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Genome-wide expression analysis of rice aquaporin genes and development of a functional gene network mediated by aquaporin expression in roots.
- Published in:
- Planta: An International Journal of Plant Biology, 2013, v. 238, n. 4, p. 669, doi. 10.1007/s00425-013-1918-9
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- Article
CTP synthase is essential for early endosperm development by regulating nuclei spacing.
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- Plant Biotechnology Journal, 2021, v. 19, n. 11, p. 2177, doi. 10.1111/pbi.13644
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- Article
Deficiency of rice hexokinase HXK5 impairs synthesis and utilization of starch in pollen grains and causes male sterility.
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- Journal of Experimental Botany, 2020, v. 71, n. 1, p. 116, doi. 10.1093/jxb/erz436
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- Article
Rice OGR1 encodes a pentatricopeptide repeat–DYW protein and is essential for RNA editing in mitochondria.
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- Plant Journal, 2009, v. 59, n. 5, p. 738, doi. 10.1111/j.1365-313X.2009.03909.x
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- Article
The rice heterochronic gene SUPERNUMERARY BRACT regulates the transition from spikelet meristem to floral meristem.
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- Plant Journal, 2007, v. 49, n. 1, p. 64, doi. 10.1111/j.1365-313X.2006.02941.x
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- Article
Genome-wide analysis of root hair-preferential genes in rice.
- Published in:
- Rice (19398425), 2018, v. 11, n. 1, p. 1, doi. 10.1186/s12284-018-0241-2
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- Article
Genome-wide analyses of late pollen-preferred genes conserved in various rice cultivars and functional identification of a gene involved in the key processes of late pollen development.
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- Rice (19398425), 2018, v. 11, n. 1, p. 1, doi. 10.1186/s12284-018-0219-0
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- Article
OsMTD2‐mediated reactive oxygen species (ROS) balance is essential for intact pollen‐tube elongation in rice.
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- Plant Journal, 2021, v. 107, n. 4, p. 1131, doi. 10.1111/tpj.15373
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- Article
GORI, encoding the WD40 domain protein, is required for pollen tube germination and elongation in rice.
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- Plant Journal, 2021, v. 105, n. 6, p. 1645, doi. 10.1111/tpj.15139
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- Article
CAFRI‐Rice: CRISPR applicable functional redundancy inspector to accelerate functional genomics in rice.
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- Plant Journal, 2020, v. 104, n. 2, p. 532, doi. 10.1111/tpj.14926
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- Article
The rice gene DEFECTIVE TAPETUM AND MEIOCYTES 1 ( DTM1) is required for early tapetum development and meiosis.
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- Plant Journal, 2012, v. 70, n. 2, p. 256, doi. 10.1111/j.1365-313X.2011.04864.x
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- Article
Meta-expression analysis of unannotated genes in rice and approaches for network construction to suggest the probable roles.
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- Plant Molecular Biology, 2018, v. 96, n. 1-2, p. 17, doi. 10.1007/s11103-017-0675-8
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- Article
Genome-wide identification and analysis of rice genes preferentially expressed in pollen at an early developmental stage.
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- Plant Molecular Biology, 2016, v. 92, n. 1-2, p. 71, doi. 10.1007/s11103-016-0496-1
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- Article
Phosphate-Starvation-Inducible S-Like RNase Genes in Rice Are Involved in Phosphate Source Recycling by RNA Decay.
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- Frontiers in Plant Science, 2020, v. 11, p. 1, doi. 10.3389/fpls.2020.585561
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- Article
A web-based tool for the prediction of rice transcription factor function.
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- Database: The Journal of Biological Databases & Curation, 2019, v. 2019, p. N.PAG, doi. 10.1093/database/baz061
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- Article
Gibberellic acid sensitive dwarf encodes an ARPC2 subunit that mediates gibberellic acid biosynthesis, effects to grain yield in rice.
