Zhao Yang, Lu Jianyu, Hu Bo, Jiao Peng, Gao Bai, Jiang Zhenzhong, Liu Siyan, Guan Shuyan, Ma Yiyong
College of Agronomy, Jilin Agricultural University, Changchun, China.
GM Crops Food. 2024 Dec 31;15(1):105-117. doi: 10.1080/21645698.2024.2328384. Epub 2024 Mar 11.
Maize ( L.) is the most important cereal crop in the world. Flowering period and photoperiod play important roles in the reproductive development of maize. This study, investigated , a gene that is highly expressed in the shoot apical meristem. infection was used to successfully obtain overexpressed plants. Fluorescence quantitative PCR revealed that the expression of the gene in the shoot apical meristem of transgenic plants was 2.8 times higher than that of the wild-type(WT). In addition, the expression of the ZmMADS42 gene in the endosperm was 2.4 times higher than that in the wild-type. The seed width of the T2 generation increased by 5.35%, whereas the seed length decreased by 7.78% compared with that of the wild-type. Dissection of the shoot tips of transgenic and wild-type plants from the 7-leaf stage to the 9-leaf stage revealed that the transgenic plants entered the differentiation stage earlier and exhibited more tassel meristems during their vegetative growth period. The mature transgenic plants were approximately 20 cm shorter in height and had a lower panicle position than the wild-type plants. Comparing the flowering period, the tasseling, powdering, and silking stages of the transgenic plants occurred 10 days earlier than those of the wild-type plants. The results showed that the gene played a significant role in regulating the flowering period and plant height of maize.
玉米(L.)是世界上最重要的谷类作物。花期和光周期在玉米的生殖发育中起着重要作用。本研究调查了一个在茎尖分生组织中高表达的基因。通过感染成功获得了过表达该基因的植株。荧光定量PCR显示,转基因植株茎尖分生组织中该基因的表达量比野生型(WT)高2.8倍。此外,ZmMADS42基因在胚乳中的表达量比野生型高2.4倍。与野生型相比,T2代种子宽度增加了5.35%,而种子长度减少了7.78%。对转基因和野生型植株从7叶期到9叶期的茎尖进行解剖发现,转基因植株更早进入分化阶段,并且在营养生长期表现出更多的雄穗分生组织。成熟的转基因植株高度比野生型植株矮约20厘米,穗位更低。比较花期,转基因植株的抽雄、散粉和吐丝阶段比野生型植株早10天。结果表明,该基因在调控玉米花期和株高方面发挥了重要作用。