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SiPRR37 exerts dual functions in the regulation of photoperiodic flowering and contributes to the ecological adaption of foxtail millet
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作者 Liwei Wang Bao Tian +5 位作者 Qiang He Guanqing Jia Bin Liu Qiong Lu Hui Zhi Xianmin Diao 《The Crop Journal》 2025年第2期339-349,共11页
Foxtail millet(Setaria italica)is an important crop and an emerging model plant.Photoperiodic flowering is a key determinant of its production and geographic expansion.In this study,we found that SiPRR37 is responsibl... Foxtail millet(Setaria italica)is an important crop and an emerging model plant.Photoperiodic flowering is a key determinant of its production and geographic expansion.In this study,we found that SiPRR37 is responsible for the major quantitative trait locus(QTL)Heading date 2(Hd2)identified in 680 foxtail millets using a genome-wide association study.Overexpression of SiPRR37 in foxtail millet significantly delayed the heading date under both natural long-day and short-day conditions.CRISPR/Cas9-induced Siprr37 mutants exhibited earlier flowering in long-day conditions but later flowering in short-day conditions.The critical day length(CDL)for the reversal of Siprr37’s function was around 14.3 h.Haplotype analysis revealed that accessions with the Tc1-Mariner transposon insertion in SiPRR37(Hap 1)flowered significantly earlier at higher latitudes,and later at lower latitudes,indicating that natural variants of SiPRR37 exert dual functions in flowering regulation according to geographic latitude.The gradual,successive decrease in the frequency of Hap 2 from low to high latitudes,with the concurrent increase of Hap 1,demonstrates that these haplotypes have undergone artificial selection.Further FST analysis demonstrated that SiPRR37 has contributed to the ecological adaption of foxtail millet.Additionally,we reveal that OsPRR37 promotes flowering in rice,while GmPRR37 may only inhibit flowering in soybean.Further diurnal expression and transgenic analyses suggest that the dual function of SiPRR37 might depend on SiHd1.Our study uncovered the distinct functional reversal of SiPRR37 and functional diversification of PRR37 homologs in SD crops.These findings not only enrich knowledge about the regulation of photoperiodic flowering,but also contribute to genetic improvement of crops’regional adaptability. 展开更多
关键词 Foxtail millet Photoperiodic flowering Ecological adaption Dual-function siprr37
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谷子SiPRR37基因对光温、非生物胁迫的响应特点及其有利等位变异鉴定 被引量:4
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作者 贾小平 李剑峰 +7 位作者 张博 全建章 王永芳 赵渊 张小梅 王振山 桑璐曼 董志平 《作物学报》 CAS CSCD 北大核心 2021年第4期638-649,共12页
从谷子品种延谷11号克隆生物钟基因SiPRR37,通过生物信息学分析、组织特异性表达分析、4种不同光温组合条件的昼夜表达模式分析以及对NaCl、ABA、PEG、低温、Fe 5种非生物胁迫的响应特点分析,揭示SiPRR37参与谷子光温互作调控以及应对... 从谷子品种延谷11号克隆生物钟基因SiPRR37,通过生物信息学分析、组织特异性表达分析、4种不同光温组合条件的昼夜表达模式分析以及对NaCl、ABA、PEG、低温、Fe 5种非生物胁迫的响应特点分析,揭示SiPRR37参与谷子光温互作调控以及应对非生物胁迫的作用机制;并对160份谷子材料重测序检测SiPRR37基因的突变位点进行单倍型分析,探究该基因对谷子主要农艺性状的影响。结果表明,SiPRR37基因蛋白质编码区(sequence coding for amino acids in protein,CDS)全长2247 bp,编码748个氨基酸,含有REC和CCT 2个结构域,基于PRR37蛋白的系统进化分析发现,谷子与糜子、高粱、玉米亲缘关系最近;启动子预测分析发现,SiPRR37启动子区存在光、温、生长素、赤霉素、脱落酸、茉莉酸甲酯、干旱和盐胁迫等多种应答元件。SiPRR37相对表达量从高到低依次为根、穗颈、穗、顶叶、次顶叶、茎秆;4个光温组合条件SiPRR37均只在光照期出现1个表达峰,无论高温(27℃)还是低温(22℃),短日照相比长日照表达峰均要提前,无论长日照还是短日照,低温(22℃)相比高温(27℃)表达峰均要提前;NaCl、低温(15℃)胁迫能够抑制SiPRR37表达,PEG模拟干旱胁迫和Fe胁迫能够诱导SiPRR37基因表达,SiPRR37参与了ABA信号传导过程。位于SiPRR37 CDS区的10个SNP将160份谷子材料分为19个单倍型,其中3个单倍型(Hap_7、Hap_10、Hap_19)是改善穗部性状的有利单倍型。谷子SiPRR37基因表达具有昼夜节律性,同时受光周期和温度调控,并且参与了谷子对盐胁迫、低温胁迫、干旱胁迫和铁胁迫的应答反应,同时SiPRR37与抽穗期和多个穗部性状相关,在开展谷子高产分子辅助选育中具有一定应用潜力。 展开更多
关键词 谷子 siprr37 光温组合 非生物胁迫 表达分析 单倍型
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