Identification and intra-genus conservation analysis of non-conventional peptides in hybrid poplar 84K.

IF 4.8
Forestry research Pub Date : 2026-02-28 eCollection Date: 2026-01-01 DOI:10.48130/forres-0026-0004
Ying-Da Chen, Jian Tang, Xin-Yue Wang, Xin Lin, Hao-Ran Liao, Hui Liu, Li-Na Mei, Liang-Jiao Xue, Ying Guo
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Abstract

The functional roles of non-conventional peptides (NCPs) encoded by short open reading frames (sORFs) are increasingly recognized. However, their evolutionary conservation among closely related species remains largely unexplored. This study presented a genome-wide identification of NCPs in the hybrid poplar 84K (P. alba × P. glandulosa), and analyzed NCPs' sequence conservation across six sections of the Populus genus. Using LC-MS/MS with a custom six-frame-translated genome database, 516 conventional peptides (CPs), and 337 NCPs were indentified. NCPs exhibited distinct properties, including shorter length and lower molecular weight, compared to CPs. Tissue-specific expression patterns were prominent, with peptides functionally linked to photosynthesis in leaves, cell wall biosynthesis in stems, and nutrient uptake in roots. Allelic analysis revealed a parent-of-origin expression bias for over 10% of peptides, each set enriched in distinct metabolic pathways. Notably, NCP sequences were significantly less conserved than CPs across the genus, though specific conserved motifs were identified. This work provides the first systematic NCP resource for a model hybrid tree, establishing a foundational platform for leveraging peptide biology in molecular forestry and hybrid breeding.

杂交杨树84K非常规多肽的鉴定及属内保守性分析。
由短开放阅读框(sorf)编码的非常规肽(ncp)的功能作用越来越被人们所认识。然而,它们在密切相关的物种中的进化保护仍未被探索。本研究对杂交杨树84K (P. alba × P. glandullosa)的ncp序列进行了全基因组鉴定,并分析了ncp序列在杨树属6个剖面上的保守性。使用LC-MS/MS和定制的六帧翻译基因组数据库,鉴定了516个常规肽(CPs)和337个ncp。与CPs相比,ncp具有较短的长度和较低的分子量等特性。组织特异性表达模式突出,多肽在功能上与叶片光合作用、茎部细胞壁生物合成和根的营养吸收有关。等位基因分析显示,超过10%的多肽存在亲本起源表达偏倚,每组多肽在不同的代谢途径中富集。值得注意的是,在整个属中,尽管确定了特定的保守基序,但NCP序列的保守性明显低于CPs。本研究为模型杂交树提供了第一个系统的NCP资源,为利用肽生物学在分子林业和杂交育种中的应用建立了基础平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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