Zhang J, Ku L X, Han Z P, Guo S L, Liu H J, Zhang Z Z, Cao L R, Cui X J, Chen Y H
College of Agronomy, Synergetic Innovation Center of Henan Grain Crops and National Key Laboratory of Wheat and Maize Crop Science, Henan Agricultural University, 95, Wenhua Road, Zhengzhou 450002, China.
College of Agronomy, Synergetic Innovation Center of Henan Grain Crops and National Key Laboratory of Wheat and Maize Crop Science, Henan Agricultural University, 95, Wenhua Road, Zhengzhou 450002, China College of Agronomy, Henan University of Science and Technology, Luoyang 471003, China.
J Exp Bot. 2014 Sep;65(17):5063-76. doi: 10.1093/jxb/eru271. Epub 2014 Jul 1.
Maize architecture is a major contributing factor to their high level of productivity. Maize varieties with an erect-leaf-angle (LA) phenotype, which increases light harvesting for photosynthesis and grain-filling, have elevated grain yields. Although a large body of information is available on the map positions of quantitative trait loci (QTL) for LA, little is known about the molecular mechanism of these QTL. In this study, the ZmCLA4 gene, which is responsible for the qLA4-1 QTL associated with LA, was identified and isolated by fine mapping and positional cloning. The ZmCLA4 gene is an orthologue of LAZY1 in rice and Arabidopsis. Sequence analysis revealed two SNPs and two indel sites in ZmCLA4 between the D132 and D132-NIL inbred maize lines. Association analysis showed that C/T/mutation667 and CA/indel965 were strongly associated with LA. Subcellular localization verified the functions of a predicted transmembrane domain and a nuclear localization signal in ZmCLA4. Transgenic maize plants with a down-regulated ZmCLA4 RNAi construct and transgenic rice plants over-expressing ZmCLA4 confirmed that the ZmCLA4 gene located in the qLA4 QTL regulated LA. The allelic variants of ZmCLA4 in the D132 and D132-NIL lines exhibited significant differences in leaf angle. ZmCLA4 transcript accumulation was higher in D132-NIL than in D132 during all the developmental stages and was negatively correlated with LA. The gravitropic response was increased and cell shape and number at the leaf and stem junctions were altered in D132-NIL relative to D132. These findings suggest that ZmCLA4 plays a negative role in the control of maize LA through the alteration of mRNA accumulation, leading to altered shoot gravitropism and cell development. The cloning of the gene responsible for the qLA4-1 QTL provides information on the molecular mechanisms of LA in maize and an opportunity for the improvement of plant architecture with regard to LA through maize breeding.
玉米株型是其高产的一个主要促成因素。具有直立叶角(LA)表型的玉米品种,能增加光合作用和籽粒灌浆的光能捕获,从而提高籽粒产量。尽管关于LA的数量性状位点(QTL)的图谱位置已有大量信息,但对这些QTL的分子机制了解甚少。在本研究中,通过精细定位和图位克隆,鉴定并分离出了与LA相关的qLA4 - 1 QTL的ZmCLA4基因。ZmCLA4基因是水稻和拟南芥中LAZY1的直系同源基因。序列分析揭示了在D132和D132 - NIL自交系玉米之间的ZmCLA4中有两个单核苷酸多态性(SNP)和两个插入缺失位点。关联分析表明,C/T/mutation667和CA/indel965与LA密切相关。亚细胞定位验证了ZmCLA4中预测的跨膜结构域和核定位信号的功能。用下调的ZmCLA4 RNAi构建体的转基因玉米植株和过表达ZmCLA4的转基因水稻植株证实,位于qLA4 QTL中的ZmCLA4基因调控LA。D132和D132 - NIL品系中ZmCLA4的等位基因变体在叶角上表现出显著差异。在所有发育阶段,D132 - NIL中的ZmCLA4转录本积累均高于D132,且与LA呈负相关。相对于D132,D132 - NIL中的向重力性反应增强,叶和茎连接处的细胞形状和数量发生改变。这些发现表明,ZmCLA4通过改变mRNA积累在控制玉米LA中起负作用,导致地上部向重力性和细胞发育改变。负责qLA4 - 1 QTL的基因的克隆为玉米LA的分子机制提供了信息,并为通过玉米育种改善与LA相关的植株株型提供了机会。