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Comparative responses of two water hyacinth (Eichhornia crassipes) cultivars to different planting densities

机译:两种水葫芦(Eichhornia crassipes)品种对不同种植密度的比较响应

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Two water hyacinth cultivars, i.e., common water hyacinth (CWH) and purple root water hyacinth (PRWH), were used to investigate the effect of planting densities (i.e., 8,16 and 24 plants per bucket with a volume of 1.1 m x 1 m (diameter x depth)) on root traits, physiological characteristics, and microbial diversity. The results indicated that the planting density significantly influenced root traits, photosynthesis, radial oxygen loss (ROL), dissolved oxygen (DO), and microbial diversity of water hyacinths. The root porosity, root diameter, and root chlorophyll of PRWH were higher than those of CWH, and CWH had higher chlorophyll and Pn in leaves. The microbial diversity decreased significantly with increasing plant density for CWH, while it increased and then decreased in PRWH and peaked at 16 plants bucket(-1). The results suggested that the aerenchyma of PRWH was more developed than those of CWH, and CWH had higher leaf photosynthesis. However, higher root chlorophyll a in PRWH indicated that its capacity for photon capture was higher than in CWH. The result of ROL suggests that larger Delta root length and root porosity could help improve the dissolved oxygen of water column. The photosynthesis of CWH and PRWH can release oxygen into water column, and the capacity of PRWH was better than those of CWH. (C) 2014 Elsevier B.V. All rights reserved.
机译:两个水葫芦品种,即普通水葫芦(CWH)和紫根水葫芦(PRWH),用于研究种植密度的影响(即每桶8,16和24株植物,体积为1.1 mx 1 m (直径x深度)),了解根的性状,生理特性和微生物多样性。结果表明,种植密度显着影响水葫芦的根系性状,光合作用,径向氧损失(ROL),溶解氧(DO)和微生物多样性。 PRWH的根部孔隙度,根部直径和根系叶绿素均高于CWH,且CWH的叶绿素和Pn均较高。随着CWH植物密度的增加,微生物多样性显着下降,而在PRWH中,微生物多样性先升高后降低,并在16个植物桶中达到峰值(-1)。结果表明,PRWH的气孔率比CWH的气孔率高,且CWH具有较高的叶片光合作用。然而,PRWH中较高的根叶绿素a表示其对光子的捕获能力高于CWH。 ROL的结果表明,较大的Delta根长度和根孔隙率可以帮助改善水柱的溶解氧。 CWH和PRWH的光合作用可以将氧气释放到水柱中,PRWH的容量比CWH好。 (C)2014 Elsevier B.V.保留所有权利。

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