糊粉
胚乳
生物
水稻
甲基磺酸乙酯
空间分布
荧光显微镜
生物系统
计算生物学
基因
植物
遗传学
突变体
荧光
统计
量子力学
物理
数学
作者
Zi-Wen Ren,Meng Yang,Brigid A. McKenna,Xingming Lian,Fang-Jie Zhao,Peter M. Kopittke,Enzo Lombi,Peng Wang
标识
DOI:10.1093/plphys/kiac534
摘要
Abstract The concentration, chemical speciation, and spatial distribution of essential and toxic mineral elements in cereal seeds have important implications for human health. To identify genes responsible for element uptake, translocation, and storage, high throughput phenotyping methods are needed to visualize element distribution and concentration in seeds. Here, we used X-ray fluorescence microscopy (μ-XRF) as a method for rapid and high-throughput phenotyping of seed libraries and developed an ImageJ-based pipeline to analyze the spatial distribution of elements. Using this method, we non-destructively scanned 4,190 ethyl methanesulfonate (EMS)-mutagenized M1 rice (Oryza sativa) seeds and 533 diverse rice accessions in a Genome-Wide Association Study (GWAS) panel to simultaneously measure concentrations and spatial distribution of elements in the embryo, endosperm, and aleurone layer. A total of 692 putative mutants and 65 loci associated with the spatial distribution of elements in rice seed were identified. This powerful method provides a basis for investigating the genetics and molecular mechanisms controlling the accumulation and spatial variations of mineral elements in plant seeds.
科研通智能强力驱动
Strongly Powered by AbleSci AI