Wang Shifeng, Wang Yang, Zhong Jianbing, Xu Wenlin, Gong Qingyou, Zhai Lihong, Li Gaoke, Huang Jun
Guangdong Provincial Key Laboratory of Plant Molecular Breeding, College of Agriculture, South China Agricultural University, Guangzhou 510642, China.
Basic School of Medicine, Hubei University of Arts and Science, Xiangyang 441053, China.
Plants (Basel). 2025 Aug 21;14(16):2600. doi: 10.3390/plants14162600.
The growth and yield of the aboveground parts of maize ( L.) are closely associated with development of the root system. LBD (Lateral Organ Boundaries Domain) transcription factors are crucial for the regulation of lateral organ development in plants. However, to date, little information has been uncovered about the LBD gene family in maize. In this research, a genome-wide identification revealed 45 LBD gene members in maize. The subsequent phylogeny, structure, and profiles of expression were analyzed. These genes were found to be dispersed across all 10 maize chromosomes and expressed in diverse tissues, including the roots, leaves, stems, pericarp, and vegetative meristems. Notably, exhibited specific expression in roots. Subsequent over-expression of in demonstrated its role in lateral root development, identifying it as a candidate gene for further investigation of root development in maize. Our findings provide a systematic analysis of ZmLBD genes and highlight as a potential target gene for developing high-yielding, lodging-resistant maize varieties.
玉米地上部分的生长和产量与根系发育密切相关。LBD(侧生器官边界结构域)转录因子对植物侧生器官发育的调控至关重要。然而,迄今为止,关于玉米LBD基因家族的信息鲜为人知。在本研究中,全基因组鉴定揭示了玉米中有45个LBD基因成员。随后对其系统发育、结构和表达谱进行了分析。这些基因分布在玉米的所有10条染色体上,并在包括根、叶、茎、果皮和营养分生组织在内的多种组织中表达。值得注意的是,[具体基因]在根中表现出特异性表达。随后在[受体植物名称]中过表达[具体基因]证明了其在侧根发育中的作用,将其确定为进一步研究玉米根系发育的候选基因。我们的研究结果对Zm LBD基因进行了系统分析,并突出了[具体基因]作为培育高产、抗倒伏玉米品种的潜在靶基因。