Dhungana Sabitri Adhikari, Kunitake Hisato, Niino Takao, Yamamoto Shin-Ichi, Fukui Kuniaki, Tanaka Daisuke, Maki Shinya, Matsumoto Toshikazu
Graduate School of Life and Environmental Science, Shimane University, Matsue, Shimane 690-1102, Japan.
Faculty of Agriculture, Miyazaki University, Miyazaki 889-2192, Japan.
Plant Biotechnol (Tokyo). 2017;34(1):1-5. doi: 10.5511/plantbiotechnology.16.1231b. Epub 2017 Mar 4.
Cryopreservation is an important tool for long-term storage of plant germplasm that is currently used for plant germplasm storage at many institutes worldwide. Recently, novel cryogenic procedures (V and D cryo-plate methods) have been developed. In this study, the most suitable conditions for preserving blueberry shoot tips derived from in vitro and current shoots using the D cryo-plate method were investigated. The D cryo-plate method has advantages such as higher regrowth after cryopreservation and a more user-friendly process compared with conventional cryogenic methods. The optimum duration of desiccation for regrowth of shoot tips from each shoot type was 1 h. To induce dehydration tolerance for the shoot tips, the effects of two cryoprotection treatments (sucrose preculture and loading solution [LS] treatment) on shoot regrowth after cryopreservation were investigated. The combined effect of both treatments significantly increased percentage regrowth (approximately 90%). No regrowth of shoot tips was attained without the two treatments. Thus, preculture and LS treatment were effective to induce dehydration tolerance for cryopreservation of blueberry shoot tips. The optimized conditions for blueberry shoot tips using the D cryo-plate technique were: preculture with 0.3 M sucrose for 1 day, LS treatment (2 M glycerol +0.4-1.0 M sucrose) for 30 min, and air dehydration for 1 h. This optimized procedure was applied to additional blueberry cultivars shoot tips derived from in vitro shoots (regrowth 46.7-100%) and current shoots (regrowth 17.2-62.7%). Furthermore, in vitro shoot tips were suitable material for the D cryo-plate method in blueberry.
冷冻保存是长期储存植物种质的重要手段,目前全球许多机构都用其来储存植物种质。最近,已开发出新型低温保存程序(V和D冷冻板法)。在本研究中,调查了使用D冷冻板法保存源自离体新梢和当前新梢的蓝莓茎尖的最适宜条件。与传统低温保存方法相比,D冷冻板法具有冷冻保存后再生率更高和操作过程更简便等优点。每种新梢类型的茎尖再生的最佳干燥持续时间为1小时。为诱导茎尖的脱水耐受性,研究了两种冷冻保护处理(蔗糖预培养和加载溶液[LS]处理)对冷冻保存后新梢再生的影响。两种处理的联合效应显著提高了再生率(约90%)。未经这两种处理则未获得茎尖再生。因此,预培养和LS处理对于诱导蓝莓茎尖冷冻保存的脱水耐受性是有效的。使用D冷冻板技术保存蓝莓茎尖的优化条件为:用0.3M蔗糖预培养1天,LS处理(2M甘油+0.4 - 1.0M蔗糖)30分钟,以及空气干燥1小时。此优化程序应用于源自离体新梢(再生率46.7 - 100%)和当前新梢(再生率17.2 - 62.7%)的其他蓝莓品种的茎尖。此外,离体茎尖是蓝莓D冷冻板法的合适材料。