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首页> 外文期刊>Plant Cell Reports >Isolation of mitochondria from embryogenic cultures of Picea abies (L.) Karst. and Abies cephalonica Loud.: characterization of a K (ATP) (+) channel
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Isolation of mitochondria from embryogenic cultures of Picea abies (L.) Karst. and Abies cephalonica Loud.: characterization of a K (ATP) (+) channel

机译:从云杉云杉的胚发生培养物中分离线粒体。和头顶冷杉:K(ATP)(+)通道的表征

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摘要

A valuable method to isolate and purify mitochondria from embryonal masses of two coniferous species (Picea abies [L.] Karst. and Abies cephalonica Loud.) is described. Crude mitochondria from both species were shown to be intact, oxygen consuming (with malate plus glutammate, succinate and NADH as substrates) and well coupled (respiratory control ratio ca. 4). The oxidation of the substrates was only partially KCN-insensitive (alternative oxidase) in some cases. However, these fractions were contaminated by membranes (e.g. plasmalemma, tonoplast, Golgi and endoplasmic reticulum). After purification by a discontinuous Percoll gradient (18, 23, 40%, v/v), three mitochondrial populations were separated. The 0/18 interface fraction was composed mainly of broken and uncoupled mitochondria, while the other two (18/23 and 23/40 interface fractions) contained intact and coupled mitochondria, but only 23/40 interface fraction revealed to be better purified starting from both coniferous embryonal masses. In the latter purified fraction, the presence of a cyclosporin A-sensitive K (ATP) (+) channel was demonstrated. These findings were discussed in the light of the potential use of these mitochondrial fractions in bioenergetic studies, or in the involvement of these organelles to stress response in conifers.
机译:描述了一种从两种针叶树种(Picea abies [L.] Karst。和Abies cephalonica Loud。)的胚团中分离和纯化线粒体的有价值的方法。这两个物种的线粒体均完好无损,耗氧(苹果酸加谷氨酸盐,琥珀酸盐和NADH为底物)且耦合良好(呼吸控制比约为4)。在某些情况下,底物的氧化仅是部分对KCN不敏感的(替代氧化酶)。但是,这些部分被膜污染(例如质膜,液泡膜,高尔基体和内质网)。通过不连续的Percoll梯度(18、23、40%,v / v)纯化后,分离了三个线粒体群体。 0/18界面部分主要由破碎和解耦的线粒体组成,而其他两个(18/23和23/40界面部分)包含完整的和耦合的线粒体,但只有23/40界面部分显示从以下位置开始可以更好地纯化均为具针叶的胚胎。在后者的纯化级分中,证明存在环孢菌素A敏感K(ATP)(+)通道。鉴于这些线粒体级分在生物能学研究中的潜在用途,或这些细胞器参与针叶树对应激反应的影响,对这些发现进行了讨论。

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