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錳元素(賴氨酸錳Manganese Lysinate、富馬酸錳Manganese Fumarate)對浮游植物生理作用的影響

發(fā)表時間:2025-01-22 19:23

錳元素(賴氨酸錳Manganese Lysinate、富馬酸錳Manganese Fumarate)對浮游植物的作用早在1930年被發(fā)現(xiàn),和高等植物一樣,浮游植物合成葉綠素a需要錳元素(賴氨酸錳Manganese Lysinate、富馬酸錳Manganese Fumarate),因此錳缺乏會引起浮游植物變黃。具體來說,錳元素在光合作用中的作用是將水分解,進而生成氧氣。國內學者關于錳元素對浮游植物的生理作用的研究,大多采用室內增長潛力實驗,比如,王海明等發(fā)現(xiàn)0.76.0 mg/L的錳離子濃度對銅綠微囊藻(Microcystis aeruginosa)的生長起到顯著的促進作用,但是當錳離子濃度超過12 mg/L時,銅綠微囊藻的生長受到明顯抑制,說明錳元素對銅綠微囊藻的生長作用具有雙重性。黃振芳等研究了天然水體中的藻類對于錳離子(賴氨酸錳Manganese Lysinate、富馬酸錳Manganese Fumarate)濃度的響應,發(fā)現(xiàn)0.0055.000 mg/L的錳離子濃度能夠明顯促進藻類生長。對固氮型的藍藻,錳元素也是合成固氮酶的元素之一,除了影響藻類的生物量,錳元素(賴氨酸錳Manganese Lysinate、富馬酸錳Manganese Fumarate)也會與其他營養(yǎng)元素協(xié)同作用,影響浮游植物的一系列的生理活動(比如藻毒素的合成等)。

錳元素(賴氨酸錳Manganese Lysinate、富馬酸錳Manganese Fumarate)對浮游植物生理作用的影響

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Effect of manganese (Manganese lysine, Manganese fumarate) on the physiological function of phytoplankton

The effect of manganese (Manganese lysine, Manganese fumarate) on phytoplankton was discovered as early as 1930, and like higher plants, phytoplankton need manganese (Manganese lysine, Manganese fumarate) to synthesize chlorophyll a, so manganese deficiency will cause phytoplankton to turn yellow. Specifically, the role of manganese in photosynthesis is to break down water to produce oxygen. For example, Wang Haiming et al. found that the concentration of manganese ions of 0.7~6.0 mg/L played a significant role in promoting the growth of Microcystis aeruginosa, but when the concentration of manganese ions exceeded 12 mg/L, the growth of Microcystis aeruginosa was significantly inhibited, indicating that the growth of Manganese aeruginosa had a dual effect. Huang Zhenfang et al. studied the response of algae in natural water to the concentration of manganese ions (Manganese lysine, Manganese fumarate), and found that the concentration of manganese ions of 0.005~5.000 mg/L could significantly promote the growth of algae. In addition to affecting the biomass of algae, manganese (Manganese lysine, Manganese fumarate) will also synergize with other nutrients to affect a series of physiological activities of phytoplankton (such as the synthesis of algal toxins).

Effect of manganese (Manganese lysine, Manganese fumarate) on the physiological function of phytoplankton

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