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在紫花苜蓿(Medicago sativa L. cv. verko)发育过程中瓜氨酸的代谢和分泌。

Metabolism and exudation of canavanine during development of alfalfa (Medicago sativa L. cv. verko).

机构信息

Institute of Biochemistry Division of Plant Biochemistry, University of Halle, Germany.

出版信息

J Chem Ecol. 1992 Nov;18(11):2117-29. doi: 10.1007/BF00981932.

Abstract

The structural analog of amino acidL-arginine,L-canavanine (2-amino-4-guanidinooxybutyric acid), is found in 26 cultivars of alfalfa. Its concentration ranges from 6 to 16 mg/g of dry seeds. Canavanine represented more than 70% of the total soluble nitrogen in seeds. Practically all of the canavanine was stored in the cotyledons. Comparison is made of the canavanine content in the cultivars Verko and Europa harvested in different years. During sprouting, 29% of the guanidinooxy compound was translocated into the hypocotyl and radicle in 24 hr. In this early stage of seedling development, the level of the nonprotein amino acid, canavanine, increased threefold whereas the protein amino acid, arginine, as well as asparagine increased 11- and 35-fold, respectively. Two-day-old seedlings are capable of synthesizing canavanine derived from canaline up to 25%. Contrary to this finding in seedlings grown in the time range of 24 days, the guanidino compounds canavanine and arginine were metabolized rapidly, whereas asparagine increased. Furthermore, the toxic canavanine got into the environment of swelled seeds or into the rhizosphere of young seedlings and increased in the milieu to concentrations at 3-57μM. In a biotest, this inhibited the growth of a tomato cell suspension culture as well as the growth of cabbage radicle.

摘要

L-精氨酸的结构类似物 L-瓜氨酸(2-氨基-4-胍基氧基丁酸)存在于 26 个紫花苜蓿品种中。其浓度范围为干种子的 6 至 16mg/g。瓜氨酸占种子中总可溶氮的 70%以上。几乎所有的瓜氨酸都储存在子叶中。比较了不同年份收获的品种 Verko 和 Europa 中的瓜氨酸含量。在发芽期间,29%的胍氧基化合物在 24 小时内转移到下胚轴和胚根中。在幼苗发育的早期阶段,非蛋白氨基酸瓜氨酸的水平增加了三倍,而蛋白质氨基酸精氨酸以及天冬酰胺分别增加了 11 倍和 35 倍。两天大的幼苗能够合成高达 25%的瓜氨酸。与在 24 天的时间范围内生长的幼苗的这一发现相反,胍基化合物瓜氨酸和精氨酸被迅速代谢,而天冬酰胺增加。此外,有毒的瓜氨酸进入膨胀种子的环境或幼苗的根际,并在环境中增加到 3-57μM 的浓度。在生物测试中,这抑制了番茄细胞悬浮培养物的生长以及白菜胚根的生长。

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