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Genetic Engineering in Rice Plants
1994Recently, gene transfer into higher plants has made it possible to analyse foreign gene expression in transgenic rice plants. We have constructed a chimeric gene consisting of the promoter, 1st exon, and 1st intron of a maize polyubiquitin gene (Ubi-1) and the coding sequence of the bar gene from Streptomyces hygroscopicus.
Seiichi Toki, Hirofumi Uchimiya
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A novel approach for rice plant diseases classification with deep convolutional neural network
International journal of information technology, 2021Santosh Kumar Upadhyay, Avadhesh Kumar
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Construction of rice cybrid plants
Molecular and General Genetics MGG, 1989The mitochondrial genomes of rice cells were transferred to a fertile rice variety (N8) from a cytoplasmic male sterile variety (CMS) by asymmetric protoplast fusion based on metabolic complementation. Protoplasts derived from CMS were X-irradiated (125 krad) and electrofused with protoplasts which had been treated with iodoacetamide.
Hiromori Akagi+3 more
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Nature Genetics, 2010
Two studies describe how regulatory variation at the rice gene OsSPL14 can lead to altered plant morphology and improve grain yield. These studies support the possibility of improving rice yield through changing plant architecture.
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Two studies describe how regulatory variation at the rice gene OsSPL14 can lead to altered plant morphology and improve grain yield. These studies support the possibility of improving rice yield through changing plant architecture.
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Transformation of rice plants by plant reovirus genes
Seminars in Virology, 1995Abstract Rice dwarf phytoreovirus (RDV), and rice ragged stunt oryzairus (RRSV) genes were introduced into rice protoplasts by using the cauliflower mosaic virus 35S promoter, tissue culture techniques and electroporation. The translation products of cDNA to RDV segment 8 were detected in transformed rice. Plants transgenic for RRSV S9 also expressed
Noriko Tabayashi, Takeshi Matsumura
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Importance of Thioarsenates for Rice Plants
2020Rice (Oryza sativa L.) is a staple food for more than half of the world’s population; however, it accumulates 10 times more toxic arsenic (As) in its grains than other cereals. Arsenic is ubiquitously present in the environment and mobilized in paddy fields during reductive dissolution of iron (Fe)-minerals under anoxic conditions in flooded paddy ...
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Rice plant disease classification using color features: a machine learning paradigm
Journal of plant pathology, 2020V. K. Shrivastava, M. K. Pradhan
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Image processing based rice plant leaves diseases in Thanjavur, Tamilnadu
Cluster Computing, 2018T. Gayathri Devi, P. Neelamegam
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Detection and classification of rice plant diseases
International Journal of Intelligent Decision Technologies, 2018Harshad B. Prajapati+2 more
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