Comparative transcriptome and functional analyses provide insights into the key factors regulating shoot regeneration in highbush blueberry.

IF 7.6 Q1 GENETICS & HEREDITY 园艺研究(英文) Pub Date : 2024-04-22 eCollection Date: 2024-06-01 DOI:10.1093/hr/uhae114
Masafumi Omori, Hisayo Yamane, Ryutaro Tao
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Abstract

Establishing an efficient plant regeneration system is a crucial prerequisite for genetic engineering technology in plants. However, the regeneration rate exhibits considerable variability among genotypes, and the key factors underlying shoot regeneration capacity remain largely elusive. Blueberry leaf explants cultured on a medium rich in cytokinins exhibit direct shoot organogenesis without prominent callus formation, which holds promise for expediting genetic transformation while minimizing somatic mutations during culture. The objective of this study is to unravel the molecular and genetic determinants that govern cultivar-specific shoot regeneration potential in highbush blueberry (Vaccinium corymbosum L.). We conducted comparative transcriptome analysis using two highbush blueberry genotypes: 'Blue Muffin' ('BM') displaying a high regeneration rate (>80%) and 'O'Neal' ('ON') exhibiting a low regeneration rate (<10%). The findings revealed differential expression of numerous auxin-related genes; notably, 'BM' exhibited higher expression of auxin signaling genes compared to 'ON'. Among blueberry orthologs of transcription factors involved in meristem formation in Arabidopsis, expression of VcENHANCER OF SHOOT REGENERATION (VcESR), VcWUSCHEL (VcWUS), and VcCUP-SHAPED COTYLEDON 2.1 were significantly higher in 'BM' relative to 'ON'. Exogenous application of auxin promoted regeneration, as well as VcESR and VcWUS expression, whereas inhibition of auxin biosynthesis yielded the opposite effects. Overexpression of VcESR in 'BM' promoted shoot regeneration under phytohormone-free conditions by activating the expression of cytokinin- and auxin-related genes. These findings provide new insights into the molecular mechanisms underlying blueberry regeneration and have practical implications for enhancing plant regeneration and transformation techniques.

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通过比较转录组和功能分析,可以深入了解调控高丛蓝莓嫩枝再生的关键因素。
建立高效的植物再生系统是植物基因工程技术的重要前提。然而,不同基因型之间的再生率存在很大差异,芽再生能力的关键因素在很大程度上仍然难以捉摸。在富含细胞分裂素的培养基上培养的蓝莓叶片外植体表现出直接的芽器官发生,而没有明显的胼胝体形成,这为加快遗传转化,同时最大限度地减少培养过程中的体细胞突变带来了希望。本研究旨在揭示高丛蓝莓(Vaccinium corymbosum L.)栽培品种特异性芽再生潜力的分子和遗传决定因素。我们利用两种高丛蓝莓基因型:再生率高(>80%)的'Blue Muffin'('BM')和再生率低的'O'Neal'('ON')进行了转录组比较分析(拟南芥,VcENHANCER OF SHOOT REGENERATION(VcESR)、VcWUSCHEL(VcWUS)和 VcCUP-SHAPED COTYLEDON 2.1 在 "BM "中明显高于 "ON"。外源施用叶绿素可促进再生以及 VcESR 和 VcWUS 的表达,而抑制叶绿素的生物合成则会产生相反的效果。在无植物激素条件下,'BM'中VcESR的过表达通过激活细胞分裂素和辅助素相关基因的表达促进了嫩枝再生。这些发现为蓝莓再生的分子机制提供了新的见解,对提高植物再生和转化技术具有实际意义。
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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