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- Frontiers in Plant Science, 2022, v. 13, p. 1, doi. 10.3389/fpls.2022.1027688
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- Article
Rice Peptide Deformylase PDF1B is Crucial for Development of Chloroplasts.
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- Plant & Cell Physiology, 2008, v. 49, n. 10, p. 1536, doi. 10.1093/pcp/pcn121
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- Article
Identification of Active Transposon dTok, a Member of the hAT Family, in Rice.
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- Plant & Cell Physiology, 2006, v. 47, n. 11, p. 1473, doi. 10.1093/pcp/pcl012
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- Article
OsSNDP3 Functions for the Polar Tip Growth in Rice Pollen Together with OsSNDP2, a Paralog of OsSNDP3.
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- Rice (19398425), 2022, v. 15, n. 1, p. 1, doi. 10.1186/s12284-022-00586-0
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- Article
Expression analysis of two rice pollen-specific promoters using homologous and heterologous systems.
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- Plant Biotechnology Reports, 2015, v. 9, n. 5, p. 297, doi. 10.1007/s11816-015-0365-4
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- Article
Comparative transcriptome analysis of pollen and anther wall reveals novel insights into the regulatory mechanisms underlying anther wall development and its dehiscence in rice.
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- Plant Cell Reports, 2022, v. 41, n. 5, p. 1229, doi. 10.1007/s00299-022-02852-3
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- Article
A myosin XI adaptor, TAPE, is essential for pollen tube elongation in rice.
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- Plant Physiology, 2022, v. 190, n. 1, p. 562, doi. 10.1093/plphys/kiac299
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- Article
A Multiprotein Complex Regulates Interference-Sensitive Crossover Formation in Rice.
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- Plant Physiology, 2019, v. 181, n. 1, p. 221, doi. 10.1104/pp.19.00082
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- Article
RSL Class II Transcription Factors Guide the Nuclear Localization of RHL1 to Regulate Root Hair Development.
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- Plant Physiology, 2019, v. 179, n. 2, p. 558, doi. 10.1104/pp.18.01002
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- Article
Defective Tapetum Cell Death 1 (DTC1) Regulates ROS Levels by Binding to Metallothionein during Tapetum Degeneration.
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- Plant Physiology, 2016, v. 170, n. 3, p. 1611, doi. 10.1104/pp.15.01561
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- Article
Rice GLYCOSYLTRANSFERASE1 Encodes a Glycosyltransferase Essential for Pollen Wall Formation.
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- Plant Physiology, 2013, v. 161, n. 2, p. 663, doi. 10.1104/pp.112.210948
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- Article
The MYB-CC Transcription Factor PHOSPHATE STARVATION RESPONSE-LIKE 7 (PHL7) Functions in Phosphate Homeostasis and Affects Salt Stress Tolerance in Rice.
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- Plants (2223-7747), 2024, v. 13, n. 5, p. 637, doi. 10.3390/plants13050637
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- Article
First Steps in the Successful Fertilization of Rice and Arabidopsis: Pollen Longevity, Adhesion and Hydration.
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- Plants (2223-7747), 2020, v. 9, n. 8, p. 956, doi. 10.3390/plants9080956
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- Article
OsbHLH073 Negatively Regulates Internode Elongation and Plant Height by Modulating GA Homeostasis in Rice.
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- Plants (2223-7747), 2020, v. 9, n. 4, p. 547, doi. 10.3390/plants9040547
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- Article
Fast Track to Discover Novel Promoters in Rice.
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- Plants (2223-7747), 2020, v. 9, n. 1, p. 1, doi. 10.3390/plants9010125
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- Article
PRX102 Participates in Root Hairs Tip Growth of Rice.
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- Rice (19398425), 2023, v. 16, n. 1, p. 1, doi. 10.1186/s12284-023-00668-7
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- Article
OsMYB58 Negatively Regulates Plant Growth and Development by Regulating Phosphate Homeostasis.
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- International Journal of Molecular Sciences, 2024, v. 25, n. 4, p. 2209, doi. 10.3390/ijms25042209
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- Article