原生质体
梨
转化(遗传学)
生物
植物
纤维素酶
体细胞融合
电穿孔
转化效率
梨
栽培
多年生植物
园艺
DNA
质粒
细胞融合
作者
Zhao Rui,Shahrokh Khanizadeh,Katsuhiro Shiratake,Shutian Tao
标识
DOI:10.1016/j.scienta.2026.115108
摘要
Isolation of protoplasts from tissues of woody plants has always been a major technical bottleneck, protoplast based approaches enable gene transfer but are poorly developed in pear ( Pyrus ). Here, we established an efficient protoplast isolation, fusion, and transient transformation platform using stems of tissue cultured seedlings of two elite Chinese pear cultivars, Pyrus pyrifolia ‘Cuiguan’ and Pyrus ussuriensis ‘Qiuzi’. Cultivar specific enzymatic digestion (0.45∼0.65 M mannitol, 1.0∼1.5 % (w/v) Cellulase R-10, 0.2 % (w/v) Macerozyme R-10, 6∼7 h) yielded high yields (4.78∼5.44×10⁷ g⁻¹ FW) and >92 % viability. A hybrid fusion protocol combining AC pre aggregation (15 V/cm, 34.41 % aggregation efficiency) with 30 % PEG4000 achieved 5.13 % fusion efficiency and 3.38 % pairwise fusion efficiency. PEG-Ca²⁺ mediated transformation using 5 μg plasmid DNA and 40 % PEG8000 for 20 min reached 51.99 % protoplast transformation efficiency. This integrated platform accomplishes the entire workflow from high quality protoplast isolation to directed fusion and transient expression in pear for the first time. It provides a powerful multifunctional toolkit for somatic hybridization, high throughput functional genomics, and genetic improvement, thereby significantly accelerating molecular breeding of perennial woody fruit crops.
科研通智能强力驱动
Strongly Powered by AbleSci AI