为研究生长素结合蛋白(Auxin binding protein 1ABP1)与不同苹果砧木缺铁胁迫的关系,通过对铁高效/铁低效苹果基因型苹果砧木在不同铁素浓度下abp1的转录和翻译水平进行检测,结果表明:铁高效苹果基因型的abp1的转录和翻译水平明显高于...为研究生长素结合蛋白(Auxin binding protein 1ABP1)与不同苹果砧木缺铁胁迫的关系,通过对铁高效/铁低效苹果基因型苹果砧木在不同铁素浓度下abp1的转录和翻译水平进行检测,结果表明:铁高效苹果基因型的abp1的转录和翻译水平明显高于铁低效苹果基因型;进而依托拟南芥的不同类型(生态型、突变体型和突变体恢复型)植株,通过检测它们的缺铁应答相关生理指标和铁吸收转运相关基因表达的变化差异,发现拟南芥abp1的突变引发了根三价铁还原酶活性明显升高,根毛数量明显增加,且IRT1、FRO2和FIT基因明显上调表达。综上结果表明ABP1通过影响生长素运输进而影响了植物缺铁胁迫应答反应。展开更多
The phytohormone auxin exerts control over remarkable developmental processes in plants.It moves from cell to cell,resulting in the creation of both extracellular auxin and intracellular auxin,which are recognized by ...The phytohormone auxin exerts control over remarkable developmental processes in plants.It moves from cell to cell,resulting in the creation of both extracellular auxin and intracellular auxin,which are recognized by distinct auxin receptors.These two auxin signaling systems govern different auxin responses while working together to regulate plant development.In this review,we outline the latest research advancements in unraveling these auxin signaling pathways,encompassing auxin perception and signaling transductions.We emphasize the interaction between extracellular and intracellular auxin,which contributes to the intricate role of auxin in plant development.展开更多
文摘为研究生长素结合蛋白(Auxin binding protein 1ABP1)与不同苹果砧木缺铁胁迫的关系,通过对铁高效/铁低效苹果基因型苹果砧木在不同铁素浓度下abp1的转录和翻译水平进行检测,结果表明:铁高效苹果基因型的abp1的转录和翻译水平明显高于铁低效苹果基因型;进而依托拟南芥的不同类型(生态型、突变体型和突变体恢复型)植株,通过检测它们的缺铁应答相关生理指标和铁吸收转运相关基因表达的变化差异,发现拟南芥abp1的突变引发了根三价铁还原酶活性明显升高,根毛数量明显增加,且IRT1、FRO2和FIT基因明显上调表达。综上结果表明ABP1通过影响生长素运输进而影响了植物缺铁胁迫应答反应。
基金supported by the National Natural Science Foundation of China(32130010).
文摘The phytohormone auxin exerts control over remarkable developmental processes in plants.It moves from cell to cell,resulting in the creation of both extracellular auxin and intracellular auxin,which are recognized by distinct auxin receptors.These two auxin signaling systems govern different auxin responses while working together to regulate plant development.In this review,we outline the latest research advancements in unraveling these auxin signaling pathways,encompassing auxin perception and signaling transductions.We emphasize the interaction between extracellular and intracellular auxin,which contributes to the intricate role of auxin in plant development.