Le Kim-Cuong, Johnson Shannon, Aidun Cyrus K, Egertsdotter Ulrika
G.W. Woodruff School of Mechanical Engineering, Georgia Institute of Technology, 500 10th Street NW, Atlanta, GA 30332-0620, USA.
Renewable Bioproducts Institute, Georgia Institute of Technology, 500 10th Street NW, Atlanta, GA 30332-0620, USA.
Plants (Basel). 2023 Jul 25;12(15):2752. doi: 10.3390/plants12152752.
The production of blueberries for fresh and processed consumption is increasing globally and has more than doubled in the last decade. Blueberry is grown commercially across a variety of climates in over 30 countries. The major classes of plants utilized for the planting and breeding of new cultivars are highbush, lowbush, half-high, Rabbiteye, and Southern highbush. Plants can be propagated by cuttings or in vitro micropropagation techniques. In vitro propagation offers advantages for faster generation of a large number of disease-free plants independent of season. Labor costs for in vitro propagation can be reduced using new cultivation technology and automation. Here, we test and demonstrate successful culture conditions and medium compositions for in vitro initiation, multiplication, and rooting of the Southern highbush cultivar 'Blue Suede™' ( hybrid).
全球范围内,用于新鲜食用和加工的蓝莓产量正在增加,并且在过去十年中增长了一倍多。蓝莓在30多个国家的各种气候条件下进行商业化种植。用于新品种种植和育种的主要植物类别有高丛蓝莓、矮丛蓝莓、半高丛蓝莓、兔眼蓝莓和南高丛蓝莓。植物可以通过扦插或离体微繁殖技术进行繁殖。离体繁殖具有优势,能够在不受季节影响的情况下更快地培育出大量无病植株。使用新的栽培技术和自动化设备可以降低离体繁殖的劳动力成本。在此,我们测试并展示了南高丛蓝莓品种“蓝色麂皮™”(杂交品种)离体诱导、增殖和生根的成功培养条件及培养基成分。