Elucidating the genetic basis of a high-tillering phenotype in a rice mutant
收藏NIAID Data Ecosystem2026-05-02 收录
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QTL-seq and RNA-seq data for high-tillering rice mutant
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2025-06-21
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Additional file 2: of A semi-dominant mutation in a CC-NB-LRR-type protein leads to a short-root phenotype in rice
Table S2. Summary of sequencing data for each sample. Valid data were obtained after removing adaptor sequences and low-quality reads (Reads with more than 5% unidentified bases or more than 20% low-q
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Additional file 1: of Dissection of the Genetic Architecture of Rice Tillering using a Genome-wide Association Study
Table S1. Primers for PCR and qRT-PCR analysis of the candidate genes. Table S2. TN phenotypes of S-RDP-II population in the field. Table S3. List of the detailed gene information of the 90 cloned TN
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Characterization of the HD1.
(a) Seedling phenotype of the HD1 and WT. Bar = 5 cm. (b) The HD1 and WT at 3 weeks after the heading stage. Bar = 20 cm. (c) Mature panicle and seeds of the HD1 and WT. Bottom bar = 5 cm (panicle), t
Figshare2016-02-23 更新10
Phenotypic comparisons of the t483 mutant and wild-type Nipponbare (Beijing).
Data are presented as means ± SE. Flag leaf widths were measured through the middle region of leaves at the mature stage. Significance of differences between WT and t483 was detected using Student’s t
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Morphometric analysis of the nal1-2 mutant.
Phenotypes of nal1-2 were measured at filling stage. Seconde leaf is the upper second leaf. Values are the mean ± standard error (SE) (n≥15). Asterisks reveal the significance of differences between w
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