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灌浆期低温胁迫下不同耐冷性水稻品种的转录组动态变化

Transcriptomic Dynamics of Rice Varieties with Differential Cold Tolerance Under Low-Temperature Stress During Grain-Filling Stage.

作者信息

Cao Liangzi, Wang Xueyang, Liu Yingying, Ding Guohua, Zhou Jinsong, Lei Lei, Bai Liangming, Luo Yu, Sun Shichen

机构信息

Institute of Tillage and Cultivation, Heilongjiang Academy of Agricultural Sciences, Harbin 150088, China.

Heilongjiang Rice Quality Improvement and Genetic Breeding Engineering Research Center, Harbin 150086, China.

出版信息

Genes (Basel). 2025 Aug 11;16(8):950. doi: 10.3390/genes16080950.

Abstract

Low-temperature stress during the grain-filling stage negatively affects rice grain quality and yield. Understanding the physiological and molecular mechanisms underlying cold tolerance is critical for breeding rice varieties with improved resilience. In this study, eight rice varieties with differential cold tolerance-LD1603, 13108, LD18, and 4-1021 (cold-tolerant) and LD3, LD4, LD121, and LD1604 (cold-sensitive)-were subjected to 17.5 °C low-temperature stress during grain filling in a naturally illuminated phytotron. Amylose and protein content, as well as taste quality, were analyzed. RNA sequencing was performed to identify differentially expressed genes and transcription factors associated with cold response. Under low-temperature stress, amylose and protein content significantly increased in all eight varieties. The taste quality of cold-sensitive varieties declined markedly, whereas cold-tolerant varieties maintained higher and more stable taste quality values. Transcriptomic analysis revealed that key enzyme genes (, , , , , and ) in the starch and sucrose metabolism pathway were significantly upregulated in cold-tolerant varieties (LD18 and 4-1021), but suppressed in cold-sensitive varieties. Several cold-responsive transcription factors from the NAC, WRKY, AP2/ERF, MYB, and bZIP families were also identified. Weighted gene co-expression network analysis (WGCNA) further revealed hub TFs (OsWRKY1, OsWRKY24, OsWRKY53, and OsMYB4) and structural genes ( and ) potentially involved in cold tolerance during grain filling. This study enhanced our understanding of the molecular response to low temperature during rice grain filling and provided candidate genes for developing cold-tolerant rice varieties through molecular breeding.

摘要

灌浆期的低温胁迫会对水稻的籽粒品质和产量产生负面影响。了解耐冷性的生理和分子机制对于培育具有更强恢复力的水稻品种至关重要。在本研究中,八个耐冷性不同的水稻品种——LD1603、13108、LD18和4-1021(耐冷型)以及LD3、LD4、LD121和LD1604(冷敏感型)——在自然光照的人工气候箱中于灌浆期经受17.5°C的低温胁迫。分析了直链淀粉和蛋白质含量以及食味品质。进行RNA测序以鉴定与冷响应相关的差异表达基因和转录因子。在低温胁迫下,所有八个品种的直链淀粉和蛋白质含量均显著增加。冷敏感品种的食味品质明显下降,而耐冷品种保持了更高且更稳定的食味品质值。转录组分析表明,淀粉和蔗糖代谢途径中的关键酶基因(、、、、、和)在耐冷品种(LD18和4-1021)中显著上调,但在冷敏感品种中受到抑制。还鉴定了来自NAC、WRKY、AP2/ERF、MYB和bZIP家族的几个冷响应转录因子。加权基因共表达网络分析(WGCNA)进一步揭示了可能参与灌浆期耐冷性的核心转录因子(OsWRKY1、OsWRKY24、OsWRKY53和OsMYB4)和结构基因(和)。本研究增进了我们对水稻灌浆期对低温分子响应的理解,并为通过分子育种培育耐冷水稻品种提供了候选基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9270/12385969/ae458970de30/genes-16-00950-g001a.jpg

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