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Mechanism of Calcium Lactate Facilitating Phytic Acid Degradation in Soybean during Germination

机译:乳酸钙促进大豆发芽过程中植酸降解的机理

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Calcium lactate facilitates the growth and phytic acid degradation of soybean sprouts, but the mechanism is unclear. In this study, calcium lactate (Ca) and calcium lactate with lanthanum chloride (Ca+La) were used to treat soybean sprouts to reveal the relevant mechanism. Results showed that the phytic acid content decreased and the availability of phosphorus increased under Ca treatment. This must be due to the enhancement of enzyme activity related to phytic acid degradation. In addition, the energy metabolism was accelerated by Ca treatment. The energy status and energy metabolism associated enzyme activity also increased. However, the transmembrane transport of calcium was inhibited by La3+ and concentrated in intercellular space or between the cell wall and cell membrane; thus, Ca+La treatment showed reverse results compared with those of Ca treatment. Interestingly, gene expression did not vary in accordance with their enzyme activity. These results demonstrated that calcium lactate increased the rate of phytic acid degradation by enhancing growth, phosphorus metabolism, and energy metabolism.
机译:乳酸钙促进大豆芽的生长和植酸降解,但机理尚不清楚。在这项研究中,乳酸钙(Ca)和乳酸钙与氯化镧(Ca + La)被用于处理豆芽,以揭示其相关机理。结果表明,Ca处理后植酸含量降低,磷的利用率增加。这必须归因于与植酸降解有关的酶活性的增强。另外,通过Ca处理加速了能量代谢。能量状态和能量代谢相关的酶活性也增加。然而,钙的跨膜转运受到La3 +的抑制,并集中在细胞间隙或细胞壁与细胞膜之间。因此,与Ca处理相比,Ca + La处理显示出相反的结果。有趣的是,基因表达没有根据其酶活性而变化。这些结果表明乳酸钙通过促进生长,磷代谢和能量代谢而增加了植酸降解的速率。

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