Research & Development, Corteva Agriscience, Johnston, IA 50131
Research & Development, Corteva Agriscience, Johnston, IA 50131.
Proc Natl Acad Sci U S A. 2019 Nov 19;116(47):23850-23858. doi: 10.1073/pnas.1902593116. Epub 2019 Nov 4.
Increasing maize grain yield has been a major focus of both plant breeding and genetic engineering to meet the global demand for food, feed, and industrial uses. We report that increasing and extending expression of a maize MADS-box transcription factor gene, , under the control of a moderate-constitutive maize promoter, results in maize plants with increased plant growth, photosynthesis capacity, and nitrogen utilization. Molecular and biochemical characterization of transgenic plants demonstrated that their enhanced agronomic traits are associated with elevated plant carbon assimilation, nitrogen utilization, and plant growth. Overall, these positive attributes are associated with a significant increase in grain yield relative to wild-type controls that is consistent across years, environments, and elite germplasm backgrounds.
提高玉米籽粒产量一直是植物育种和遗传工程的主要关注点,以满足全球对粮食、饲料和工业用途的需求。我们报告说,在一个适度组成型玉米启动子的控制下,增加和延长玉米 MADS-box 转录因子基因的表达,导致玉米植株生长、光合作用能力和氮利用增加。转基因植物的分子和生化特性表明,它们增强的农艺性状与植物碳同化、氮利用和植物生长的提高有关。总的来说,这些积极的特性与相对于野生型对照的籽粒产量的显著增加有关,这种增加在多年、环境和优良种质背景下都是一致的。