首页> 外文OA文献 >Properties of Proton Pumping in Response to Blue Light and Fusicoccin in Guard Cell Protoplasts Isolated from Adaxial Epidermis of Vicia Leaves.
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Properties of Proton Pumping in Response to Blue Light and Fusicoccin in Guard Cell Protoplasts Isolated from Adaxial Epidermis of Vicia Leaves.

机译:从蚕豆叶片的表皮分离的保卫细胞原生质体中质子泵激响应蓝光和岩藻球菌素的特性。

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摘要

Guard cell protoplasts (GCPs) were isolated from the adaxial epidermis of Vicia leaves. The properties of isolated adaxial GCPs (ad GCPs) were compared with those of abaxial GCPs (ab GCPs) with respect to H+-pumping activity. A saturating pulse of blue light (200 [mu]mol m-2 s-1, 30 s) induced H+ pumping in both ad GCPs and ab GCPs under red light. The maximum rate of blue-light-dependent H+ pumping was slightly higher in ad GCPs than in ab GCPs, but the magnitude of H+ pumping in ad GCPs was 68% of that in ab GCPs. H+ pumping was responsive to the second pulse, and the rate and magnitude of the pumping increased with the time between two pulses. The periods required to achieve 50% of the maximum rate were 12 and 22 min for ad GCPs and ab GCPs, respectively. The rates of blue-light-dependent H+ pumping were saturable, with half-saturation at 630 [mu]mol m-2 (21 [mu]mol m-2 s-1, 30 s) for ad GCPs and 105 [mu]mol m-2 (3.5 [mu]mol m-2 s-1, 30s) for ab GCPs. In contrast, fusicoccin, an activator of the plasma membrane H+- ATPase, induced H+ pumping with a slightly higher rate in ad GCPs than in ab GCPs. Both types of protoplast swelled similarly in response to fusicoccin. These results suggest that ad GCPs have almost the same activity for H+ pumping as ab GCPs, whereas ad GCPs require a larger number of photons to activate the H+ pump than ab GCPs.
机译:从蚕豆叶片的表皮分离出保卫细胞原生质体(GCP)。就H +泵浦活性而言,比较了分离的近轴GCP(ad GCP)和远轴GCP(ab GCP)的性能。蓝光的饱和脉冲(200μmolm-2 s-1,30 s)在红光下在ad GCP和ab GCP中引起H +泵浦。 ad GCP中蓝光依赖的H +泵浦的最大速率略高于ab GCP,但ad GCP中H +泵浦的幅度是ab GCP的68%。 H +泵浦响应第二个脉冲,并且泵浦的速率和幅度随两个脉冲之间的时间而增加。对于ad GCP和ab GCP,达到最高速率50%所需的时间分别为12分钟和22分钟。依赖于蓝光的H +抽运的速率是可饱和的,对于ad GCP和105μg,半饱和分别为630μmolm-2(21μmolm-2 s-1、30 s)。对于ab GCP,每摩尔m-2(3.5μm-2s-1,30s)。相反,fusicoccin是质膜H +-ATPase的激活剂,在ad GCP中诱导H +泵入的速率略高于在Ab GCP中。响应于fusicoccin,两种类型的原生质体均以类似方式膨胀。这些结果表明,ad GCP与ab GCP具有几乎相同的H +泵浦活性,而ad GCP与ab GCP相比,需要更多的光子来激活H +泵浦。

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