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首页> 外文期刊>Plant signaling & behavior >Adventitious roots of wheat seedlings that emerge in oxygen-deficient conditions have increased root diameters with highly developed lysigenous aerenchyma.
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Adventitious roots of wheat seedlings that emerge in oxygen-deficient conditions have increased root diameters with highly developed lysigenous aerenchyma.

机译:在缺氧条件下出现的小麦幼苗的不定根,随着高度发达的食源性气孔瘤而增大了根的直径。

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Exposing roots of plants to hypoxic conditions is known to greatly improve their anoxic stress tolerance. We previously showed that pre-treatment of wheat seedlings with an ethylene precursor, 1-aminocyclopropanecarboxylic acid (ACC), enhanced their tolerance of oxygen-deficient conditions. Although ACC-pretreated seminal roots of wheat seedlings grown under oxygen-deficient conditions avoided root tip death, they elongated very little. In the present study, we assessed the effects of ethylene on the responses of adventitious roots of wheat seedlings to oxygen-deficient conditions. Lysigenous aerenchyma formation in the adventitious roots of wheat seedlings pretreated with ACC appeared to reduce tip death under oxygen-deficient conditions, but the adventitious roots, like the seminal roots, hardly elongated. We also found that adventitious roots that emerge in oxygen-deficient conditions continued to elongate even under such conditions. The adventitious roots emerged in oxygen-deficient conditions were found to have thicker root diameters than those emerged in aerated conditions. These results suggest that the adventitious roots with thicker root diameters can better cope with oxygen-deficient conditions. Measurements of the area of the lysigenous aerenchyma confirmed that the increased root diameters have a greater amount of air space generated by lysigenous aerenchyma formation.CAS Registry Numbers 22059-21-8 74-85-1 7782-44-7
机译:已知将植物的根暴露于低氧条件下可大大提高其缺氧胁迫耐受性。我们以前表明,用乙烯前体1-氨基环丙烷甲酸(ACC)预处理小麦幼苗,可以增强其对缺氧条件的耐受性。尽管在缺氧条件下生长的ACC预处理的小麦幼苗的精根避免了根尖死亡,但它们的伸长很小。在本研究中,我们评估了乙烯对小麦幼苗不定根对缺氧条件的响应。在缺氧条件下,ACC预处理的小麦幼苗不定根中的溶源性气孔形成似乎可以减少叶尖死亡,但像精根这样的不定根几乎不伸长。我们还发现,即使在这种条件下,在缺氧条件下出现的不定根也会继续伸长。发现在缺氧条件下出现的不定根比在充气条件下出现的不定根的直径更大。这些结果表明不定根具有较粗的根直径可以更好地应对缺氧条件。对食源性气肿的面积进行测量证实,增加的根部直径具有较大的气孔,这些空气空间是由食源性气肿形成的.CAS注册号22059-21-8 74-85-1 7782-44-7

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