首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >Comparison of flash-induced light-scattering transients and proton efflux from auxinic-herbicide resistant and susceptible wild mustard protoplasts: a possible role for calcium in mediating auxinic herbicide resistance
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Comparison of flash-induced light-scattering transients and proton efflux from auxinic-herbicide resistant and susceptible wild mustard protoplasts: a possible role for calcium in mediating auxinic herbicide resistance

机译:耐生长性除草剂和易感野生芥子原生质体的闪光诱导的光散射瞬变和质子外排的比较:钙在介导生长素除草剂抗性中的可能作用

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Comparison of flash-induced light-scattering signals from protoplasts of auxinic herbicide-resistant ('R') and -susceptible ('S') wild mustard biotypes suggest that ATP-dependent activity manifested as a conformational change differs between the biotypes. The signal obtained from R protoplasts is unaffected by 50 fiM picloram, an auxin analogue. In comparison, the signal amplitude from the S protoplasts decreases 40% in 20 uM picloram and is abolished in 50 uM. picloram. Signal amplitude from the R protoplasts can be decreased by simultaneous incubation with 50 uM picloram and 50 uM verapamil, a calcium channel blocker. Incubation of the S protoplasts with the calcium ionophore A23187 in the presence of 0.5 mM calcium reduced the inhibitory effect of picloram. Absorbance spectrophotometry using acridine orange as a pH indicator suggests that picloram affects the proton flux in the S biotype only. Based on these results, we hypothesize that picloram affects the calcium and hydrogen dynamics in the S biotype. Because the scattering characteristics of S protoplasts incubated with picloram can be nearly reproduced in the R protoplasts by simultaneous incubation with picloram and verapamil, calcium may have a significant role in modulating auxinic herbicide resistance. To our knowledge, this is the first report to implicate such a role for calcium.
机译:生长素抗性('R')和易感性('S')野生芥菜生物型原生质体的闪光诱导的光散射信号的比较表明,构象变化表现出的ATP依赖性活性在生物型之间有所不同。从R原生质体获得的信号不受生长素类似物50 fiM picloram的影响。相比之下,来自S原生质体的信号幅度在20 uM吡咯仑中降低40%,在50 uM中消除。吡咯仑。 R原生质体的信号幅度可以通过与50 uM吡咯仑和50 uM维拉帕米(钙通道阻滞剂)同时孵育来降低。在0.5 mM的钙存在下,用钙离子载体A23187孵育S原生质体可降低吡咯仑的抑制作用。使用a啶橙作为pH指示剂的吸光光度法表明,吡咯烷仅影响S生物型中的质子通量。基于这些结果,我们假设吡咯烷酮会影响S生物型中的钙和氢动力学。通过与吡咯仑和维拉帕米同时孵育,与吡咯烷温育的S原生质体的散射特性几乎可以在R原生质体中再现,因此钙可能在调节植物生长素对除草剂的抗性中具有重要作用。据我们所知,这是第一个暗示钙起这种作用的报告。

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