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在一个抑制对红光敏感性的突变体中鉴定到的新型开花时间调节剂 HDF1 可使拟南芥早开花。

HDF1, a novel flowering time regulator identified in a mutant suppressing sensitivity to red light reduced 1 early flowering.

机构信息

RNA Biology and Molecular Physiology, Bielefeld University, Universitaetsstrasse 25, 33615, Bielefeld, Germany.

出版信息

Sci Rep. 2023 Jan 25;13(1):1404. doi: 10.1038/s41598-023-28049-6.

Abstract

Arabidopsis SENSITIVITY TO RED LIGHT REDUCED 1 (SRR1) delays the transition from vegetative to reproductive development in noninductive conditions. A second-site suppressor screen for novel genes that overcome early flowering of srr1-1 identified a range of suppressor of srr1-1 mutants flowering later than srr1-1 in short photoperiods. Here, we focus on mutants flowering with leaf numbers intermediate between srr1-1 and Col. Ssm67 overcomes srr1-1 early flowering independently of day-length and ambient temperature. Full-genome sequencing and linkage mapping identified a causative SNP in a gene encoding a Haloacid dehalogenase superfamily protein, named HAD-FAMILY REGULATOR OF DEVELOPMENT AND FLOWERING 1 (HDF1). Both, ssm67 and hdf1-1 show increased levels of FLC, indicating that HDF1 is a novel regulator of this floral repressor. HDF1 regulates flowering largely independent of SRR1, as the effect is visible in srr1-1 and in Col, but full activity on FLC may require SRR1. Furthermore, srr1-1 has a delayed leaf initiation rate that is dependent on HDF1, suggesting that SRR1 and HDF1 act together in leaf initiation. Another mutant flowering intermediate between srr1-1 and wt, ssm15, was identified as a new allele of ARABIDOPSIS SUMO PROTEASE 1, previously implicated in the regulation of FLC stability.

摘要

拟南芥红光敏感性降低 1 型(SRR1)在非诱导条件下延迟从营养生长到生殖生长的转变。为了鉴定克服 srr1-1 早期开花的新基因的第二座位抑制子筛选,鉴定了一系列在短光照条件下比 srr1-1 开花晚的 srr1-1 突变体的抑制子。在这里,我们专注于比 srr1-1 和 Col 具有中间叶片数的突变体开花。Ssm67 独立于日长和环境温度克服 srr1-1 的早期开花。全基因组测序和连锁图谱将一个编码卤代酸脱卤酶超家族蛋白的基因中的一个致病 SNP 确定为 HAD-FAMILY REGULATOR OF DEVELOPMENT AND FLOWERING 1(HDF1)。ssm67 和 hdf1-1 均显示出 FLC 水平升高,表明 HDF1 是这种花抑制物的新调节剂。HDF1 的开花调节在很大程度上独立于 SRR1,因为在 srr1-1 和 Col 中都可以看到这种效果,但对 FLC 的充分活性可能需要 SRR1。此外,srr1-1 的叶片起始率延迟,这依赖于 HDF1,表明 SRR1 和 HDF1 在叶片起始中共同作用。另一个突变体 ssm15 介于 srr1-1 和 wt 之间,被鉴定为拟南芥 SUMO 蛋白酶 1 的一个新等位基因,该基因先前被认为参与 FLC 稳定性的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/313a/9876914/e68fc05e2d55/41598_2023_28049_Fig1_HTML.jpg

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