OsCKq1 Regulates Heading Date and Grain Weight in Rice in Response to Day Length.

IF 4.8 1区 农林科学 Q1 AGRONOMY
Rice Pub Date : 2024-08-08 DOI:10.1186/s12284-024-00726-8
Eun-Gyeong Kim, Yoon-Hee Jang, Jae-Ryoung Park, Xiao-Han Wang, Rahmatullah Jan, Muhammad Farooq, Sajjad Asaf, Saleem Asif, Kyung-Min Kim
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引用次数: 0

Abstract

Background: Photoperiod sensitivity is among the most important agronomic traits of rice, as it determines local and seasonal adaptability and plays pivotal roles in determining yield and other key agronomic characteristics. By controlling the photoperiod, early-maturing rice can be cultivated to shorten the breeding cycle, thereby reducing the risk of yield losses due to unpredictable climate change. Furthermore, early-maturing and high-yielding rice needs to be developed to ensure food security for a rapidly growing population. Early-maturing and high-yielding rice should be developed to fulfill these requirements. OsCKq1 encodes the casein kinase1 protein in rice. OsCKq1 is a gene that is activated by photophosphorylation when Ghd7, which suppresses flowering under long-day conditions, is activated.

Results: This study investigates how OsCKq1 affects heading in rice. OsCKq1-GE rice was analyzed the function of OsCKq1 was investigated by comparing the expression levels of genes related to flowering regulation. The heading date of OsCKq1-GE lines was earlier (by about 3 to 5 days) than that of Ilmi (a rice cultivar, Oryza sativa spp. japonica), and the grain length, grain width, 1,000-grain weight, and yield increased compared to Ilmi. Furthermore, the culm and panicle lengths of OsCKq1-GE lines were either equal to or longer than those of Ilmi.

Conclusions: Our research demonstrates that OsCKq1 plays a pivotal role in regulating rice yield and photoperiod sensitivity. Specifically, under long-day conditions, OsCKq1-GE rice exhibited reduced OsCKq1 mRNA levels alongside increased mRNA levels of Hd3a, Ehd1, and RFT1, genes known for promoting flowering, leading to earlier heading compared to Ilmi. Moreover, we observed an increase in seed size. These findings underscore OsCKq1 as a promising target for developing early-maturing and high-yielding rice cultivars, highlighting the potential of CRISPR/Cas9 technology in enhancing crop traits.

Abstract Image

OsCKq1 随日照长度调节水稻的抽穗期和粒重
背景:光周期敏感性是水稻最重要的农艺性状之一,因为它决定了水稻对当地和季节的适应性,并在决定产量和其他关键农艺性状方面发挥着举足轻重的作用。通过控制光周期,可以培育早熟水稻,缩短育种周期,从而降低因不可预测的气候变化而造成产量损失的风险。此外,需要开发早熟高产水稻,以确保快速增长的人口的粮食安全。应开发早熟高产水稻来满足这些要求。OsCKq1 编码水稻中的酪蛋白激酶 1 蛋白。当长日照条件下抑制开花的 Ghd7 被激活时,OsCKq1 基因会被光磷酸化激活:本研究探讨了 OsCKq1 如何影响水稻的头状花序。通过比较开花调控相关基因的表达水平,分析了 OsCKq1-GE 水稻的功能。OsCKq1-GE 株系的抽穗期比 Ilmi(水稻栽培品种,Oryza sativa spp. japonica)早(约 3 至 5 天),谷粒长度、谷粒宽度、千粒重和产量也比 Ilmi 增加。此外,OsCKq1-GE 株系的茎秆和圆锥花序长度与伊尔米相同或更长:我们的研究表明,OsCKq1 在调节水稻产量和光周期敏感性方面起着关键作用。具体而言,在长日照条件下,OsCKq1-GE 水稻表现出 OsCKq1 mRNA 水平降低,同时 Hd3a、Ehd1 和 RFT1(众所周知的促进开花基因)的 mRNA 水平升高,与伊尔米相比,OsCKq1-GE 水稻能更早抽穗。此外,我们还观察到种子体积增大。这些发现强调了 OsCKq1 是开发早熟高产水稻栽培品种的一个有前途的靶标,突出了 CRISPR/Cas9 技术在提高作物性状方面的潜力。
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来源期刊
Rice
Rice AGRONOMY-
CiteScore
10.10
自引率
3.60%
发文量
60
审稿时长
>12 weeks
期刊介绍: Rice aims to fill a glaring void in basic and applied plant science journal publishing. This journal is the world''s only high-quality serial publication for reporting current advances in rice genetics, structural and functional genomics, comparative genomics, molecular biology and physiology, molecular breeding and comparative biology. Rice welcomes review articles and original papers in all of the aforementioned areas and serves as the primary source of newly published information for researchers and students in rice and related research.
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