Department of Plant Bioscience, Life and Industry Convergence Research Institute, Pusan National University, Miryang 50463, Republic of Korea.
College of General Education, Kookmin University, Seoul 02707, Republic of Korea.
J Agric Food Chem. 2023 Aug 16;71(32):12357-12367. doi: 10.1021/acs.jafc.3c01698. Epub 2023 Aug 7.
Improving the proteins and amino acid contents of rice seeds is one of the prime objectives of plant breeders. We recently developed an EMS mutant/high-protein mutant (HPM) of rice that exhibits 14.8% of the total protein content as compared to its parent Dharial (wild-type), which shows only 9.3% protein content in their mature seeds. However, the mechanisms underlying the higher protein accumulation in these HPM seeds remain largely elusive. Here, we utilized high-throughput proteomics to examine the differences in the proteome profiles of the embryo, endosperm, and bran tissues of Dharial and HPM seeds. Utilizing a label-free quantitative proteomic and subsequent functional analyses of the identified proteins revealed that nitrogen compound biosynthesis, intracellular transport, protein/amino acid synthesis, and photosynthesis-related proteins were specifically enriched in the endosperm and bran of the high-protein mutant seed. Our data have uncovered proteome-wide changes highlighting various functions of metabolic pathways associated with protein accumulation in rice seeds.
提高水稻种子的蛋白质和氨基酸含量是植物育种者的主要目标之一。我们最近开发了一种水稻 EMS 突变体/高蛋白突变体(HPM),与亲本 Dharial(野生型)相比,其总蛋白质含量增加了 14.8%,而 Dharial 在成熟种子中的蛋白质含量仅为 9.3%。然而,这些 HPM 种子中更高蛋白质积累的机制在很大程度上仍难以捉摸。在这里,我们利用高通量蛋白质组学技术研究了 Dharial 和 HPM 种子的胚、胚乳和麸皮组织的蛋白质组图谱的差异。利用无标记定量蛋白质组学和随后对鉴定出的蛋白质的功能分析表明,氮化合物生物合成、细胞内运输、蛋白质/氨基酸合成和光合作用相关蛋白在高蛋白突变体种子的胚乳和麸皮中特异性富集。我们的数据揭示了蛋白质组范围内的变化,突出了与水稻种子中蛋白质积累相关的代谢途径的各种功能。