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单宁酸作为赤霉素的拮抗剂。

Tannins as gibberellin antagonists.

机构信息

Department of Biology, San Fernando Valley State College, Northridge, California 91324.

出版信息

Plant Physiol. 1972 Mar;49(3):323-30. doi: 10.1104/pp.49.3.323.

Abstract

Fourteen chemically defined hydrolyzable tannins and six impure mixtures of either condensed or hydrolyzable tannins were found to inhibit the gibberellin-induced growth of light-grown dwarf pea seedlings. The highest ratio of tannins to gibberellic acid tested (1000: 1 by weight) inhibited from 80 to 95% of the induced growth for all tannins tested except for two monogalloyl glucose tannins which inhibited only 50% of the induced growth. The lowest ratio tested (10: 1) inhibited the induced growth by less than 25% except for the case of terchebin where 50% inhibition was found. The inhibition of gibberellin-induced growth was found to be completely reversed by increasing the amount of gibberellin in three cases tested. Tannins alone did not inhibit endogenous growth of either dwarf or nondwarf pea seedlings. Eight compounds related to tannins, including coumarin, trans-cinnamic acid, and a number of phenolic compounds were also tested as gibberellin antagonists. Most of these compounds showed some inhibition of gibberellin-induced growth, but less than that of the tannins. At the highest ratio (1000: 1) the greatest inhibition was 55%; at the lowest ratio (10: 1) no more than 17% was observed. These compounds did not inhibit endogenous growth, and the inhibition of gibberellin-induced growth could be reversed by increasing the amount of gibberellin in two cases tested.Six chemically defined tannins were found to inhibit hypocotyl growth induced by gibberellic acid in cucumber seedlings. Growth induced by indoleacetic acid in the same test was not inhibited. The highest ratio of tannin to promotor tested gave strong inhibition of gibberellic acid-induced growth, but actually enhanced the growth induced by indoleacetic acid. This difference in action suggests a specificity between the tannins and gibberellic acid.

摘要

十四种化学定义的水解单宁和六种不纯的缩合或水解单宁混合物被发现抑制赤霉素诱导的光生长矮化豌豆幼苗生长。测试的单宁与赤霉素的最高比例(按重量计为 1000:1)抑制了所有测试的单宁中 80%至 95%的诱导生长,除了两种单没食子酰葡萄糖单宁,它们只抑制了 50%的诱导生长。测试的最低比例(10:1)抑制诱导生长不到 25%,除了特切宾情况,发现抑制率为 50%。在三种测试的情况下,通过增加赤霉素的量,发现对赤霉素诱导生长的抑制作用完全逆转。单宁本身不会抑制矮化或非矮化豌豆幼苗的内源生长。八种与单宁有关的化合物,包括香豆素、反式肉桂酸和一些酚类化合物,也被测试为赤霉素拮抗剂。这些化合物中的大多数显示出对赤霉素诱导生长的一定抑制作用,但不如单宁强。在最高比例(1000:1)下,最大抑制率为 55%;在最低比例(10:1)下,观察到的抑制率不超过 17%。这些化合物不会抑制内源生长,并且在两种测试的情况下,通过增加赤霉素的量可以逆转对赤霉素诱导生长的抑制。六种化学定义的单宁被发现抑制黄瓜幼苗中赤霉素诱导的下胚轴生长。在相同的测试中,吲哚乙酸诱导的生长没有被抑制。测试的单宁与促进剂的最高比例对赤霉素诱导的生长有很强的抑制作用,但实际上增强了吲哚乙酸诱导的生长。这种作用的差异表明单宁和赤霉素之间存在特异性。

相似文献

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Tannins as gibberellin antagonists.单宁酸作为赤霉素的拮抗剂。
Plant Physiol. 1972 Mar;49(3):323-30. doi: 10.1104/pp.49.3.323.
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Auxin-gibberellin interaction in apical dominance.顶端优势中的生长素-赤霉素相互作用
Plant Physiol. 1967 Oct;42(10):1329-33. doi: 10.1104/pp.42.10.1329.

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