Supporting Tables and Figures.
收藏Figshare2015-12-03 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Ozone_Induced_Rice_Grain_Yield_Loss_Is_Triggered_via_a_Change_in_Panicle_Morphology_That_Is_Controlled_by_ABERRANT_PANICLE_ORGANIZATION_1_Gene/1397897
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Table A in S1 File. Grain yield and number of primary rachis branches (PRB) grown at OTC in 2010, and conversion factors of CF to NF conditions. Table B in S1 File. Effects of exposure to elevated ozone on grain yield and plant growth parameters in Sasanishiki and Habataki. Table C in S1 File. LC conditions. Table D in S1 File. Parameters for LC-ESI-MS/MS analysis (Agilent 1260–6410). Table E in S1 File. Effects of exposure to elevated ozone on grain yield and plant growth parameters in SHA422-1.3, SHA422-1.1, Sasanishiki and Habataki (2011). Table F in S1 File. Overrepresented attributes for the 275 genes that responded under elevated ozone condition found by gene enrichment analysis. Table G in S1 File. Effects of exposure to elevated ozone on the amounts of phytohormones (μg gFW−1) in inflorescence meristems and flag leaves. Fig A. in S1 File Daily ozone exposure in the glasshouse in 2009 and 2010. Fig B. in S1 File Backbone ribbon representation of the F-box domains of APO1 from Sasanishiki and Habataki. Fig C. in S1 File Ozone-induced changes in the APO1 transcript level in inflorescence meristems of SHA422-1.3 and SHA422-1.1. (PDF)
创建时间:
2015-12-03



