期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
NAC Transcription Factor ORE1 and Senescence- Induced BIFUNCTIONAL NUCLEASE1 (BFN1) Constitute a Regulatory Cascade in Arabidopsis 被引量:8
1
作者 Lilian R Matallana-Ramirez Mamoona Rauf +6 位作者 Sarit Farage-Barhom Hakan Dortay Gang-Ping Xue Wolfgang Droge-Laser Amnon Lers Salma Balazadeh Bernd Mueller-Roeber 《Molecular Plant》 SCIE CAS CSCD 2013年第5期1438-1452,共15页
Senescence is a highly regulated process that involves the action of a large number of transcription factors. The NAC transcription factor ORE1 (ANAC092) has recently been shown to play a critical role in positively... Senescence is a highly regulated process that involves the action of a large number of transcription factors. The NAC transcription factor ORE1 (ANAC092) has recently been shown to play a critical role in positively controlling senescence in Arabidopsis thaliana; however, no direct target gene through which it exerts its molecular function has been identified previously. Here, we report that BIFUNCTIONAL NUCLEASE1 (BFN1), a well-known senescence-enhanced gene, is directly regulated by ORE1. We detected elevated expression of BFN1 already 2 h after induction of ORE1 in estradiol-inducible ORE1 overexpression lines and 6 h after transfection of Arabidopsis mesophyll cell protoplasts with a 35S:ORE1 construct, ORE1 and BFN1 expression patterns largely overlap, as shown by promoter-reporter gene (GUS) fusions, while BFN1 expression in senescent leaves and the abscission zones of maturing flower organs was virtually absent in ore1 mutant background. In vitro binding site assays revealed a bipartite ORE1 binding site, similar to that of ORS1, a paralog of ORE1. A bipartite ORE1 binding site was identified in the BFN1 promoter; mutating the cis-element within the context of the full-length BFN1 promoter drastically reduced OREl-mediated transactivation capacity in tran- siently transfected Arabidopsis mesophyll cell protoplasts. Furthermore, chromatin immunoprecipitation (CHIP) demon- strates in vivo binding of ORE1 to the BFN1 promoter. We also demonstrate binding of ORE1 in vivo to the promoters of two other senescence-associated genes, namely SAG29/SWEET15 and SINA1, supporting the central role of ORE1 during senescence. 展开更多
关键词 Arabidopsis thaliana SENESCENCE transcription factor ORE1 bfn1 promoter.
原文传递
Localization of the Arabidopsis Senescence- and Cell Death-Associated BFN1 Nuclease: From the ER to Fragmented Nuclei 被引量:5
2
作者 Sarit Farage-Barhom Shaul Burd +4 位作者 Lilian Sonego Ana Mett Eduard Belausov David Gidoni Amnon Lers 《Molecular Plant》 SCIE CAS CSCD 2011年第6期1062-1073,共12页
Plant senescence- or PCD-associated nucleases share significant homology with nucleases from different organisms. However, knowledge of their function is limited. Intracellular localization of the Arabidopsis senescen... Plant senescence- or PCD-associated nucleases share significant homology with nucleases from different organisms. However, knowledge of their function is limited. Intracellular localization of the Arabidopsis senescence- and PCD-associated nuclease BFN1 was investigated. Analysis of BFN1-GFP localization in transiently transformed tobacco protoplasts revealed initial localization in filamentous structures spread throughout the cytoplasm, which then clustered around the nuclei as the protoplasts senesced. These filamentous structures were identified as being of ER origin. In BFN1- GFP-transgenicArabidopsis plants, similar localization of BFN1-GFP was observed in young leaves, that is, in filamentous structures that reorganized around the nuclei only in senescing cells. In late senescence, BFN1-GFP was localized with fragmented nuclei in membrane-wrapped vesicles. BFNI's postulated function as a nucleic acid-degrading enzyme in senescence and PCD is supported by its localization pattern. Our results suggest the existence of a dedicated compartment mediating nucleic acid degradation in senescence and PCD processes. 展开更多
关键词 bfn1 endoplasmic reticulum NUCLEASE nuclear DNA programmed cell death SENESCENCE sub-cellular localization.
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部