Suppr超能文献

衰老对红花叶片膜转运的影响机制:切花休克中乙烯的可能参与。

Mechanism of effect of aging on membrane transport in leaf strips of Centranthus ruber: Possible ethylene involvement in cutting shock.

机构信息

Department of Botany, Hebrew University of Jerusalem, Jerusalem, Israel.

出版信息

Planta. 1980 Dec;150(5):380-4. doi: 10.1007/BF00390173.

Abstract

Cerulenin has been used to investigate the mechanism by which leaf strips of Centranthus ruber (L.) Lam et D.C. increase their capacity for solute uptake during a period of incubation in CaSO4 ("aging"). α-Aminoisobutyric acid was used to assess uptake capability. The leaf strips developed their uptake capacity for at least 8-10 h after excision. Cerulenin, if added to the aging medium immediately after cutting or at any time during the aging process, almost completely halted this development, but did not bring about loss of the uptake capacity already achieved. That cerulenin was specifically interfering with fatty-acid biosynthesis was indicated by the fact that it drastically depressed incorporation of labelled acetate into the lipid fraction but did not affect the incorporation of labelled alanine. Cycloheximide strongly inhibited the development of uptake capacity, but sensitivity to actinomycin D was not evident for at least 2 h. The results are consistent with the concept that slicing leads to immediate damage to tissue membranes and that "aging" is a process of membrane repair, involving renewed synthesis of membrane lipids and membrane proteins.The damage to membranes associated with cutting may involve wound ethylene. This is indicated by the following findings: Treatment of aged leaf strips with Ethrel (2-chloroethylphosphonic acid) resulted in drastic loss of their acquired uptake capacity. The strips recovered from such Ethrel-induced loss of uptake capacity while aging in CaSO4 as they can after cutting. Cerulenin halted recovery of uptake capacity after ethrel treatment just as it did after cutting. Treatment of leaves before cutting with amino-ethoxyvinylglycine somewhat improved the uptake performance of leaf strips immediately after excision.

摘要

苍耳亭被用来研究红花(Centranthus ruber(L.)Lam et D.C.)叶片条在 CaSO4 中孵育期间增加溶质摄取能力的机制(“老化”)。α-氨基异丁酸被用来评估摄取能力。叶片条在切除后至少 8-10 小时内发展出摄取能力。苍耳亭如果在切割后立即或在老化过程中的任何时间添加到老化介质中,几乎完全阻止了这种发展,但不会导致已经达到的摄取能力丧失。苍耳亭专门干扰脂肪酸生物合成的事实表明,它极大地抑制了标记乙酸盐掺入脂质部分,但不影响标记丙氨酸的掺入。环己亚胺强烈抑制摄取能力的发展,但对放线菌素 D 的敏感性在至少 2 小时内不明显。结果与以下概念一致,即切片会立即对组织膜造成损伤,而“老化”是膜修复的过程,涉及膜脂和膜蛋白的重新合成。与切割相关的膜损伤可能涉及伤口乙烯。以下发现表明了这一点:用 Ethrel(2-氯乙基膦酸)处理老化的叶片条会导致其获得的摄取能力急剧丧失。这些叶片条在 Ethrel 诱导的摄取能力丧失后,在 CaSO4 中老化时,就像切割后一样恢复了摄取能力。苍耳亭在 Ethrel 处理后阻止了摄取能力的恢复,就像在切割后一样。在切割前用氨基乙氧基乙烯基甘氨酸处理叶片会稍微提高叶片条切除后立即的摄取性能。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验