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首页> 外文期刊>Plant, Cell & Environment >Enhanced formation of aerenchyma and induction of a barrier to radial oxygen loss in adventitious roots of Zea nicaraguensis contribute to its waterlogging tolerance as compared with maize (Zea mays ssp. mays).
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Enhanced formation of aerenchyma and induction of a barrier to radial oxygen loss in adventitious roots of Zea nicaraguensis contribute to its waterlogging tolerance as compared with maize (Zea mays ssp. mays).

机译:与玉米(Zea mays ssp。mays)相比,尼加拉瓜玉米不定根中气孔形成的增强和对径向氧损失的诱导诱导了其耐涝性。

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摘要

Enhancement of oxygen transport from shoot to root tip by the formation of aerenchyma and also a barrier to radial oxygen loss (ROL) in roots is common in waterlogging-tolerant plants. Zea nicaraguensis (teosinte), a wild relative of maize (Zea mays ssp. mays), grows in waterlogged soils. We investigated the formation of aerenchyma and ROL barrier induction in roots of Z. nicaraguensis, in comparison with roots of maize (inbred line Mi29), in a pot soil system and in hydroponics. Furthermore, depositions of suberin in the exodermis/hypodermis and lignin in the epidermis of adventitious roots of Z. nicaraguensis and maize grown in aerated or stagnant deoxygenated nutrient solution were studied. Growth of maize was more adversely affected by low oxygen in the root zone (waterlogged soil or stagnant deoxygenated nutrient solution) compared with Z. nicaraguensis. In stagnant deoxygenated solution, Z. nicaraguensis was superior to maize in transporting oxygen from shoot base to root tip due to formation of larger aerenchyma and a stronger barrier to ROL in adventitious roots. The relationships between the ROL barrier formation and suberin and lignin depositions in roots are discussed. The ROL barrier, in addition to aerenchyma, would contribute to the waterlogging tolerance of Z. nicaraguensis.CAS Registry Numbers 9005-53-2 8072-95-5
机译:在通水耐性植物中,通气孔的形成增强了从枝条到根尖的氧运输,并且还阻碍了根部径向氧损失(ROL)。玉米(Zea mays ssp。mays)的野生近缘种玉米(Zea nicaraguensis)(teosinte)生长在浸水的土壤中。与玉米(自交系Mi29)的根,盆栽土壤系统和水培法相比,我们调查了尼加拉瓜根(Z. nicaraguensis)根中的气孔形成和ROL屏障诱导。此外,研究了在充气或停滞的脱氧营养液中生长的尼加拉瓜不定根和玉米不定根的表皮中木质素的沉积和皮层中木质素的沉积。与尼加拉瓜Z. Naraguensis相比,根区低氧(淹水的土壤或停滞的脱氧营养液)对玉米生长的不利影响更大。在停滞的脱氧溶液中,由于不定根中较大的气孔形成和对ROL的更强屏障,尼加拉瓜Z在将氧从芽基转移到根尖方面优于玉米。讨论了ROL屏障形成与根中木质素和木质素沉积之间的关系。 ROL壁垒除了通气组织外,还有助于尼加拉瓜Z.nicaraguensis的耐涝性.CAS注册号9005-53-2 8072-95-5

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