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脱落的棉子叶中苯乙酸的生理意义。

The physiological significance of phenylacetic Acid in abscising cotton cotyledons.

机构信息

United States Department of Agriculture, State University Station, Fargo, North Dakota 58105.

出版信息

Plant Physiol. 1986 Jun;81(2):434-8. doi: 10.1104/pp.81.2.434.

Abstract

The physiological role of phenylacetic acid (PAA) as an endogenous regulator of cotyledon abscission was examined using cotton (Gossypium hirsutum L. cv LG 102) seedlings. Application of 100 micromolar or more PAA to leafless cotyledon abscission-zone explants resulted in the retardation of petiole abscission and a decrease in the rise of ethylene evolution that normally accompanies aging of these explants in vitro. The partial inhibition of ethylene evolution in these explants by PAA was indirect since application of this compound stimulated short-term (<24 hours) ethylene production. PAA treatment partially suppressed the stimulation of petiole abscission elicited by either ethylene or abscisic acid. Both free and an acid-labile, bound form of PAA were identified in extracts prepared from cotyledons. No discernible pattern of changes in free or bound PAA was found during the course of ethylene-induced cotyledon abscission. Unlike indole-3-acetic acid, transport of PAA in isolated petiole segments was limited and exhibited little polarity. On the whole, these results are not consistent with the direct participation of PAA in the endogenous regulation of cotyledon abscission.

摘要

使用棉花(Gossypium hirsutum L. cv LG 102)幼苗研究了苯乙酸(PAA)作为内源调节剂在子叶脱落中的生理作用。将 100 微米或更多的 PAA 应用于无叶子叶脱落区外植体,导致叶柄脱落延迟,并降低了乙烯释放的增加,而乙烯释放的增加通常伴随着这些外植体在体外老化。PAA 对这些外植体中乙烯释放的部分抑制是间接的,因为该化合物的应用刺激了短期(<24 小时)乙烯的产生。PAA 处理部分抑制了乙烯或脱落酸引起的叶柄脱落的刺激。从子叶中提取的提取物中鉴定出游离的和酸不稳定的结合形式的 PAA。在乙烯诱导的子叶脱落过程中,未发现游离或结合 PAA 的明显变化模式。与吲哚-3-乙酸不同,在分离的叶柄段中 PAA 的运输是有限的,并且极性很小。总的来说,这些结果与 PAA 直接参与内源调节子叶脱落不一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5390/1075353/b534183213c8/plntphys00602-0116-a.jpg

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