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The 7B-1 mutant in tomato shows blue-light-specific resistance to osmotic stress and abscisic acid

机译:番茄中的7B-1突变体显示出对渗透压和脱落酸的蓝光特异性抗性

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Germination of wild-type (WT) tomato (Lycopersicon esculentum Mill.) seed is inhibited by mannitol (100–140 mM) in light, but not in darkness, suggesting that light amplifies the responsiveness of the seed to osmotic stress (M. Fellner, V.K. Sawhney (2001) Theor Appl Genet 102:215–221). Here we report that white light (W) and especially blue light (B) strongly enhance the mannitol-induced inhibition of seed germination, and that the effect of red light (R) is weak or nil. The inhibitory effect of mannitol could be completely overcome by fluridone, an inhibitor of abscisic acid (ABA) biosynthesis, indicating that mannitol inhibits seed germination via ABA accumulation in seeds. The inhibition of WT seed germination by exogenous ABA was also amplified by W or B, but not by R. In a recessive, ABA-overproducing, 7B-1 mutant of tomato, seed germination and hypocotyl growth were resistant to inhibition by mannitol or exogenous ABA, both in W or B. Experiments with fluridone suggested that inhibition of hypocotyl growth by W or B is also partially via ABA accumulation. De-etiolation in the mutant was especially less in B compared to the WT, and there was no difference in hypocotyl growth between the two genotypes in R. Our data suggest that B amplifies the responsiveness of tomato seeds and hypocotyls to mannitol and ABA, and that W- or B-specific resistance of the 7B-1 mutant to osmotic stress or ABA is a consequence of a defect in B perception or signal transduction.
机译:甘露醇(100–140 mM)在光照下抑制野生型(WT)番茄(Lycopersicon esculentum Mill。)种子的发芽,而在黑暗中则不受其抑制,这表明光增强了种子对渗透胁迫的响应能力(M. Fellner ,VK Sawhney(2001)Theor Appl Genet 102:215–221)。在这里,我们报道白光(W)尤其是蓝光(B)强烈增强了甘露醇对种子发芽的抑制作用,而红光(R)的作用微弱或无效。脱落酸(ABA)生物合成的抑制剂氟啶酮可完全克服甘露醇的抑制作用,这表明甘露醇通过种子中的ABA积累抑制种子发芽。 W或B增强了外源ABA对WT种子发芽的抑制作用,但R却未增强。在隐性,高产ABA的番茄7B-1突变体中,种子发芽和下胚轴生长均对甘露醇或外源抑制具有抗性W或B中都存在ABA。使用氟啶酮的实验表明,W或B对下胚轴生长的抑制也部分是通过ABA的积累。与WT相比,B突变体中的去异烟更少,R的两个基因型之间的下胚轴生长没有差异。我们的数据表明,B增强了番茄种子和下胚轴对甘露醇和ABA的响应能力,并且认为7B-1突变体对渗透压或ABA的W或B特异性抗性是B感知或信号转导缺陷的结果。

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