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How Do Different Growth Forms of Winter Submerged Macrophytes Species Respond to Underwater Light Quality in a Mesocosm Study?

机译:在中宇宙研究中冬季沉水大型植物物种的不同生长形式如何响应水下光质量?

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摘要

Underwater light is a key factor that affects the growth of submerged macrophytes. However, the responses of different growth forms of submerged macrophytes to light quality remain unclear. The morphological, physiological, photosynthetic, and stoichiometric responses of erect Potamogeton crispus (P. crispus) and low‐canopy Elodea nuttallii (E. nuttallii) to six different light qualities (white light, R/B = 1:8, 1: 4, 1:1, 4:1, 8:1) were studied by a control experiment. (1) No significant differences were observed in the germination number, leaf length, and leaf width of P. crispus under different light qualities (p > 0.05). Both P. crispus and E. nuttallii produced greater plant heights, more leaves and branches under more red light (4:1, 8:1), which was beneficial for the extension of leaves. Under white light, the germination number of P. crispus, adventitious roots of E. nuttallii, and branch number of P. crispus and E. nuttallii were the lowest. (2) Compared to red light, more blue light (1:4, 1:8) was more conducive to the synthesis of photosynthetic pigments. However, excessive blue and red light was not conducive to the accumulation of pigments. The result of malondialdehyde showed that the physiological stress induced by blue light in P. crispus and E. nuttallii was stronger. (3) The N:P, C:N, and C:P ratios of P. crispus and E. nuttallii were higher under more red light, which was beneficial for the synthesis of nutrients in two submerged macrophy; however, the contents of TN and TP in E. nuttallii were higher under more blue light. Two different growth forms of submerged macrophytes grew better under red light, and better adapted to the eutrophic water dominated by red light. However, for aquatic restoration, other submerged macrophytes need to be supplemented after the water quality is improved.
机译:水下光是影响水下大型植物生长的关键因素。然而,不同生长形式的沉水大型植物对光质量的响应仍不清楚。通过对照实验研究了直立的 Potamogeton crispus (P. crispus) 和低冠层 Elodea nuttallii (E. nuttallii) 对 6 种不同光质 (白光, R/B = 1:8, 1: 4, 1:1, 4:1, 8:1) 的形态、生理、光合作用和化学计量响应。(1) 不同光质下,黄菜的发芽数、叶长和叶宽无显著差异 (p > 0.05)。P. crispus 和 E. nuttallii 在更多的红光下都能产生更高的株高、更多的叶子和分枝 (4:1, 8:1),这有利于叶子的伸展。白光下,叶菜萌发数、花菜不定根、叶菜和花菜分枝数最低。(2) 与红光相比,更多的蓝光 (1:4, 1:8) 更有利于光合色素的合成。但过量的蓝光和红光不利于色素的积累。丙二醛检测结果显示,蓝光对 P. crispus 和 E. nuttallii 的生理胁迫更强。(3) P. crispus 和 E 的 N:P、C:N 和 C:P 比率。在更多的红光下,Nuttallii 较高,有利于 2 个水下 macrophy 营养物质的合成;然而,在更多的蓝光下,E. nuttallii 中 TN 和 TP 的含量较高。两种不同生长形式的沉水植物在红光下生长较好,更适应以红光为主的富营养化水域。然而,对于水生恢复,在水质改善后,还需要补充其他沉水大型植物。

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