None Jing Li
- Batley Group - Academic, The University Of Western Australia
- group: unknown
Contact Info:
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| Year | Publication | Online |
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2019
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(2019)
Arabidopsis TRM5 encodes a nuclear-localised bifunctional tRNA guanine and inosine-N1-methyltransferase that is important for growth.
PLoS One
14(11):e0225064.
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2019
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(2019)
One thousand plant transcriptomes and the phylogenomics of green plants
NATURE
574(7780):679-685.
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2017
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(2017)
Transcriptome-Wide Mapping of RNA 5-Methylcytosine in Arabidopsis mRNAs and Noncoding RNAs.
Plant Cell
29(3):445-460.
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2014
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(2014)
Small kernel1 encodes a pentatricopeptide repeat protein required for mitochondrial nad7 transcript editing and seed development in maize and rice.
PLANT J.
79(5):797-809.
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2014
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(2014)
Signalling and responses to strigolactones and karrikins.
Curr Opin Plant Biol
21:23-29.
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2014
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(2014)
Regulation of the cholesterol biosynthetic pathway and its integration with fatty acid biosynthesis in the oleaginous microalga Nannochloropsis oceanica.
Biotechnol Biofuels
7:81.
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2014
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(2014)
The Os-AKT1 channel is critical for K+ uptake in rice roots and is modulated by the rice CBL1-CIPK23 complex.
Plant Cell
26(8):3387-402.
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2011
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(2011)
RNA interference in Lepidoptera: an overview of successful and unsuccessful studies and implications for experimental design.
J Insect Physiol
57(2):231-45.
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2010
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(2010)
The gene encoding the catalytically inactive beta-amylase BAM4 involved in starch breakdown in Arabidopsis leaves is expressed preferentially in vascular tissues in source and sink organs.
J Plant Physiol
167(11):890-5.
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2009
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(2009)
Catalytically-inactive beta-amylase BAM4 required for starch breakdown in Arabidopsis leaves is a starch-binding-protein.
Arch Biochem Biophys
489(1-2):92-8.
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2008
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(2008)
Beta-AMYLASE4, a noncatalytic protein required for starch breakdown, acts upstream of three active beta-amylases in Arabidopsis chloroplasts.
Plant Cell
20(4):1040-58.
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2007
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(2007)
Glucan, water dikinase activity stimulates breakdown of starch granules by plastidial beta-amylases.
Plant Physiol
145(1):17-28.
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647