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一个细胞分裂素激活酶样基因可提高水稻在各种田间条件下的产量。

A cytokinin-activation enzyme-like gene improves grain yield under various field conditions in rice.

机构信息

Sinobioway Bio-Agriculture Group Co., Ltd, Beijing, China.

Corteva Agriscience, Johnston, IA, USA.

出版信息

Plant Mol Biol. 2020 Mar;102(4-5):373-388. doi: 10.1007/s11103-019-00952-5. Epub 2019 Dec 23.

Abstract

CRISPR-edited variants at the 3'-end of OsLOGL5's coding sequence (CDS), significantly increased rice grain yield under well-watered, drought, normal nitrogen, and low nitrogen field conditions at multiple geographical locations. Cytokinins impact numerous aspects of plant growth and development. This study reports that constitutive ectopic overexpression of a rice cytokinin-activation enzyme-like gene, OsLOGL5, significantly reduced primary root growth, tiller number, and yield. Conversely, mutations at the 3'-end of OsLOGL5 CDS resulted in normal rice plant morphology but with increased grain yield under well-watered, drought, normal nitrogen, and low nitrogen field conditions at multiple geographical locations. Six gene edited variants (Edit A to F) were created and tested in the field. Edit-B and Edit-F plants increased, but Edit-D and Edit-E plants decreased, the panicle number per plant. All OsLOGL5-edited plants significantly increased seed setting rate, total grain numbers, full-filled grain numbers per panicle, and thousand seed weight under drought conditions, suggesting that OsLOGL5 is likely involved in the regulation of both seed development and grain filling processes. Our results indicate that the C-terminal end of OsLOGL5 protein plays an important role in regulating rice yield improvement under different abiotic stress conditions, and OsLOGL5 is important for rice yield enhancement and stability.

摘要

OsLOGL5 编码序列(CDS)3'端经 CRISPR 编辑的变异显著提高了水稻在多个地理位置的充分供水、干旱、正常氮和低氮田间条件下的籽粒产量。细胞分裂素影响植物生长和发育的许多方面。本研究报告称,水稻细胞分裂素激活酶样基因 OsLOGL5 的组成型异位过表达显著降低了主根生长、分蘖数和产量。相反,OsLOGL5 CDS 3'端的突变导致正常的水稻植株形态,但在多个地理位置的充分供水、干旱、正常氮和低氮田间条件下增加了籽粒产量。在田间测试了六个基因编辑变体(Edit A 到 F)。Edit-B 和 Edit-F 植株增加,但 Edit-D 和 Edit-E 植株减少了每株的穗数。所有 OsLOGL5 编辑的植株在干旱条件下显著提高了结实率、总粒数、每穗饱满粒数和千粒重,表明 OsLOGL5 可能参与了种子发育和灌浆过程的调节。我们的结果表明,OsLOGL5 蛋白的 C 端在不同非生物胁迫条件下调控水稻产量提高中起重要作用,OsLOGL5 对水稻产量的提高和稳定性很重要。

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