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Kaempferol Glycosides and Enzymes of Flavonol Biosynthesis in Leaves of a Soybean Strain with Low Photosynthetic Rates

机译:低光合速率大豆菌株叶片中的山奈酚糖苷和黄酮醇的合成酶

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摘要

Soybean (Glycine max L.) strains which accumulate kaempferol 3-(2G-glucosylgentiobioside) in their leaves fix CO2 at rates significantly lower than those lacking this compound (Buttery, Buzzell 1976 Crop Sci 16: 547-550), and kaempferol aglycone is a well known inhibitor of photosynthesis in vitro. However, since neither kaempferol nor any of its glycosides could be detected in mesophyll cells isolated from mature soybean leaves we suspect that kaempferol 3-(2G-glucosylgentiobioside) has no direct inhibitory effect on photosynthesis. The most rapid stage of flavonoid accumulation, and the highest level of activity for several enzymes of phenolic biosynthesis, occurs in leaflets 2.5 to 3 centimeters long. Mesophyll cells isolated from these leaflets contain about 70% of the whole leaf activity for shikimate dehydrogenase, 24% of the 4-coumarate:CoA ligase activity, 35% of the activity for chalcone-flavanone isomerase, but no demonstrable activity for phenylalanine ammonialyase. Our results suggest a highly tissue-specific pattern of secondary phenolic metabolism in soybean leaves.
机译:大豆(Glycine max L.)品系在​​其叶片中积聚山fer酚3-(2 G -葡萄糖基龙胆苷)的菌株以比缺乏该化合物的农作物低得多的速率固定CO2(Buttery,Buzzell 1976 Crop Sci 16:547 -550),而山emp酚苷元是体外光合作用的众所周知的抑制剂。然而,由于在从成熟大豆叶片分离的叶肉细胞中均未检出山fer酚或其任何糖苷,我们怀疑山ka酚3-(2 G -葡糖基龙胆苷)对光合作用没有直接的抑制作用。类黄酮积累的最快阶段,以及酚类生物合成中几种酶的最高活性水平,发生在2.5至3厘米长的小叶中。从这些小叶中分离出的叶肉细胞含有约70%的全叶sh草酸脱氢酶活性,24%的4-香豆酸酯:CoA连接酶活性,35%的查尔酮-黄酮酮异构酶活性,但没有可证明的苯丙氨酸氨解酶活性。我们的结果表明大豆叶片中次级酚类代谢的高度组织特异性模式。

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