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早花3(ELF3)抑制光照下生长的幼苗下胚轴的向光性。

Early Flowering 3 (ELF3) Inhibits Hypocotyl Phototropism in Light-Grown Seedlings.

作者信息

Cobb Geoffrey M C, Krahmer Johanna, Nawkar Ganesh M, Boccaccini Alessandra, Paulišić Sandi, Fankhauser Christian

机构信息

Centre for Integrative Genomics, Faculty of Biology and Medicine, Genopode Building University of Lausanne Lausanne Switzerland.

Department of Plant and Environmental Sciences University of Copenhagen Frederiksberg C Denmark.

出版信息

Plant Direct. 2025 Sep 23;9(9):e70107. doi: 10.1002/pld3.70107. eCollection 2025 Sep.

Abstract

Phototropic bending of plants towards a light source allows them to position their photosynthetic tissues to optimize light capture. In light-grown (de-etiolated) seedlings, phototropic bending of the hypocotyl is inhibited by light with a high red:far-red ratio (HRFR) and high levels of blue light (HBL). This occurs via activation of the phytochrome B (phyB) and cryptochrome 1 (cry1) photoreceptor signaling pathways. Both phyB and cry1 act upstream of PHYTOCHROME INTERACTING FACTOR (PIF) transcription factors, which are required for hypocotyl bending in light-grown seedlings. Presently, it is not known whether other pathways are involved in the inhibition of PIF-mediated phototropism in light-grown seedlings. To address this, we conducted a screen to identify mutants with increased phototropic bending relative to wild type in HRFR + HBL conditions. Through this screen, we identified EARLY FLOWERING 3 (ELF3), a member of the Evening Complex (EC), as a key inhibitor of phototropic bending in green seedlings. We show that both ELF3 and LUX, another component of the EC, inhibit phototropic bending upstream of PIF4/PIF5. Furthermore, we show that phototropic bending in seedlings is subject to circadian regulation in an ELF3-dependent manner. Finally, we provide evidence that ELF3 in the grass also affects phototropism but in an opposite way than in .

摘要

植物向光源的向光性弯曲使其能够定位光合组织以优化光捕获。在光照生长(去黄化)的幼苗中,下胚轴的向光性弯曲受到高红:远红比率(HRFR)的光和高水平蓝光(HBL)的抑制。这是通过激活植物色素B(phyB)和隐花色素1(cry1)光受体信号通路发生的。phyB和cry1都作用于光形态建成调控因子(PIF)转录因子的上游,而PIF转录因子是光照生长的幼苗下胚轴弯曲所必需的。目前,尚不清楚其他途径是否参与光照生长的幼苗中PIF介导的向光性抑制。为了解决这个问题,我们进行了一项筛选,以鉴定在HRFR + HBL条件下相对于野生型具有增强的向光性弯曲的突变体。通过这个筛选,我们鉴定出早花3(ELF3),它是夜复合物(EC)的成员,是绿色幼苗向光性弯曲的关键抑制剂。我们表明,ELF3和EC的另一个组分LUX都在PIF4/PIF5的上游抑制向光性弯曲。此外,我们表明幼苗中的向光性弯曲以ELF3依赖的方式受到昼夜节律调节。最后,我们提供证据表明禾本科植物中的ELF3也影响向光性,但作用方式与[未提及的植物]相反。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/113b/12455371/ec6cd6463ff1/PLD3-9-e70107-g001.jpg

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