Cultivar variation in hormone- and sugar-response reveals abscisic acid-responsive sucrose phloem loading at the early regenerative stage is a significant determinant of seed yield in Brassica napus
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Sanghyun Park | Bok-Rye Lee | Tae-Hwan Kim | D. Bae | V. La | Md Tabibul Islam | H. Lee
[1] Sanghyun Park,et al. Antagonistic shifting from abscisic acid- to salicylic acid-mediated sucrose accumulation contributes to drought tolerance in Brassica napus , 2019, Environmental and Experimental Botany.
[2] I. Hara-Nishimura,et al. A Genotypic Comparison Reveals That the Improvement in Nitrogen Remobilization Efficiency in Oilseed Rape Leaves Is Related to Specific Patterns of Senescence-Associated Protease Activities and Phytohormones , 2019, Front. Plant Sci..
[3] R. Lemoine,et al. Carbon source–sink relationship in Arabidopsis thaliana: the role of sucrose transporters , 2017, Planta.
[4] Y. Hao,et al. Transcription Factor AREB2 Is Involved in Soluble Sugar Accumulation by Activating Sugar Transporter and Amylase Genes1 , 2017, Plant Physiology.
[5] Diana Santelia,et al. Regulation of Leaf Starch Degradation by Abscisic Acid Is Important for Osmotic Stress Tolerance in Plants[OPEN] , 2016, Plant Cell.
[6] J. Avice,et al. Sulfur Use Efficiency Is a Significant Determinant of Drought Stress Tolerance in Relation to Photosynthetic Activity in Brassica napus Cultivars , 2016, Front. Plant Sci..
[7] Su-May Yu,et al. Source-Sink Communication: Regulated by Hormone, Nutrient, and Stress Cross-Signaling. , 2015, Trends in plant science.
[8] J. Nemhauser,et al. New mechanistic links between sugar and hormone signalling networks. , 2015, Current opinion in plant biology.
[9] W. Frommer,et al. A Cascade of Sequentially Expressed Sucrose Transporters in the Seed Coat and Endosperm Provides Nutrition for the Arabidopsis Embryo[OPEN] , 2015, Plant Cell.
[10] L. Kong,et al. Signal transduction during wheat grain development , 2015, Planta.
[11] J. Avice,et al. Leaf senescence and nitrogen remobilization efficiency in oilseed rape (Brassica napus L.). , 2014, Journal of experimental botany.
[12] Langtao Xiao,et al. Constitutive expression of cell wall invertase genes increases grain yield and starch content in maize. , 2013, Plant biotechnology journal.
[13] J. Jia,et al. Regulation of leaf senescence and crop genetic improvement. , 2012, Journal of integrative plant biology.
[14] S. Gan,et al. An ABA-regulated and Golgi-localized protein phosphatase controls water loss during leaf senescence in Arabidopsis. , 2012, The Plant journal : for cell and molecular biology.
[15] W. Bilger,et al. An alternative strategy of dismantling of the chloroplasts during leaf senescence observed in a high-yield variety of barley. , 2012, Physiologia plantarum.
[16] Xuemin Wang,et al. Quantitative analysis of major plant hormones in crude plant extracts by high-performance liquid chromatography–mass spectrometry , 2010, Nature Protocols.
[17] D. McCaskill,et al. The Protein Kinase SnRK2.6 Mediates the Regulation of Sucrose Metabolism and Plant Growth in Arabidopsis[W][OA] , 2010, Plant Physiology.
[18] J. Avice,et al. Increased proline loading to phloem and its effects on nitrogen uptake and assimilation in water-stressed white clover (Trifolium repens). , 2009, The New phytologist.
[19] J. Avice,et al. Water-deficit accumulates sugars by starch degradation--not by de novo synthesis--in white clover leaves (Trifolium repens). , 2008, Physiologia plantarum.
[20] M. Kasai. Regulation of leaf photosynthetic rate correlating with leaf carbohydrate status and activation state of Rubisco under a variety of photosynthetic source/sink balances. , 2008, Physiologia plantarum.
[21] T. Roitsch,et al. Metabolic regulation of leaf senescence: interactions of sugar signalling with biotic and abiotic stress responses. , 2008, Plant biology.
[22] P. Perata,et al. Gibberellins, jasmonate and abscisic acid modulate the sucrose-induced expression of anthocyanin biosynthetic genes in Arabidopsis. , 2008, The New phytologist.
[23] R. Meagher,et al. A Role for F-Actin in Hexokinase-Mediated Glucose Signaling1[C][W][OA] , 2007, Plant Physiology.
[24] P. Etienne,et al. The expression patterns of SAG12/Cab genes reveal the spatial and temporal progression of leaf senescence in Brassica napus L. with sensitivity to the environment. , 2006, Journal of experimental botany.
[25] E. Baena-González,et al. Sugar sensing and signaling in plants: conserved and novel mechanisms. , 2006, Annual review of plant biology.
[26] E. Pelzer,et al. Effect of sugar-induced senescence on gene expression and implications for the regulation of senescence in Arabidopsis , 2006, Planta.
[27] J. Manners,et al. The SEN1 gene of Arabidopsis is regulated by signals that link plant defence responses and senescence. , 2005, Plant physiology and biochemistry : PPB.
[28] S. Gibson. Sugar and phytohormone response pathways: navigating a signalling network. , 2003, Journal of experimental botany.
[29] Lijun Liu,et al. Involvement of abscisic acid and cytokinins in the senescence and remobilization of carbon reserves in wheat subjected to water stress during grain filling , 2003 .
[30] C. Foyer,et al. Elevated sucrose-phosphate synthase activity in transgenic tobacco sustains photosynthesis in older leaves and alters development. , 2003, Journal of experimental botany.
[31] T. Lynch,et al. Regulatory Networks in Seeds Integrating Developmental, Abscisic Acid, Sugar, and Light Signaling1 , 2003, Plant Physiology.
[32] Akira Watanabe,et al. Identification of a novel gene HYS1/CPR5 that has a repressive role in the induction of leaf senescence and pathogen-defence responses in Arabidopsis thaliana. , 2002, The Plant journal : for cell and molecular biology.
[33] Thomas D. Schmittgen,et al. Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method. , 2001, Methods.
[34] G M Coruzzi,et al. Carbon and nitrogen sensing and signaling in plants: emerging 'matrix effects'. , 2001, Current opinion in plant biology.
[35] E. Handel. Direct microdetermination of sucrose , 1968 .
[36] J. Gander,et al. A reevaluation of the Roe procedure for the determination of fructose. , 1967, Analytical biochemistry.
[37] L. H. Koehler. Differentiation of carbohydrates by anthrone reaction rate and color intensity. , 1952 .
[38] Ashverya Laxmi,et al. The interaction between glucose and cytokinin signal transduction pathway in Arabidopsis thaliana. , 2014, Plant, cell & environment.
[39] Á. Szepesi,et al. Salicylic acid treatment via the rooting medium interferes with stomatal response, CO2 fixation rate and carbohydrate metabolism in tomato, and decreases harmful effects of subsequent salt stress. , 2011, Plant biology.
[40] H. Nam,et al. Leaf senescence. , 2007, Annual review of plant biology.
[41] M. Paul,et al. Carbon metabolite feedback regulation of leaf photosynthesis and development. , 2003, Journal of experimental botany.