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Assessment of different pretreatments to breakage dormancy and improve the seed germination in Elaeocarpus serratus L. - an underutilized multipurpose fruit tree from South India

机译:评估Elaeocarpus serratus L.-来自南印度的一种未充分利用的多用途果树的不同方法,以破坏休眠并改善种子发芽

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The seeds of Elaeocarpus serratus, a tropical underutilized fruit tree are characterized by hard seed coat and consequent poor water uptake and low germination. To improve the regeneration through seeds, various parameters such as viability of seeds, water uptake, and effect of seed mass on germination and pretreatments were performed using a completely randomized design (CRD). Tetrazolium (TZ) test was conducted using fresh, mature seeds revealed 50?±?2.56% mean viability. Seeds of different weight classes showed similar pattern of water uptake and the saturation level was achieved at 60?hrs of soaking. Seeds belong to weight class 2.6-3.5g were germinated (12.5?±?1.26%) with 175?±?1.75 days (d) of mean time taken for germination (MTG). Germination capacity of seeds varied significantly among different populations and Varkala population gave 12.5?±?1.1% germination with 174.6?±?2.5 d MTG. Among various seed treatments, mechanical scarification was superior in germination and significant reduction in MTG (p?≤?0.05). The mechanical scarification by complete removal of seed coat resulted in 49.2?±?1.52% germination within a short period of time (9.52?±?0.89 d MTG). However, the complete removal of seed coat without damaging to embryo is a difficult task. An alternate treatment (Mechanical scarification II) by making cracks on nut faces vertically followed by soaking in distilled water for 24?hrs gave 48.4?±?1.73% germination with significantly reduced MTG (12.14?±?0.56 d) over unsoaked, untreated control (6.5?±?1.84% germination and 197.18?±?1.79 d MTG; p?≤?0.05). This treatment (Mechanical scarification II) is therefore recommended for E. serratus seeds as it can adopt easily and can achieve 7 fold increases in germination over control. The recorded germination through mechanical scarification is in tune with realized viability percentage of the seeds.
机译:Elaeocarpus serratus(一种未充分利用的热带果树)的种子的特征是坚硬的种皮,因此吸水率低且发芽率低。为了改善通过种子的再生,使用完全随机设计(CRD)进行了各种参数,例如种子的生存力,水分吸收以及种子质量对发芽和预处理的影响。使用新鲜成熟的种子进行四唑(TZ)测试,结果表明平均生存力为50%±2.56%。不同重量类别的种子表现出相似的水分吸收模式,并且在浸泡60小时后达到了饱和水平。重量为2.6-3.5g的种子在平均发芽时间(MTG)的175±±1.75天(d)内发芽(12.5±±1.26%)。种子的发芽能力在不同种群之间差异很大,瓦卡拉种群的发芽率为12.5±±1.1%,MTG为174.6±±2.5 d。在各种种子处理中,机械划痕在发芽方面表现优异,MTG显着降低(p≤≤0.05)。通过完全去除种皮而造成的机械划痕在短时间内(MTG为9.52±0.89 d)产生49.2±1.52%的发芽率。然而,在不损害胚胎的情况下完全去除种皮是一项艰巨的任务。另一种处理方法(机械划痕II)是在螺母面上垂直开裂,然后在蒸馏水中浸泡24小时,使其发芽率为48.4%±1.73%,MTG明显降低(未经处理的对照为12.14±0.56 d)。 (6.5±±1.84%发芽和197.18±1.79d MTG;p≤≤0.05)。因此,建议将这种处理方法(机械划痕II)用于锯缘肠球菌种子,因为这种方法很容易采用,并且发芽率比对照高7倍。通过机械划痕记录的发芽与种子已实现的生存力百分比一致。

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