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OsEIL1-OsERF115 靶基因调控模块控制水稻的粒长和粒重。

The OsEIL1-OsERF115-target gene regulatory module controls grain size and weight in rice.

机构信息

Shunde Graduate School, Research Center of Biology and Agriculture, Zhongzhi International Institute of Agricultural Biosciences, University of Science and Technology Beijing, Beijing, China.

Beijing Engineering Laboratory of Main Crop Bio-Tech Breeding, Beijing International Science and Technology Cooperation Base of Bio-Tech Breeding, Beijing Solidwill Sci-Tech Co. Ltd., Beijing, China.

出版信息

Plant Biotechnol J. 2022 Aug;20(8):1470-1486. doi: 10.1111/pbi.13825. Epub 2022 May 6.

Abstract

Grain size is one of the essential determinants of rice yield. Our previous studies revealed that ethylene plays an important role in grain-size control; however, the precise mechanism remains to be determined. Here, we report that the ethylene response factor OsERF115 functions as a key downstream regulator for ethylene-mediated grain development. OsERF115 encodes an AP2/ERF-type transcriptional factor that is specifically expressed in young spikelets and developing caryopses. Overexpression of OsERF115 significantly increases grain length, width, thickness and weight by promoting longitudinal elongation and transverse division of spikelet hull cells, as well as enhancing grain-filling activity, whereas its knockout mutations lead to the opposite effects, suggesting that OsERF115 positively regulates grain size and weight. OsERF115 transcription is strongly induced by ethylene, and OsEIL1 directly binds to the promoter to activate its expression. OsERF115 acts as a transcriptional repressor to directly or indirectly modulate a set of grain-size genes during spikelet growth and endosperm development. Importantly, haplotype analysis reveals that the SNP variations in the EIN3-binding sites of OsERF115 promoter are significantly associated with the OsERF115 expression levels and grain weight, suggesting that natural variations in the OsERF115 promoter contribute to grain-size diversity. In addition, the OsERF115 orthologues are identified only in grass species, implying a conserved and unique role in the grain development of cereal crops. Our results provide insights into the molecular mechanism of ethylene-mediated grain-size control and a potential strategy based on the OsEIL1-OsERF115-target gene regulatory module for genetic improvement of rice yield.

摘要

粒型是水稻产量的重要决定因素之一。我们之前的研究表明,乙烯在粒型控制中起着重要作用;然而,其确切机制仍有待确定。在这里,我们报告称,乙烯反应因子 OsERF115 作为乙烯介导的谷物发育的关键下游调节剂发挥作用。OsERF115 编码一个 AP2/ERF 型转录因子,它在幼嫩小穗和发育中的颖果中特异性表达。过表达 OsERF115 通过促进小穗颖壳细胞的纵向伸长和横向分裂,以及增强灌浆活性,显著增加粒长、粒宽、粒厚和粒重,而其敲除突变则导致相反的效果,表明 OsERF115 正向调节粒型和粒重。OsERF115 转录受乙烯强烈诱导,OsEIL1 直接结合启动子以激活其表达。OsERF115 作为一个转录抑制子,在小穗生长和胚乳发育过程中直接或间接调节一组粒型基因。重要的是,单倍型分析表明,OsERF115 启动子中 EIN3 结合位点的 SNP 变异与 OsERF115 表达水平和粒重显著相关,表明 OsERF115 启动子的自然变异导致粒型多样性。此外,仅在禾本科植物中鉴定到 OsERF115 的同源物,这表明它在谷类作物的谷物发育中具有保守而独特的作用。我们的研究结果为乙烯介导的粒型控制的分子机制提供了深入的了解,并为基于 OsEIL1-OsERF115-靶基因调控模块的水稻产量遗传改良提供了一种潜在的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7efc/11382972/afb77de0b3ba/PBI-20-1470-g003.jpg

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