首页> 外文OA文献 >The Lipoxygenase Isozymes in Soybean [Glycine max (L.) Merr.] Leaves (Changes during Leaf Development, after Wounding, and following Reproductive Sink Removal).
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The Lipoxygenase Isozymes in Soybean [Glycine max (L.) Merr.] Leaves (Changes during Leaf Development, after Wounding, and following Reproductive Sink Removal).

机译:大豆[Glycine max(L.)Merr。]叶片中的脂氧合酶同工酶(叶片发育过程中,伤后和生殖池去除后的变化)。

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摘要

The levels of individual lipoxygenase isozymes in soybean [Glycine max (L.) Merr.] leaves were assessed during leaf development, after mechanical wounding, and in response to reproductive sink removal. Native isoelectric focusing followed by immunoblotting was employed to examine individual lipoxygenase isozymes. In leaves of all ages, two distinct classes of lipoxygenase isozymes were detected. One class of lipoxygenase isozymes had nearly neutral isoelectric points (pls) ranging from pH 6.8 to 7.2. The other class of lipoxygenase isozymes had acidic pls ranging from pH 4.7 to 5.6. During leaf development, all of the neutral lipoxygenase isozymes and most of the acidic isozymes were present in greatest abundance in the youngest leaves examined and declined in amount as leaf age increased. However, four acidic lipoxygenase isozymes (pl = 4.70, 4.80, 4.90, 4.95) were more abundant in intermediateage leaves than in either the youngest or oldest leaves examined. Following mechanical wounding of leaves, these same four acidic isozymes also increased in abundance both locally and systemically in leaves from wounded plants. Unlike the specific effects of wounding on the lipoxygenase isozymes in leaves, reproductive sink removal stimulated a general increase in most of the acidic lipoxygenase isozymes in leaves.
机译:在叶片发育过程中,机械损伤后以及对生殖池去除的响应中,评估了大豆[Glycine max(L.)Merr。]叶片中单个脂氧合酶同工酶的水平。采用天然等电聚焦,然后进行免疫印迹来检查各个脂氧合酶同工酶。在所有年龄的叶片中,检测到两种不同的脂氧合酶同工酶。一类脂氧合酶同工酶具有接近中性的等电点(pls),范围为pH 6.8至7.2。另一类脂氧合酶同工酶的酸性pl范围为pH 4.7至5.6。在叶片发育过程中,所有中性脂氧合酶同工酶和大多数酸性同工酶在检查的最年轻叶片中以最大丰度存在,并且随着叶片年龄的增加而下降。然而,中叶中的四种酸性脂氧合酶同工酶(p1 = 4.70、4.80、4.90、4.95)比所检查的最年轻或最老的叶片中含量更高。机械损伤叶片后,这四种相同的酸性同工酶在受伤植物的叶片中局部和系统地丰富。不同于伤口对叶片中脂氧合酶同工酶的特定影响,生殖池的去除刺激了叶片中大多数酸性脂氧合酶同工酶的普遍增加。

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