首页> 外文期刊>Cryo Letters >RELATIVE IMPORTANCE OF SEED DRYING RATE, DESICCATION TOLERANCE, AND CRYOTOLERANCE FOR THE CONSERVATION OF Ardisia elliptica, A. brunnescens AND A. virens
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RELATIVE IMPORTANCE OF SEED DRYING RATE, DESICCATION TOLERANCE, AND CRYOTOLERANCE FOR THE CONSERVATION OF Ardisia elliptica, A. brunnescens AND A. virens

机译:种子干燥率,脱水耐性和低温耐性相对于椭圆形香椿,布鲁内斯霉和青霉的保存的相对重要性

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The pan-tropical genus Ardisia has more than 400 species and is of high horticultural and medicinal value. Due to overexploitation it is important to conserve the germplasm of this genus. OBJECTIVE: To investigate the feasibility and methods of cryopreservation for long-term seed storage of three Ardisia species: A. elliptica Thunb.,A. brunnescens Walker, and A virens Kurz. METHODS: We tested whether rapid desiccation can increase desiccation tolerance and cryotolerance, and whether the thawing rate can affect cryopreservation success. Seeds were subjected to three desiccation treatments: 1) activated silica gel at 25 ± 2°C, and 4% relative humidity (RH); 2) saturated NaCl solution in closed jars in 25 ± 2°C and 75% RH; and 3) air-drying at room conditions at 27 ± 2°C and RH 60% for different desiccation durations (12h, 24h, 48h, 96h, and 196h). Seeds were then assessed for desiccation tolerance and cryotolerance after rapid thawing (direct immersion in 36°C water bath for 2 min) or slow thawing (at 27°C for 1 h). RESULTS: For all three species, desiccation method and duration significantly affected cryotolerance (P < 0.0001). Fast desiccation did not improve germination compared to slower desiccation (P < 0.01). Whereas A. elliptica germination was unaffected by desiccation duration, drying time significantly (P < 0.0001) affected germination percentage in the other two species especially after 48h Although slow thawing improved cryotolerance of A. brunnescens seeds (P <0.05), there was no significant effect of thawing rate on A. elliptica. A. virens seed did not survive cryopreservation. CONCLUSIONS: Cryopreservation protocols of Ardisia species may be species-specific and should be established for each species in the genus so that cryopreservation can be used as a successful conservation strategy.
机译:泛热带属Ardisia有400多种,具有很高的园艺和药用价值。由于过度开发,重要的是保存该属的种质。目的:探讨冷冻保存长期保存三种Ardisia树种的可行性和方法。 brunnescens Walker和A virens Kurz。方法:我们测试了快速干燥是否可以增加干燥耐受性和低温耐受性,以及解冻速率是否会影响冷冻保存的成功。种子经过三种干燥处理:1)活化硅胶在25±2°C和4%相对湿度(RH)下进行; 2)在25±2℃和75%RH的密闭广口瓶中的饱和NaCl溶液; 3)在室温下于27±2°C和相对湿度60%的空气中干燥不同的干燥时间(12h,24h,48h,96h和196h)。然后在快速融化(直接浸入36°C水浴2分钟)或缓慢融化(在27°C融化1小时)后评估种子的耐干燥性和耐低温性。结果:对于所有三个物种,干燥方法和持续时间均显着影响低温耐受性(P <0.0001)。与较慢的干燥相比,快速的干燥不能改善发芽(P <0.01)。尽管椭圆菌的发芽不受干燥时间的影响,但干燥时间(P <0.0001)显着影响了其他两个物种的发芽率,尤其是在48小时后,尽管缓慢解冻改善了布鲁恩草种子的耐低温性(P <0.05),但没有显着差异。融化速率对椭圆果蝇的影响A. virens种子无法冷冻保存。结论:Ardisia物种的冷冻保存方案可能是特定于物种的,应针对属中的每个物种建立冷冻保存方案,以便将冷冻保存用作成功的保存策略。

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