Nakajima N, Hiradate S, Fujii Y
National Institute of Agro-Environmental Sciences, 3-1-1 Kan-nondai, Tsukuba, Ibaraki 305-8604, Japan.
J Chem Ecol. 2001 Jan;27(1):19-31. doi: 10.1023/a:1005659714947.
L-Canavanine is a nonprotein amino acid contained in jack bean [Canavalia ensiformis (L.) DC] and shows a plant inhibitory effect. The inhibitory effect was determined by an immersion test and a microdrop test that employed rice seedlings. L-Canavanine inhibited elongation of the second leaf sheath of rice seedlings more than other natural bioactive substances, such as salicylic acid and cinnamic acid. The modified microdrop test revealed that the mode of action of L-canavanine had no relation to gibberellin synthesis. In the microdrop test, the inhibitory effect of L-canavanine was decreased by simultaneous addition of L-arginine, an analog of L-canavanine. Free amino acid analysis of rice shoots clearly showed that L-canavanine induced an unusual accumulation of L-arginine. However, accumulation of L-arginine did not cause the inhibitory effect on plant growth. These results suggest that the mechanism of inhibition of L-canavanine is closely related to the inhibition of arginine metabolism.
L-刀豆氨酸是一种存在于刀豆[Canavalia ensiformis (L.) DC]中的非蛋白质氨基酸,具有植物抑制作用。通过使用水稻幼苗的浸液试验和微滴试验测定了其抑制作用。与水杨酸和肉桂酸等其他天然生物活性物质相比,L-刀豆氨酸对水稻幼苗第二叶鞘伸长的抑制作用更强。改良的微滴试验表明,L-刀豆氨酸的作用模式与赤霉素合成无关。在微滴试验中,同时添加L-刀豆氨酸的类似物L-精氨酸可降低L-刀豆氨酸的抑制作用。对水稻芽的游离氨基酸分析清楚地表明,L-刀豆氨酸诱导了L-精氨酸的异常积累。然而,L-精氨酸的积累并未对植物生长产生抑制作用。这些结果表明,L-刀豆氨酸的抑制机制与精氨酸代谢的抑制密切相关。