Aug 2026· Cell Reports· Vol 45 8, pp.
117867
· 0 citations· 46 references
Medicine
TL;DR
Functional analysis of BnaTT3, a proteome-prioritized seed hormone-associated candidate, supports its role in coordinating seed development and phytohormone homeostasis and presents a phytohormone atlas resource, identifying their key role in tissue specificity.
Abstract
Rapeseed is a globally important oil crop cultivated worldwide, but its proteome remains uncharacterized. Here, we established a quantitative atlas of the proteome and phosphoproteome spanning 24 major tissues. Using Orbitrap Astral MS instrument, we quantified 28,217 proteins and 13,455 phosphoproteins (covering over 60,000 phosphorylation sites) during rapeseed vegetative and reproductive stages, representing the most extensive proteomic and phosphoproteomic dataset for rapeseed to date. Tissue-specific protein expression highlights functional specificity with significant variations between transcript and protein levels across tissues. We also present a phytohormone atlas resource, identifying their key role in tissue specificity. We further integrated phytohormone abundance with transcriptomic, proteomic, and phosphorylation-site profiles using weighted gene co-expression network analysis (WGCNA), revealing partially distinct hormone-associated modules across molecular layers. Functional analysis of BnaTT3, a proteome-prioritized seed hormone-associated candidate, supports its role in coordinating seed development and phytohormone homeostasis. These comprehensive multi-omics resources advance our understanding of rapeseed biology and provide a valuable resource for crop improvement.
Oil palm (Elaeis guineensis Jacq.) is the most productive oil-bearing crop globally, yet the molecular basis of mesocarp development and lipid accumulation remains poorly understood. Ultra-deep data-independent acquisition mass spectrometry (DIA-MS) was applied to characterize proteome dynamics in two contrasting genot...
Muhammad Imran, Zhen Zhao, Ruo-Yu Zhou et al.· Plant physiology and biochem...· 0 citations
Taraxacum kok-saghyz
(TKS) accumulates high-added-value compounds such as natural rubber (NR) and inulin, making it a promising alternative industrial crop. However, the tissue-specific regulation of NR biosynthesis (NRB) in TKS still requires further investigation. Here, we integrated transcriptomic and prote...
Polygonatum sibiricum Red. is a medicinal and edible homologous plant whose rhizome quality determines its clinical efficacy and commercial value. However, conventional evaluations typically treat the entire rhizome as homogeneous, overlooking the intrinsic heterogeneity along age nodes, and the regulatory mechanisms g...
Chun-Ming Li, Xiao-Yu Su, Ya-Ling Yang et al.· International Journal of Mol...· 0 citations
Pecan is a well-known nut tree native to the United States and Mexico. It is valued as a high-quality source of dried fruit, oil trees, and wood. Seed germination, beginning with imbibition, comprises a series of coordinated physiological and morphogenetic processes that play a key role in the growth of pecan seedlings...
Ying-Zhou Tang, Li-Wen Li, De-Zong Sui et al.· J. Amer. Soc. Hort. Sci.· 0 citations
We conducted a comparative proteomic analysis of the wheat cultivar Xinmai 45 and its parental lines, Jimai 20 (paternal) and Xinmai 26 (maternal), to clarify the proteomic differences associated with delayed senescence in flag leaves. Data-independent acquisition (DIA) quantitative proteomics, coupled with bioinformat...
This study provides a comprehensive multi‑omics resource and a descriptive framework for understanding transcriptional and metabolic dynamics during sesame floral development, and identifies candidate pathways and genes that may serve as targets for future functional validation and molecular breeding.
Qiyuan An, Hongsen Cheng, Huijie Sun et al.· Frontiers in Plant Science· 0 citations
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