The SEEL motif and members of the MYB-related REVEILLE transcription factor family are important for the expression of LORELEI in the synergid cells of the Arabidopsis female gametophyte.

IF 2.4 4区 生物学 Q2 PLANT SCIENCES Plant Reproduction Pub Date : 2022-03-01 Epub Date: 2021-10-29 DOI:10.1007/s00497-021-00432-1
Jennifer A Noble, Alex Seddon, Sahra Uygun, Ashley Bright, Steven E Smith, Shin-Han Shiu, Ravishankar Palanivelu
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引用次数: 2

Abstract

Synergid cells in the micropylar end of the female gametophyte are required for critical cell-cell signaling interactions between the pollen tube and the ovule that precede double fertilization and seed formation in flowering plants. LORELEI (LRE) encodes a putative GPI-anchored protein that is expressed primarily in the synergid cells, and together with FERONIA, a receptor-like kinase, it controls pollen tube reception by the receptive synergid cell. Still, how LRE expression is controlled in synergid cells remains poorly characterized. We identified candidate cis-regulatory elements enriched in LRE and other synergid cell-expressed genes. One of the candidate motifs ('TAATATCT') in the LRE promoter was an uncharacterized variant of the Evening Element motif that we named as the Short Evening Element-like (SEEL) motif. Deletion or point mutations in the SEEL motif of the LRE promoter resulted in decreased reporter expression in synergid cells, demonstrating that the SEEL motif is important for expression of LRE in synergid cells. Additionally, we found that LRE expression is decreased in the loss of function mutants of REVEILLE (RVE) transcription factors, which are clock genes known to bind the SEEL and other closely related motifs. We propose that RVE transcription factors regulate LRE expression in synergid cells by binding to the SEEL motif in the LRE promoter. Identification of cis-regulatory elements and transcription factors involved in the expression of LRE will serve as a foundation to characterize the gene regulatory networks in synergid cells.

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SEEL基序和myb相关的REVEILLE转录因子家族成员对拟南芥雌性配子体协同细胞中LORELEI的表达很重要。
在开花植物中,花粉管和胚珠之间的信号相互作用在双受精和种子形成之前是至关重要的,雌性配子体微孔端的协同细胞是必需的。LORELEI (LRE)编码一种假定的gpi锚定蛋白,该蛋白主要在协同细胞中表达,并与FERONIA(一种受体样激酶)一起控制受体协同细胞的花粉管接收。尽管如此,LRE在协同细胞中的表达是如何被控制的仍然没有明确的特征。我们确定了在LRE和其他协同细胞表达基因中富集的候选顺式调控元件。LRE启动子中的一个候选基序(TAATATCT)是Evening Element基序的一个未表征的变体,我们将其命名为Short Evening Element-like (SEEL)基序。LRE启动子的SEEL基序缺失或点突变导致协同细胞中报告基因表达下降,表明SEEL基序对协同细胞中LRE的表达很重要。此外,我们发现在REVEILLE (RVE)转录因子的功能缺失突变体中LRE的表达减少,RVE是已知结合SEEL和其他密切相关基序的时钟基因。我们提出RVE转录因子通过结合LRE启动子中的SEEL基序来调节LRE在协同细胞中的表达。鉴定参与LRE表达的顺式调控元件和转录因子将作为表征协同细胞中基因调控网络的基础。
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来源期刊
Plant Reproduction
Plant Reproduction PLANT SCIENCES-REPRODUCTIVE BIOLOGY
CiteScore
6.30
自引率
2.90%
发文量
19
期刊介绍: Plant Reproduction (formerly known as Sexual Plant Reproduction) is a journal devoted to publishing high-quality research in the field of reproductive processes in plants. Article formats include original research papers, expert reviews, methods reports and opinion papers. Articles are selected based on significance for the field of plant reproduction, spanning from the induction of flowering to fruit development. Topics incl … show all
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