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乙烯促进不定根的形成和根皮层气腔(通气组织)的发育,可能是玉米适应水淹的适应反应。

Ethylene-promoted adventitious rooting and development of cortical air spaces (aerenchyma) in roots may be adaptive responses to flooding in Zea mays L.

机构信息

Letcombe Laboratory, Agricultural Research Council, OX12 9JT, Wantage, U.K..

出版信息

Planta. 1979 Oct;147(1):83-8. doi: 10.1007/BF00384595.

Abstract

The roots and stem base of intact, 10 day old maize (Zea mays L. cv. LG11) plants, grown in nutrient solution, were continuously aerated either with ethylene (5 μl l(-1)) in air or with air alone. Ethylene treatment hastened the emergence of adventitious (nodal) roots from the base of the shoot, but slowed their subsequent extension. Ethylene also promoted the collapse of cells in the cortex of these roots, with lysigenous development of prominent air spaces (aerenchyma). Non-aeration of the nutrient solution caused endogenously produced ethylene to accumulate in the roots, and stimulated both the emergence of adventitious roots and the formation of cortical air spaces in them. With non-aeration the concentration of oxygen did not fall below 1% in the equilibrium gas phase (air=20.8%). Complete deoxygenation of the nutrient solution, produced by passing oxygen-free nitrogen gas, prevented both air space formation and the evolution of ethylene by root segments.These results suggest that adventitious rooting and cortical air space formation in nodal roots in Zea mays may be stimulated by enhanced concentrations of endogenous ethylene arising either from entrapment of the gas by unstirred water layers around the roots and/or by increased biosynthesis. These responses are considered conducive to survival in waterlogged soil.

摘要

完整的、10 天大的玉米(Zea mays L. cv. LG11)植株的根和茎基部,在营养液中生长,用空气或单独的空气连续通气,空气含乙烯(5 μl l(-1))。乙烯处理加速了从芽基部出现不定根(节根),但随后抑制了其延伸。乙烯还促进了这些根皮层细胞的崩溃,导致明显气腔(通气组织)的溶生发育。营养液不曝气导致内源产生的乙烯在根中积累,并刺激不定根的出现和皮层气腔的形成。在不曝气的情况下,平衡气相(空气=20.8%)中的氧气浓度不会降至 1%以下。用无氧氮气通过完全脱氧营养液,防止了通气组织形成和根段乙烯的释放。这些结果表明,玉米节根不定根的生根和皮层通气组织的形成可能受到内源乙烯浓度增强的刺激,这种增强可能是由于根周围未搅动水层对气体的截留和/或生物合成增加所致。这些反应被认为有利于在水淹土壤中的生存。

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