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水稻中 OsASN1 的过表达在氮限制条件下增加了籽粒蛋白质含量和产量。

OsASN1 Overexpression in Rice Increases Grain Protein Content and Yield under Nitrogen-Limiting Conditions.

机构信息

Center for Plant Aging Research, Institute for Basic Science (IBS), Daegu 42988, Korea.

Department of Southern Area Crop Science, National Institute of Crop Science, Rural Development Administration, Miryang 50424, Korea.

出版信息

Plant Cell Physiol. 2020 Jul 1;61(7):1309-1320. doi: 10.1093/pcp/pcaa060.

Abstract

Nitrogen (N) is a major limiting factor affecting crop yield in unfertilized soil. Thus, cultivars with a high N use efficiency (NUE) and good grain protein content (GPC) are needed to fulfill the growing food demand and to reduce environmental burden. This is especially true for rice (Oryza sativa L.) that is cultivated with a high input of N fertilizer and is a primary staple food crop for more than half of the global population. Here, we report that rice asparagine synthetase 1 (OsASN1) is required for grain yield and grain protein contents under both N-sufficient (conventional paddy fields) and N-limiting conditions from analyses of knockout mutant plants. In addition, we show that overexpression (OX) of OsASN1 results in better nitrogen uptake and assimilation, and increased tolerance to N limitation at the seedling stage. Under field conditions, the OsASN1 OX rice plants produced grains with increased N and protein contents without yield reduction compared to wild-type (WT) rice. Under N-limited conditions, the OX plants displayed increased grain yield and protein content with enhanced photosynthetic activity compared to WT rice. Thus, OsASN1 can be an effective target gene for the development of rice cultivars with higher grain protein content, NUE, and grain yield under N-limiting conditions.

摘要

氮(N)是未施肥土壤中影响作物产量的主要限制因素。因此,需要具有高氮利用效率(NUE)和良好谷物蛋白含量(GPC)的品种来满足不断增长的粮食需求并减少环境负担。对于水稻(Oryza sativa L.)来说尤其如此,水稻需要大量施氮肥,是全球一半以上人口的主要主食作物。在这里,我们报告了在氮充足(常规稻田)和氮限制条件下,水稻天冬酰胺合成酶 1(OsASN1)对籽粒产量和籽粒蛋白含量的重要性,通过对敲除突变体植物的分析得出这一结论。此外,我们还表明,过表达(OX)OsASN1 可导致更好的氮吸收和同化,并提高幼苗期对氮限制的耐受性。在田间条件下,与野生型(WT)水稻相比,OsASN1 OX 水稻植株的籽粒含氮量和蛋白含量增加,而产量没有降低。在氮限制条件下,与 WT 水稻相比,OX 植株的籽粒产量和蛋白含量增加,光合作用活性增强。因此,OsASN1 可以成为开发具有更高谷物蛋白含量、NUE 和在氮限制条件下产量的水稻品种的有效靶标基因。

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