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Auxin-salicylic acid cross-talk ameliorates OsMYB-R1 mediated defense towards heavy metal, drought and fungal stress.
Tiwari, Poonam; Indoliya, Yuvraj; Chauhan, Abhishek Singh; Singh, Puja; Singh, Pradyumna Kumar; Singh, Poonam C; Srivastava, Suchi; Pande, Veena; Chakrabarty, Debasis.
Afiliação
  • Tiwari P; Molecular Biology and Biotechnology Division, CSIR-National Botanical Research Institute, Lucknow 226001, India; Department of Biotechnology, Kumaun University, Nainital 26300, India.
  • Indoliya Y; Molecular Biology and Biotechnology Division, CSIR-National Botanical Research Institute, Lucknow 226001, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.
  • Chauhan AS; Molecular Biology and Biotechnology Division, CSIR-National Botanical Research Institute, Lucknow 226001, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.
  • Singh P; Molecular Biology and Biotechnology Division, CSIR-National Botanical Research Institute, Lucknow 226001, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.
  • Singh PK; Molecular Biology and Biotechnology Division, CSIR-National Botanical Research Institute, Lucknow 226001, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.
  • Singh PC; Division of Microbial Technology, CSIR-National Botanical Research Institute, Lucknow, 226001, India.
  • Srivastava S; Division of Microbial Technology, CSIR-National Botanical Research Institute, Lucknow, 226001, India.
  • Pande V; Department of Biotechnology, Kumaun University, Nainital 26300, India.
  • Chakrabarty D; Molecular Biology and Biotechnology Division, CSIR-National Botanical Research Institute, Lucknow 226001, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India. Electronic address: chakrabartyd@nbri.res.in.
J Hazard Mater ; 399: 122811, 2020 11 15.
Article em En | MEDLINE | ID: mdl-32540701
The MYB TF family is an immensely large and functionally diverse class of proteins involved in the regulation of cell cycle, cell morphogenesis to stress signaling mechanism. The present study deciphered the hormonal cross-talk of wound inducible and stress-responsive OsMYB-R1 transcription factor in combating abiotic [Cr(VI) and drought/PEG] as well as biotic (Rhizoctonia solani) stress. OsMYB-R1 over-expressing rice transgenics exhibit a significant increase in lateral roots, which may be associated with increased tolerance under Cr(VI) and drought exposure. In contrast, its loss-of-function reduces stress tolerance. Higher auxin accumulation in the OsMYB-R1 over-expressed lines further strengthens the protective role of lateral roots under stress conditions. RNA-seq. data reveals over-representation of salicylic acid signaling molecule calcium-dependent protein kinases, which probably activate the stress-responsive downstream genes (Peroxidases, Glutathione S-transferases, Osmotins, Heat Shock Proteins, Pathogenesis Related-Proteins). Enzymatic studies further confirm OsMYB-R1 mediated robust antioxidant system as catalase, guaiacol peroxidase and superoxide dismutase activities were found to be increased in the over-expressed lines. Our results suggest that OsMYB-R1 is part of a complex network of transcription factors controlling the cross-talk of auxin and salicylic acid signaling and other genes in response to multiple stresses by modifying molecular signaling, internal cellular homeostasis and root morphology.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Metais Pesados / Secas Idioma: En Ano de publicação: 2020 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Metais Pesados / Secas Idioma: En Ano de publicação: 2020 Tipo de documento: Article