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赤霉素对大麦糊粉层组织戊聚糖生物合成的调控。

Regulation of pentosan biosynthesis in barley aleurone tissue by gibberellic acid.

机构信息

Botany Department California, State University-San Diego, 92115, San Diego, California, USA.

出版信息

Planta. 1973 Dec;111(4):353-64. doi: 10.1007/BF00385555.

Abstract

Treatment of isolated barley aleurone layers with gibberellic acid (GA3) resulted in a progressive inhibition of cell-wall synthesis after a 4-h lag period. The incorporation of both [(14)C]arabinose and [(14)C]glucose into the cell wall was inhibited by GA3, but analysis of the labelled sugars in the polymerized product showed that the process most affected by the hormone treatment was pentosan biosynthesis. Labelling kinetics and pulse-chase analysis indicated that the pentosans were synthesized in the cytoplasm and subsequently transferred to the cell wall; GA3 did not significantly affect the latter step. The GA3-inhibited labelling of the cell-wall pentosans cannot be explained on the basis of an effect on uptake of radioactive cell-wall precursor, expansion of the free pentose pool, or degradation of newly-formed pentosan. GA3 inhibited the activity of a membrane-bound arabinosyl transferase present in the aleurone layers. This inhibition may explain the inhibition of cell-wall pentosan synthesis by GA3.

摘要

用赤霉素(GA3)处理分离的大麦糊粉层,在 4 小时的潜伏期后,细胞壁合成逐渐受到抑制。GA3 抑制了 [(14)C]阿拉伯糖和 [(14)C]葡萄糖掺入细胞壁,但对聚合产物中标记糖的分析表明,受激素处理影响最大的是戊聚糖生物合成。标记动力学和脉冲追踪分析表明,戊聚糖在细胞质中合成,然后转移到细胞壁;GA3 对后一步骤没有显著影响。GA3 抑制细胞壁戊聚糖的标记不能用对放射性细胞壁前体摄取、游离戊糖池扩张或新形成的戊聚糖降解的影响来解释。GA3 抑制了糊粉层中存在的一种膜结合阿拉伯糖基转移酶的活性。这种抑制可能解释了 GA3 对细胞壁戊聚糖合成的抑制。

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