Plant Physiology

Plant Physiology
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Artikel-Nr:
9781926692692
Veröffentl:
2011
Erscheinungsdatum:
15.12.2011
Seiten:
298
Autor:
Philip Stewart
Gewicht:
594 g
Format:
234x156x18 mm
Sprache:
Englisch
Beschreibung:

Dr. Philip Stewart has a Ph.D in horticulture with a focus on the genetics of flowering in strawberries. He has worked in association with Cornell University¿s Grapevine Breeding Program, the Department of Horticulture at the University of Arkansas in Fayetteville, and the Horticultural Sciences Program at the University of Florida in Gainesville. He has contributed to multiple publications, including the International Journal of Fruit Science, Horticultural Science, Plant Science, and BMC Plant Biology. He has served as a member on the U.S. Rosaceae Genetics and Breeding Executive Committee, the North American Strawberry Growers¿ Association, and the Small Fruit Crop Germplasm Committee. Dr. Stewart is one of the inventors of the patented strawberry plant named drisstrawseven, and he currently works with the North Central Regional Association of State Agricultural Experiment Station Directors.
This title includes a number of Open Access chapters.
Cell Wall Biogenesis of Arabidopsis Thaliana Elongating Cells: Transcriptomics Complements Proteomics; Arabidopsis Gene Co-Expression Network and Its Functional Modules; Spindle Assembly Checkpoint Protein Dynamics Reveal Conserved and Unsuspected Roles in Plant Cell Division; Sampling Nucleotide Diversity in Cotton; A Small Intergenic Region Drives Exclusive Tissue-Specific Expression of the Adjacent Genes in Arabidopsis Thaliana; The Pitcher Plant Sarracenia purpurea Can Directly Acquire Organic Nitrogen and Short-Circuit the Inorganic Nitrogen Cycle; An Oligo-Based Microarray Offers Novel Transcriptomic Approaches for the Analysis of Pathogen Resistance and Fruit Quality Traits in Melon (Cucumis melo l.); Global Characterization of Artemisia annua Glandular Trichome Transcriptome Using 454 Pyrosequencing; Analysis of Gene Expression and Physiological Responses in Three Mexican Maize Landraces under Drought Stress and Recovery Irrigation; Soybean GmPHD-Type Transcription Regulators Improve Stress Tolerance in Transgenic Arabidopsis Plants; Integrating Microarray Analysis and the Soybean Genome to Understand the Soybeans Iron Deficiency Response; The AUXIN BINDING PROTEIN 1 is Required for Differential Auxin Responses Mediating Root Growth; Instrumentation Enabling Study of Plant Physiological Response to Elevated Night Temperature

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