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dc.contributor.editorHori, Kiyosumi
dc.contributor.editorShenton, Matthew
dc.date.accessioned2023-01-05T12:34:28Z
dc.date.available2023-01-05T12:34:28Z
dc.date.issued2022
dc.identifierONIX_20230105_9783036549439_52
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/95823
dc.description.abstractThis volume presents recent research achievements concerning the molecular genetic basis of agronomic traits in rice. Rice (Oryza sativa L.) is the most important food crop in the world, being a staple food for more than half of the world’s population. Recent improvements in living standards have increased the worldwide demand for high-yielding and high-quality rice cultivars. To develop novel cultivars with superior agronomic performance, we need to understand the molecular basis of agronomically important traits related to grain yield, grain quality, disease resistance, and abiotic stress tolerance. Decoding the whole rice genome sequence revealed that ,while there are more than 37,000 genes in the ~400 Mbp rice genome, there are only about 3000 genes whose molecular functions are characterized in detail. We collected in this volume the continued research efforts of scholars that elucidate genetic networks and the molecular mechanisms controlling agronomically important traits in rice.
dc.languageEnglish
dc.subject.classificationthema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: generalen_US
dc.subject.classificationthema EDItEUR::P Mathematics and Science::PS Biology, life sciencesen_US
dc.subject.classificationthema EDItEUR::T Technology, Engineering, Agriculture, Industrial processesen_US
dc.subject.othergrain number per panicle
dc.subject.othergrain yield
dc.subject.otherphase transition
dc.subject.otherrachis branch
dc.subject.otherrice panicle
dc.subject.otherspikelet specialisation
dc.subject.otherrice
dc.subject.otherflowering time
dc.subject.otherambient temperature fluctuation
dc.subject.otherchromosome segment substitution line (CSSL)
dc.subject.otherquantitative trait locus (QTL)
dc.subject.otherdrought tolerance
dc.subject.othercold tolerance
dc.subject.otherOryza sativa
dc.subject.otherOsCRP1
dc.subject.otherchloroplast ribonucleoproteins
dc.subject.otherNAD(P)H dehydrogenase (NDH) complex
dc.subject.othernitrogen use efficiency
dc.subject.othertranscriptional regulation
dc.subject.othernitrate reductase
dc.subject.othernitrate transporter
dc.subject.otherglutamate synthase
dc.subject.otherpotassium chlorate
dc.subject.otherQTL
dc.subject.otherfood shortage
dc.subject.otheryield
dc.subject.othergrain size
dc.subject.otherOsBRKq1
dc.subject.othergenome editing
dc.subject.otherhomozygous
dc.subject.otherproteomics
dc.subject.otherC4 rice
dc.subject.otherproto-Kranz
dc.subject.otherphotosynthetic efficiency
dc.subject.othercrop improvement
dc.subject.otherspike-stalk injection
dc.subject.othertranscription factor
dc.subject.otherOsWRKY55
dc.subject.otherdrought response
dc.subject.otherplant growth
dc.subject.otherOsAP2-39
dc.subject.otherinflorescence architecture
dc.subject.otherBLH homedomain protein
dc.subject.otherbranching pattern
dc.subject.otherverticillate primary branch
dc.subject.othertranscriptome analysis
dc.subject.otherhormone pathways
dc.subject.otherjaponica DT3
dc.subject.othersubmergence tolerance
dc.subject.othermarker-assisted backcross
dc.subject.otherforeground selection
dc.subject.otherbackground selection
dc.subject.otherthree-dimensional imaging
dc.subject.othershoot apical meristem
dc.subject.otherroot tip
dc.subject.othern/a
dc.titleMolecular Research in Rice: Agronomically Important Traits 2.0
dc.typebook
oapen.identifier.doi10.3390/books978-3-0365-4944-6
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0
oapen.relation.isbn9783036549439
oapen.relation.isbn9783036549446
oapen.pages182
oapen.place.publicationBasel


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