An orchestrated ethylene–gibberellin signaling cascade contributes to mesocotyl elongation and emergence of rice direct seeding

IF 9.3 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Integrative Plant Biology Pub Date : 2024-05-15 DOI:10.1111/jipb.13671
Yusong Lyu, Xinli Dong, Shipeng Niu, Ruijie Cao, Gaoneng Shao, Zhonghua Sheng, Guiai Jiao, Lihong Xie, Shikai Hu, Shaoqing Tang, Xiangjin Wei, Peisong Hu
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Abstract

A mechanized direct seeding of rice with less labor and water usage, has been widely adopted. However, this approach requires varieties that exhibit uniform seedling emergence. Mesocotyl elongation (ME) offers the main drive of fast emergence of rice seedlings from soils; nevertheless, its genetic basis remains unknown. Here, we identify a major rice quantitative trait locus Mesocotyl Elongation1 (qME1), an allele of the Green Revolution gene Semi-Dwarf1 (SD1), encoding GA20-oxidase for gibberellin (GA) biosynthesis. ME1 expression is strongly induced by soil depth and ethylene. When rice grains are direct-seeded in soils, the ethylene core signaling factor OsEIL1 directly promotes ME1 transcription, accelerating bioactive GA biosynthesis. The GAs further degrade the DELLA protein SLENDER RICE 1 (SLR1), alleviating its inhibition of rice PHYTOCHROME-INTERACTING FACTOR-LIKE13 (OsPIL13) to activate the downstream expansion gene OsEXPA4 and ultimately promote rice seedling ME and emergence. The ancient traits of long mesocotyl and strong emergence ability in wild rice and landrace were gradually lost in company with the Green Revolution dwarf breeding process, and an elite ME1-R allele (D349H) is found in some modern Geng varieties (long mesocotyl lengths) in northern China, which can be used in the direct seeding and dwarf breeding of Geng varieties. Furthermore, the ectopic and high expression of ME1 driven by mesocotyl-specific promoters resulted in rice plants that could be direct-seeded without obvious plant architecture or yield penalties. Collectively, we reveal the molecular mechanism of rice ME, and provide useful information for breeding new Green Revolution varieties with long mesocotyl suitable for direct-seeding practice.

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协调乙烯-赤霉素信号级联有助于中胚轴伸长和水稻直播的萌发。
水稻机械化直播已被广泛采用,这种方法减少了劳动力和用水量。然而,这种方法需要出苗均匀的品种。中胚轴伸长(ME)是水稻秧苗快速出土的主要动力,但其遗传基础仍不清楚。在这里,我们确定了一个主要的水稻数量性状基因座 Mesocotyl Elongation1(qME1),它是绿色革命基因 Semi-Dwarf1 (SD1)的一个等位基因,编码用于赤霉素(GA)生物合成的 GA20-oxidase。ME1 的表达受土壤深度和乙烯的强烈诱导。当水稻籽粒直接播种在土壤中时,乙烯核心信号因子 OsEIL1 会直接促进 ME1 的转录,加速生物活性 GA 的生物合成。GA进一步降解DELLA蛋白SLENDER RICE 1(SLR1),减轻其对水稻PHYTOCHROME-INTERACTING FACTOR-LIKE13(OsPIL13)的抑制,从而激活下游膨大基因OsEXPA4,最终促进水稻秧苗ME和出苗。在绿色革命矮化育种过程中,野生稻和陆稻中长中胚轴和出苗能力强的古老性状逐渐消失,而在中国北方一些现代耿品种(长中胚轴)中发现了一个精英ME1-R等位基因(D349H),可用于耿品种的直播和矮化育种。此外,在中胚轴特异性启动子的驱动下,ME1的异位高表达使水稻植株可以直接播种,而没有明显的植株结构和产量损失。总之,我们揭示了水稻ME的分子机制,为培育适合直播的长中胚轴绿色革命新品种提供了有用信息。
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来源期刊
Journal of Integrative Plant Biology
Journal of Integrative Plant Biology 生物-生化与分子生物学
CiteScore
18.00
自引率
5.30%
发文量
220
审稿时长
3 months
期刊介绍: Journal of Integrative Plant Biology is a leading academic journal reporting on the latest discoveries in plant biology.Enjoy the latest news and developments in the field, understand new and improved methods and research tools, and explore basic biological questions through reproducible experimental design, using genetic, biochemical, cell and molecular biological methods, and statistical analyses.
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