corresponding to Zcn8 encoding a phosphatidylethanolamine-binding-related kinase, is down-regulated in transcription, which results in decreased tiller number. A strong interaction between Tin8 and the key gen Tb1 was detected for tiller number. Further RNA-seq analysis showed that the expression of 13 genes related to tiller development was controlled by Tin8. Our results support the existence of a complex gene regulatory network for the outgrowth of the tiller bud in maize, in which Zcn8 controls 13 tiller-related genes, including four genes for hormonal responses. In particular, Zcn8 represses Gt1, D14, and Tru1 through the interaction with Tb1.
玉米分蘖发育的复杂基因调控网络在很大程度上仍然未知。在这里,我们在一个源自玉米与类蜀黍杂交的群体中鉴定出了两个主要的分蘖数数量性状位点,8 号染色体上的 Tin8 和先前已知的 1 号染色体上的 Tb1。基于图谱的克隆和关联作图表明,Tin8 对应于编码磷酯乙醇胺结合相关激酶的 Zcn8,其转录水平下调,导致分蘖数减少。我们检测到 Tin8 与关键基因 Tb1 之间存在强烈的互作关系,对分蘖数有影响。进一步的 RNA-seq 分析表明,13 个与分蘖发育相关的基因的表达受 Tin8 控制。我们的研究结果支持了玉米分蘖芽生长的复杂基因调控网络的存在,其中 Zcn8 控制着包括 4 个激素响应基因在内的 13 个分蘖相关基因。特别是,Zcn8 通过与 Tb1 的相互作用抑制了 Gt1、D14 和 Tru1 的表达。