Precision microneedle-assisted wounding enhances regeneration and enables efficient Agrobacterium-mediated transformation in carnation (Dianthus caryophyllus L.)

康乃馨 生物 外植体培养 再生(生物学) 转化(遗传学) 开枪 观赏植物 转化效率 石竹 植物 细胞生物学 园艺 生长素 转基因 栽培 分子育种 生物技术 转基因作物
作者
Jun Yang,Chang Kil Kim
出处
期刊:Plant Biotechnology Reports [Springer Science+Business Media]
卷期号:20 (2)
标识
DOI:10.1007/s11816-026-01049-4
摘要

Carnation (Dianthus caryophyllus L.) is an important ornamental crop, but its molecular breeding is limited by low regeneration competence and inefficient Agrobacterium-mediated transformation. This study aimed to establish a reproducible transformation framework for carnation by integrating optimized regeneration conditions with precision microneedle-assisted wounding and infection strategies. Significant genotype-dependent variation in regeneration capacity and auxin responsiveness was observed among six cultivars. Targeted microneedle-assisted wounding at the leaf-base vein junction markedly enhanced direct shoot regeneration, resulting in a 2.27-fold increase in shoot number per explant and earlier regeneration compared with non-wounded controls. Among three infection strategies tested, immersion-wounding with sterile microneedles followed by bacterial immersion produced the highest regeneration frequency (60.0%) and shoot formation. Optimization of non-ionic surfactants revealed that Tween 20 (0.01%) provided a broad and stable operational window, whereas Triton X-100 showed strong concentration-dependent phytotoxicity. Using the optimized protocol, five independent acdS-transgenic carnation lines were successfully recovered, corresponding to a PCR-verified transformation efficiency of 16.67% on an explant basis. PCR and qRT-PCR analyses confirmed stable transgene integration and expression without adverse effects on plant morphology. These results demonstrate that precision microneedle-assisted wounding is a key enabling factor for efficient regeneration and facilitates Agrobacterium-mediated transformation in carnation, providing a practical platform for molecular breeding of regeneration-recalcitrant ornamental crops.
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