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Isolation and characterization of a barley mutant with abscisic-acid-insensitive stomata

机译:具有脱落酸不敏感气孔的大麦突变体的分离和表征

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A barley (Hordeum vulgareL.) mutant (“cool”) with leaf transpiration unaffected by the application of 1 mM abscisic acid (ABA) was isolated from the population of M2 seedlings using thermography (electronic visualization, and quantitation of the temperature profiles on the surface of the leaves). Stomata of the mutant plants were insensitive to exogenously applied ABA, darkness, and such desiccation treatments as leaf excision and drought stress. The evaporative cooling of the leaves of the “cool” barley was always higher than that of the wild-type barley, even without ABA application, indicating that the diffusive resistance of the mutant leaves to water loss was always lower. Guard-cell morphology and stomatal density as well as ABA level and metabolism were seemingly unaltered in the mutant plants. In addition, gibberellin-induced α-amylase secretion and precocious embryo germination in the mutant barley was inhibited by ABA to the same extent as in the wild-typ
机译:使用热成像(电子可视化和定量叶片表面的温度曲线)从M2幼苗群体中分离出具有叶片蒸腾作用不受施用1mM脱落酸(ABA)影响的大麦(Hordeum vulgareL.)突变体(“冷”)。突变株气孔对外源性ABA、黑暗以及叶片切除和干旱胁迫等干燥处理不敏感。即使没有施用ABA,“冷”大麦叶片的蒸发冷却量也始终高于野生型大麦,表明突变体叶片对失水的扩散抵抗力始终较低。在突变植物中,保卫细胞形态和气孔密度以及ABA水平和新陈代谢似乎没有改变。此外,赤霉素诱导的突变大麦中α-淀粉酶分泌和早熟胚芽萌发受到ABA的抑制,其程度与野生型相同

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