利用 MIKC 型 MADS 盒蛋白 SOC1 提高玉米的产量潜力。
Utilizing MIKC-type MADS-box protein SOC1 for yield potential enhancement in maize.
机构信息
Department of Horticulture, Plant Biotechnology Resource and Outreach Center, Michigan State University, East Lansing, MI, 48824, USA.
Department of Plant Soil and Microbial Sciences, Michigan State University, East Lansing, MI, 48824, USA.
出版信息
Plant Cell Rep. 2021 Sep;40(9):1679-1693. doi: 10.1007/s00299-021-02722-4. Epub 2021 Jun 6.
Overexpression of Zea mays SOC gene promotes flowering, reduces plant height, and leads to no reduction in grain production per plant, suggesting enhanced yield potential, at least, through increasing planting density. MIKC-type MADS-box gene SUPPRESSOR OF OVEREXPRESSION OF CONSTANS 1 (SOC1) is an integrator conserved in the plant flowering pathway. In this study, the maize SOC1 (ZmSOC1) gene was cloned and overexpressed in transgenic maize Hi-II genotype. The T plants were backcrossed with nontransgenic inbred B73 to produce first generation backcross (BC) seeds. Phenotyping of both transgenic and null segregant (NT) BC plants was conducted in three independent experiments. The BC transgenic plants showed new attributes such as increased vegetative growth, accelerated flowering time, reduced overall plant height, and increased grain weight. Second generation backcross (BC) plants were evaluated in the field using two planting densities. Compared to BC NT plants, BC transgenic plants, were 12-18% shorter, flowered 5 days earlier, and showed no reduction in grain production per plant and an increase in fat, starch, and simple sugars in the grain. Transcriptome comparison in young leaves of 56-day-old BC plants revealed that the overexpressed ZmSOC1 resulted in 107 differentially expressed genes. The upregulated transcription factor DNA BINDING WITH ONE FINGER 5.4 (DOF5.4) was among the genes responsible for the reduced plant height. Modulating expression of SOC1 opens a new and effective approach to promote flowering and reduce plant height, which may have potential to enhance crop yield and improve grain quality.
玉米 SOC 基因的过表达促进开花,降低株高,但不会导致单株产量降低,这表明至少可以通过增加种植密度来提高产量潜力。MIKC 型 MADS 盒基因 SOC1 的抑制子 CONSTANS 过表达的抑制子 1(SOC1)是植物开花途径中保守的整合因子。本研究克隆了玉米 SOC1(ZmSOC1)基因并在转基因玉米 Hi-II 品系中过表达。T 植株与非转基因自交系 B73 回交,产生第一代回交(BC)种子。在三个独立的实验中对转基因和空载体(NT)BC 植株进行表型分析。BC 转基因植株表现出一些新特性,如增加营养生长、加速开花时间、降低整体株高和增加粒重。在田间使用两种种植密度对第二代回交(BC)植株进行评估。与 BC NT 植株相比,BC 转基因植株矮 12-18%,开花提前 5 天,单株产量无降低,且谷物中的脂肪、淀粉和单糖含量增加。对 56 天龄 BC 植株幼叶的转录组比较表明,过表达的 ZmSOC1 导致 107 个差异表达基因。上调的转录因子 DNA 结合一个手指 5.4(DOF5.4)是导致株高降低的基因之一。SOC1 表达的调控为促进开花和降低株高提供了一种新的有效方法,这可能有助于提高作物产量和改善谷物品质。