Nonaka Satoko, Ezura Hiroshi
Laboratory of Vegetable and Ornamental Horticulture, Institute of Life and Environmental Sciences and Tsukuba-Plant Innovation Research Center, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8572, Japan.
Breed Sci. 2024 Mar;74(1):47-58. doi: 10.1270/jsbbs.23074. Epub 2024 Apr 9.
Genome editing technologies are promising for conventional mutagenesis breeding, which takes a long time to remove unnecessary mutations through backcrossing and create new lines because they directly modify the target genes of elite strains. In particular, this technology has advantages for traits caused by the loss of function. Many efforts have been made to utilize this technique to introduce valuable features into crops, including maize, soybeans, and tomatoes. Several genome-edited crops have already been commercialized in the US and Japan. Melons are an important vegetable crop worldwide, produced and used in various areas. Therefore, many breeding efforts have been made to improve its fruit quality, resistance to plant diseases, and stress tolerance. Quantitative trait loci (QTL) analysis was performed, and various genes related to important traits were identified. Recently, several studies have shown that the CRISPR/Cas9 system can be applied to melons, resulting in its possible utilization as a breeding technique. Focusing on two productivity-related traits, disease resistance, and fruit quality, this review introduces the progress in genetics, examples of melon breeding through genome editing, improvements required for breeding applications, and the possibilities of genome editing in melon breeding.
基因组编辑技术对于传统诱变育种很有前景,传统诱变育种通过回交去除不必要的突变并培育新株系需要很长时间,因为基因组编辑技术可以直接修饰优良品系的目标基因。特别是,这项技术对于由功能丧失引起的性状具有优势。人们已经做出了许多努力来利用这项技术将有价值的特性引入作物,包括玉米、大豆和番茄。几种基因组编辑作物已经在美国和日本实现商业化。甜瓜是全球重要的蔬菜作物,在各个地区都有种植和使用。因此,人们进行了许多育种工作来提高其果实品质、抗病性和抗逆性。进行了数量性状位点(QTL)分析,并鉴定了与重要性状相关的各种基因。最近,几项研究表明CRISPR/Cas9系统可以应用于甜瓜,使其有可能作为一种育种技术加以利用。本文围绕与产量相关的两个性状、抗病性和果实品质,介绍了甜瓜遗传学研究进展、基因组编辑育种实例、育种应用所需改进以及甜瓜育种中基因组编辑的可能性。