Serveur d'exploration sur la glutarédoxine - Exploration (Accueil)

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Oryza (microbiologie) < Oryza (métabolisme) < Oryza (physiologie)  Facettes :

List of bibliographic references indexed by Oryza (métabolisme)

Number of relevant bibliographic references: 13.
Ident.Authors (with country if any)Title
000095 (2020) Pankaj Kumar Verma [Inde] ; Shikha Verma [Inde] ; Rudra Deo Tripathi [Inde] ; Debasis Chakrabarty [Inde]A rice glutaredoxin regulate the expression of aquaporin genes and modulate root responses to provide arsenic tolerance.
000290 (2018) Arvind Kumar Dubey [Inde] ; Navin Kumar [Inde] ; Ruma Ranjan [Inde] ; Ambedkar Gautam [Inde] ; Veena Pande [Inde] ; Indraneel Sanyal [Inde] ; Shekhar Mallick [Inde]Application of glycine reduces arsenic accumulation and toxicity in Oryza sativa L. by reducing the expression of silicon transporter genes.
000421 (2016) Evangelia Vamvaka [Espagne] ; Richard M. Twyman [Royaume-Uni] ; Andre Melro Murad [Brésil] ; Stanislav Melnik [Autriche] ; Audrey Yi-Hui Teh [Royaume-Uni] ; Elsa Arcalis [Autriche] ; Friedrich Altmann [Autriche] ; Eva Stoger [Autriche] ; Elibio Rech [Brésil] ; Julian K C. Ma [Royaume-Uni] ; Paul Christou [Espagne] ; Teresa Capell [Espagne]Rice endosperm produces an underglycosylated and potent form of the HIV-neutralizing monoclonal antibody 2G12.
000435 (2016) Pankaj Kumar Verma [Inde] ; Shikha Verma [Inde] ; Alok Kumar Meher [Inde] ; Veena Pande [Inde] ; Shekhar Mallick [Inde] ; Amit Kumar Bansiwal [Inde] ; Rudra Deo Tripathi [Inde] ; Om Parkash Dhankher [États-Unis] ; Debasis Chakrabarty [Inde]Overexpression of rice glutaredoxins (OsGrxs) significantly reduces arsenite accumulation by maintaining glutathione pool and modulating aquaporins in yeast.
000493 (2015) Ehsan Shaykholeslam Esfahani [Iran] ; Azar Shahpiri [Iran]Thioredoxin h isoforms from rice are differentially reduced by NADPH/thioredoxin or GSH/glutaredoxin systems.
000557 (2015) Shigeto Morita [Japon] ; Yuki Yamashita [Japon] ; Masayoshi Fujiki [Japon] ; Rie Todaka [Japon] ; Yuri Nishikawa [Japon] ; Ayaka Hosoki [Japon] ; Chisato Yabe [Japon] ; Jun'Ichi Nakamura [Japon] ; Kazuyoshi Kawamura [Japon] ; I Nengah Suwastika [Japon, Indonésie] ; Masa H. Sato [Japon] ; Takehiro Masumura [Japon] ; Yasunari Ogihara [Japon] ; Kunisuke Tanaka [Japon] ; Shigeru Satoh [Japon]Expression of a rice glutaredoxin in aleurone layers of developing and mature seeds: subcellular localization and possible functions in antioxidant defense.
000811 (2012) Lilan Hong [République populaire de Chine] ; Ding Tang ; Keming Zhu ; Kejian Wang ; Ming Li ; Zhukuan ChengSomatic and reproductive cell development in rice anther is regulated by a putative glutaredoxin.
000A32 (2010) Rohini Garg [Inde] ; Shalu Jhanwar ; Akhilesh K. Tyagi ; Mukesh JainGenome-wide survey and expression analysis suggest diverse roles of glutaredoxin gene family members during development and response to various stimuli in rice.
000B39 (2009) Zhen Wang [Allemagne] ; Shuping Xing ; Rainer P. Birkenbihl ; Sabine ZachgoConserved functions of Arabidopsis and rice CC-type glutaredoxins in flower development and pathogen response.
000B40 (2009) Debasis Chakrabarty [Inde] ; Prabodh Kumar Trivedi ; Prashant Misra ; Manish Tiwari ; Manju Shri ; Devesh Shukla ; Smita Kumar ; Arti Rai ; Ashutosh Pandey ; Deepti Nigam ; Rudra Dev Tripathi ; Rakesh TuliComparative transcriptome analysis of arsenate and arsenite stresses in rice seedlings.
000E33 (2005) Shigefumi Tsukamoto [Japon] ; Shigeto Morita ; Etsuko Hirano ; Hideki Yokoi ; Takehiro Masumura ; Kunisuke TanakaA novel cis-element that is responsive to oxidative stress regulates three antioxidant defense genes in rice.
000F48 (2003) Nicolas Rouhier [France] ; Alexios Vlamis-Gardikas ; Christopher Horst Lillig ; Carsten Berndt ; Jens-Dirk Schwenn ; Arne Holmgren ; Jean-Pierre JacquotCharacterization of the redox properties of poplar glutaredoxin.
001251 (1994) K. Minakuchi [Japon] ; T. Yabushita ; T. Masumura ; K. Ichihara ; K. TanakaCloning and sequence analysis of a cDNA encoding rice glutaredoxin.

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