WRKYs are transcriptional factors involved in stress tolerance and development of plants. In the present study, we characterized OsWRKY28, a group IIa WRKY gene, in rice, because its expression was found to be upregulated by arsenate exposure in previous transcriptomic studies. Subcellular localization using YFP–OsWRKY28 fusion protein showed that the protein was localized in the nuclei. Transgenic rice plants expressing pOsWRKY28::GUS suggested that the gene was expressed in various tissues in the whole plant, with a strong expression in the root tips, lateral roots and reproductive organs. The expression of OsWRKY28 was markedly induced by arsenate and other oxidative stresses. In a hydroponic experiment, loss-of-function mutation in OsWR...
OsWRKY47 is a divergent rice transcription factor belonging to the group II of the WRKY family. A tr...
Abstract Background WRKY proteins are one of the largest gene families and are well-known for their ...
The effects of phosphorus (P) status on arsenate reductase gene (OsACR2.1) expression, arsenate redu...
WRKYs are transcriptional factors involved in stress tolerance and development of plants. In the pre...
WRKYs are transcriptional factors involved in stress tolerance and development of plants. In the pre...
The WRKY transcription factor family has 109 members in the rice genome, and has been reported to be...
WRKY transcription factors are critical for plant growth, development, and adaptation to stress. Thi...
The WRKY proteins are a superfamily of regulators that control diverse developmental and physiologic...
Abstract: WRKY genes encode plant specific transcription factors that have been extensively studie...
UMR BGPI - Equipe 4National audienceWRKYs constitute a large familiy of transcription factors (more ...
Salt stress is a critical limiting factor for rice growth and production. Although numerous salt-tol...
WRKY gene family encode for transcription factors characterized by having one or two ~60 as consensu...
Abstract Arsenic (As) is considered the most common toxic metalloid, but its molecular mode of actio...
Although 109 WRKY genes have been identified in the rice genome, the functions of most are unknown. ...
WRKY transcription factors regulate diverse plant processes including responses to biotic stresses. ...
OsWRKY47 is a divergent rice transcription factor belonging to the group II of the WRKY family. A tr...
Abstract Background WRKY proteins are one of the largest gene families and are well-known for their ...
The effects of phosphorus (P) status on arsenate reductase gene (OsACR2.1) expression, arsenate redu...
WRKYs are transcriptional factors involved in stress tolerance and development of plants. In the pre...
WRKYs are transcriptional factors involved in stress tolerance and development of plants. In the pre...
The WRKY transcription factor family has 109 members in the rice genome, and has been reported to be...
WRKY transcription factors are critical for plant growth, development, and adaptation to stress. Thi...
The WRKY proteins are a superfamily of regulators that control diverse developmental and physiologic...
Abstract: WRKY genes encode plant specific transcription factors that have been extensively studie...
UMR BGPI - Equipe 4National audienceWRKYs constitute a large familiy of transcription factors (more ...
Salt stress is a critical limiting factor for rice growth and production. Although numerous salt-tol...
WRKY gene family encode for transcription factors characterized by having one or two ~60 as consensu...
Abstract Arsenic (As) is considered the most common toxic metalloid, but its molecular mode of actio...
Although 109 WRKY genes have been identified in the rice genome, the functions of most are unknown. ...
WRKY transcription factors regulate diverse plant processes including responses to biotic stresses. ...
OsWRKY47 is a divergent rice transcription factor belonging to the group II of the WRKY family. A tr...
Abstract Background WRKY proteins are one of the largest gene families and are well-known for their ...
The effects of phosphorus (P) status on arsenate reductase gene (OsACR2.1) expression, arsenate redu...