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脱落酸通过调节碳水化合物代谢来调控水稻叶鞘基部缺光条件下条纹叶表型的发生与恢复。

Abscisic Acid Regulates the Occurrence and Recovery of the Striped Leaf Phenotype in Response to Lacking Light at the Base of Sheath in Rice by Modulating Carbohydrate Metabolism.

作者信息

Chen Jiasheng, Yang Shaowen, Fu Ming, He Ying, Zeng Hanlai

机构信息

MOA Key Laboratory of Crop Ecophysiology and Farming System in the Middle Reaches of the Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Plants (Basel). 2024 Jul 28;13(15):2090. doi: 10.3390/plants13152090.

Abstract

Rice B03S mutants with intermittent leaf discoloration were developed from the photoperiod- and thermosensitive genic male sterile (PTGMS) rice line Efeng 1S. After these plants were deeply transplanted, the new leaves manifested typical stripe patterns. In this study, deep and shallow transplantation of B03S was carried out, and aluminum shading was performed directly on the leaf sheath. It was determined that the reason for the appearance of the striped leaf trait was that the base of leaf sheath lacked light, at which time the sheath transformed from the source organ to the sink organ in rice. To elucidate the related metabolic changes in glycometabolism and abscisic acid (ABA) biosynthesis and transcriptional regulation in the leaf sheath, ultra-performance liquid chromatography/tandem mass spectrometry (UPLC-MS/MS) combined with transcriptome and real-time quantitative PCR (qPCR) validation were used for analysis after deep and shallow transplantation. The result indicates that the leaf sheath may need to compete with the new leaves for sucrose produced by the photosynthesis of old leaves in response to lacking light at the base of sheath. Moreover, the ABA content increases in the leaf sheath when the gene expression of and is upregulated at the same time, enhancing the plant's resistance to the adverse condition of shading at the leaf sheath. Furthermore, exogenous spraying of B03S with ABA solution was carried out to help recovery under shading stress. The result indicates that the synthesis of endogenous ABA in the leaf sheath is reduced by spraying ABA. At the same time, ABA regulates sucrose metabolism by inhibiting the expression of the gene. This allows for more sucrose synthesized by the old leaves to be transported to the new leaves, resulting an obvious recovery effect of the strip leaf character due to the re-balance of sugar supply and demand in B03S. These findings improve the understanding of the physiological function and metabolic mechanism of the rice leaf sheath, provide a theoretical basis for uneven leaf coloration in nature, and provide theoretical guidance for rice production via seedling transplantation or direct seeding.

摘要

具有间歇性叶片变色的水稻B03S突变体是从光周期和温敏型雄性不育(PTGMS)水稻品系鄂丰1S培育而来。这些植株深栽后,新叶呈现出典型的条纹状。本研究对B03S进行了深栽和浅栽,并直接对叶鞘进行铝箔遮光处理。结果表明,叶鞘出现条纹叶性状的原因是叶鞘基部缺乏光照,此时叶鞘在水稻中从源器官转变为库器官。为阐明叶鞘中糖代谢、脱落酸(ABA)生物合成及转录调控的相关代谢变化,深栽和浅栽后采用超高效液相色谱/串联质谱(UPLC-MS/MS)结合转录组和实时定量PCR(qPCR)验证进行分析。结果表明,叶鞘基部缺乏光照时,叶鞘可能需要与新叶竞争老叶光合作用产生的蔗糖。此外,叶鞘中ABA含量增加时, 和 的基因表达同时上调,增强了植株对叶鞘遮光逆境的抗性。此外,对B03S进行外源ABA溶液喷施以帮助其在遮光胁迫下恢复。结果表明,喷施ABA会降低叶鞘中内源ABA的合成。同时,ABA通过抑制 基因的表达来调节蔗糖代谢。这使得老叶合成的更多蔗糖能够转运到新叶,从而由于B03S中糖供需的重新平衡,使条纹叶性状产生明显的恢复效果。这些发现增进了对水稻叶鞘生理功能和代谢机制的理解,为自然界中叶片颜色不均提供了理论依据,并为水稻移栽或直播生产提供了理论指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/350b/11314377/52456dccd72e/plants-13-02090-g001.jpg

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