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Wheat LEA genes, PMA80 and PMA1959, enhance dehydration tolerance of transgenic rice ( Oryza sativa L.).

152519 Wheat LEA genes, PMA80 and PMA1959, enhance dehydration tolerance of transgenic rice ( Oryza sativa L.). http://people.sabanciuniv.edu/~nergen/Project%20related/Manuscripts/2002_Wu.pdf R. of China; 3 Monsanto Enterprises, No. 277 INBRI, Chowdaiah Road, Malleshwaram, Bangalore, 560 004, India; *Author for correspondence (e-mail: ray.wu@cornell. Agriculture > Crops > Rice > Science transgenic   rice   dehydration   stress   salt   shoot   weight   plant   plants   tolerance   transgene Jan 1, 2006  

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Other links at Agriculture > Crops > Rice > Science

Department of Plant Sciences, University of California, One Shields Avenue, Davis, CA 95616, USA BMC Evolutionary Biology 2005, 5:72 doi:10.
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The authors present a genome-wide computational approach to detect miRNA genes in the Oryza sativa genome.
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R. of China; 3 Monsanto Enterprises, No. 277 INBRI, Chowdaiah Road, Malleshwaram, Bangalore, 560 004, India; *Author for correspondence (e-mail: ray.wu@cornell.
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Stability of Rice yellow mottle virus and Cellular Compartmentalization during the Infection Process in Oryza sativa (L.) Christophe Brugidou,*, ,1 Natacha Opalka,*,2 Mark Yeager,! Roger N.
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Try a search in the search box above - The NLM Gateway searches multiple retrieval systems at the U.S. National Library of Medicine. The resources the Gateway searches include consumer health information, journal citations, the NLM library catalogue, and meeting abstracts.
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Here, a novel polymerase chain reaction (PCR) based RNAi vector pTCK303 with a maize ubiquitin promoter, 2 specific multiple enzyme sites, and a rice intron was constructed for monocot gene silencing.
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The authors proposed that differentially-expressed genes, aside from genetic variations affecting protein processing and functioning, between hybrid and its parents provide essential candidates for studying heterosis or hybrid vigor.
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BIOLOGICAL SCIENCES / AGRICULTURAL SCIENCES Complex genetic networks underlying the defensive system of rice (Oryza sativa L.) to Xanthomonas oryzae pv. oryzae
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Skip to content. | Skip to navigation Site Map Accessibility Contact Search Site only in current section Advanced Search& Sections HOME RESEARCH PUBLICATIONS PERSONNEL TEACHING LINKS Personal tools Log in You are here: Home ’ LINKS ’ art ’ Oryza sativa L. RESEARCH Our Mission Research
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This consensus document addresses compositional considerations for new varieties of rice by identifying the key food and feed nutrients and anti-nutrients.
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