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乙烯诱导的豌豆节间肿胀:其与核糖核酸代谢、壁蛋白合成及细胞壁结构的关系

Ethylene-induced Pea Internode Swelling: Its Relation to Ribonucleic Acid Metabolism, Wall Protein Synthesis, and Cell Wall Structure.

作者信息

Eisinger W R, Burg S P

机构信息

Department of Biology, University of Miami, and Fairchild Tropical Gardens, Coral Gables, Florida 33156.

出版信息

Plant Physiol. 1972 Oct;50(4):510-7. doi: 10.1104/pp.50.4.510.

Abstract

Exposure of etiolated pea (Pisum sativum L. var. Alaska) subapical sections to ethylene disrupts normal polar cell expansion, but fresh weight increase is little affected and the tissue expands radially, swelling. Ethylene has no effect on gross ribonucleic acid metabolism before or during the period when swelling occurs, but incorporation of (14)C-proline and leucine into wall-associated protein is markedly inhibited after an initial 3-hour lag period which precedes swelling. Ethylene affects the composition of this protein, altering the proline-hydroxyproline ratio. The gas also alters the optical birefringence pattern of the cell wall, indicating that the cellulose microfibrillar orientation has been changed.

摘要

将黄化豌豆(豌豆属阿拉斯加变种)亚顶端切片暴露于乙烯中会破坏正常的极性细胞扩展,但鲜重增加几乎不受影响,组织会径向扩展并肿胀。在肿胀发生之前或期间,乙烯对总核糖核酸代谢没有影响,但在肿胀前最初3小时的延迟期后,(14)C-脯氨酸和亮氨酸掺入与细胞壁相关的蛋白质的过程受到显著抑制。乙烯会影响这种蛋白质的组成,改变脯氨酸-羟脯氨酸的比例。这种气体还会改变细胞壁的光学双折射模式,表明纤维素微纤丝的取向发生了变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7af8/366180/be103ced7c99/plntphys00247-0095-a.jpg

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