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Seed Coating Increases Seed Moisture Uptake and Restricts Embryonic Oxygen Availability in Germinating Cereal Seeds

机译:种子包衣增加了种子水分的吸收并限制了发芽谷物种子中的胚胎氧供应

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摘要

Seed coating is a technology to improve germination and homogenize stand establishment. Although coating often results in lower germination rates, seeds that do germinate grow more vigorously and show strongly reduced respiratory losses during reserve mobilization. We hypothesize that the higher mobilization efficiency is due to a shift in the enzymatic cleavage of sucrose from invertase to sucrose synthase in the embryonic tissue caused by a reduced oxygen availability induced by oversaturation with water caused by the coating during early germination. We investigated the effect of coating on barley, rye, and wheat seed imbibition during the first 30 h after seeds were placed in moisture. We profiled oxygen in the embryos and measured sucrose and acid invertase levels as imbibition progressed. We found that seeds within coatings absorbed significantly more moisture than uncoated seeds. Coating resulted in near anoxic oxygen concentrations in the developing embryonic tissues in all three species. In barley, sucrose was not cleaved via the invertase pathway, despite the fact that invertase activity in coated seeds was increased. In rye and wheat, invertase activities were significantly lower in embryos from coated seeds without significantly changing the sugar composition.
机译:种子包衣是改善发芽和使林分建立均匀的技术。尽管包被通常会导致较低的发芽率,但确实发芽的种子会更加旺盛地生长,并且在储备动员期间显示出大大减少的呼吸损失。我们假设较高的动员效率是由于胚芽在早期发芽过程中被涂层过饱和引起的水过饱和引起的氧利用度降低,从而导致胚胎组织中蔗糖的酶促裂解从转化酶转变为蔗糖合酶。我们研究了在种子置于湿气后的最初30小时内,包衣对大麦,黑麦和小麦种子吸收的影响。我们分析了胚胎中的氧气,并随着吸水的进行测量了蔗糖和酸性转化酶的水平。我们发现,包衣中的种子比未包衣的种子吸收的水分要多得多。涂层在所有三个物种的发育中的胚胎组织中导致近乎缺氧的氧气浓度。在大麦中,蔗糖并未通过转化酶途径裂解,尽管包被的种子中的转化酶活性增加了。在黑麦和小麦中,被覆种子的胚中转化酶活性显着降低,而糖的组成却没有明显变化。

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