College of Agronomy, Gansu Agricultural University, Lanzhou 730070, China.
Gansu Provincial Key Laboratory of Aridland Crop Science, Gansu Agricultural University, Lanzhou 730070, China.
Int J Mol Sci. 2022 Apr 28;23(9):4886. doi: 10.3390/ijms23094886.
Maize plant type is one of the main factors determining maize yield, and leaf angle is an important aspect of plant type. The rice Loose Plant Architecture1 () gene and Arabidopsis AtIDD15/SHOOT GRAVITROPISM5 () gene are related to their leaf angle. However, the homologous ZmLPA1 in maize has not been studied. In this study, the changing of leaf angle, as well as gene expression in leaves in maize mutant and wild-type 'B73' under different IAA concentrations were investigated. The regulation effect of IAA on the leaf angle of was significantly stronger than that of the wild type. Transcriptome analysis showed that different exogenous IAA treatments had a common enrichment pathway-the indole alkaloid biosynthesis pathway-and among the differentially expressed genes, four genes-AUX1, AUX/IAA, ARF and SAUR-were significantly upregulated. This study revealed the regulation mechanism of gene on maize leaf angle and provided a promising gene resource for maize breeding.
玉米株型是决定玉米产量的主要因素之一,而叶片角度是株型的一个重要方面。水稻的松散株型 1()基因和拟南芥的 AtIDD15/SHOOT GRAVITROPISM5()基因都与它们的叶片角度有关。然而,玉米中同源的 ZmLPA1 尚未被研究过。在这项研究中,研究了玉米突变体 和野生型 'B73' 在不同 IAA 浓度下叶片角度的变化以及叶片中的基因表达。IAA 对 的叶片角度的调节作用明显强于野生型。转录组分析表明,不同的外源 IAA 处理具有一个共同的富集途径——吲哚生物碱生物合成途径——在差异表达基因中,四个基因-AUX1、AUX/IAA、ARF 和 SAUR-明显上调。本研究揭示了 基因对玉米叶片角度的调控机制,为玉米育种提供了有前景的基因资源。