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Titlebook: Rice Genomics, Genetics and Breeding; Takuji Sasaki,Motoyuki Ashikari Book 2018 Springer Nature Singapore Pte Ltd. 2018 GWAS.Rice genome e

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Genetics and Breeding of Flooding Tolerance in Rice, under future climate change scenarios, which will greatly impact rice production. Different flooding patterns can cause damage or complete yield loss in rice plants at different stages of growth. This includes (a) complete submergence due to flash flood at vegetative or pre-flowering stages, (b) st
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The Gene Network That Regulates Salt Tolerance in Rice,molecular mechanisms of rice dealing with salt stress. Taking advantage of genetics, transcriptome studies, and forward genetics, hundreds of genes involved in salt tolerance or salt stress response have been identified. According to their functions, these genes could be divided into at least three
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Cold and Water Deficit Regulatory Mechanisms in Rice: Optimizing Stress Tolerance Potential by Path ideal combinations of multiple interacting entities in a genetic network. This chapter presents a modern view for engineering stress-resilient rice cultivars. The first section summarizes the physiological and biochemical aspects of cold and water deficit at the whole-plant and cellular levels. The
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Pathogen Recognition and Immune Signaling,espectively. Recent studies on the interaction between rice and these pathogens provided important knowledges of the molecular mechanisms of rice immune responses such as receptor-mediated pathogen recognition, host immune signaling, and pathogen effector-mediated susceptibility. So far, many diseas
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Interaction of Rice and , TAL Effectors,ll-known as a model for studying host/microbe interaction. TALEs (transcription activator-like effectors), as a group of pathogenesis factors and once translocated into the host cells from pathogen, recognize and activate host genes to condition disease susceptibility and also trigger host resistanc
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Rice Organelle Genomics: Approaches to Genetic Engineering and Breeding,c engineering of organelle genomes is one of the promising approaches. However, modifying the mitochondrial or plastid genomes in rice is presently impossible or difficult. Here, we discuss the characteristic features of these genomes and recent attempts at plastid transformation.
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The Gene Network That Regulates Salt Tolerance in Rice,sis, and ROS scavengers. Based on these knowledges and those obtained from ., this review summarizes these findings and tries to draw a rough picture of the gene networks controlling salt tolerance of rice.
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