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不同的盐浓度会导致红树林植物肖氏海榄雌叶片的光合参数和盐腺活性发生变化。

Different salt concentrations induce alterations both in photosynthetic parameters and salt gland activity in leaves of the mangrove Avicennia schaueriana.

作者信息

Garcia Janaina Dos Santos, Dalmolin Ândrea Carla, França Marcel Giovanni Costa, Mangabeira Pedro Antônio Oliveira

机构信息

Departamento de Ciências Biológicas, Universidade Estadual de Santa Cruz, Ilhéus 45662-900, Bahia, Brazil.

Instituto de Ciências Biológicas, Universidade Federal de Minas Gerais, Belo Horizontes 31270-901, Minas Gerais, Brazil.

出版信息

Ecotoxicol Environ Saf. 2017 Jul;141:70-74. doi: 10.1016/j.ecoenv.2017.03.016. Epub 2017 Mar 19.

DOI:10.1016/j.ecoenv.2017.03.016
PMID:28319861
Abstract

Mangrove sites are constantly under tidal regimes, where there is variation of dissolved oxygen and saline content in water. This study evaluated the effects of varying salinity in Avicennia schaueriana, an abundant species in the sea-mangrove-river interface. Seedlings of A. schaueriana were harvested at the riverbank and placed in different saline and nutrient solutions in a greenhouse in order to simulate a saline flow. After 7 acclimatization days, plants were exposed to the following saline concentrations: 0, 50, 170 and 250mM NaCl, for a period of 30 days. After this, leaf gas exchange, chlorophyll a fluorescence, Falker chlorophyll index, leaf ultrastructure and micromorphology were evaluated. The highest saline concentration affected mainly the CO assimilation, internal CO concentration and the intrinsic efficiency of water use. The chlorophyll a fluorescence and Falker index were not significantly affected by any of the saline conditions, however chloroplast was damaged. Concomitantly, leaf salt glands clearly evidenced a higher salt secretion, when plants were submitted to the greatest saline concentration. The results indicated that A. schaueriana tolerates different salt concentration in the mangrove and excretes salt excess by salt gland, and this can attenuate the saline stress. However, when exposed to longer periods of higher salt fluxes the plant growth can be affected.

摘要

红树林区域始终处于潮汐状态,水中溶解氧和盐分含量存在变化。本研究评估了不同盐度对白骨壤(Avicennia schaueriana)的影响,白骨壤是海-红树林-河流交界处的优势物种。在河岸采集白骨壤幼苗,并将其置于温室中的不同盐溶液和营养液中,以模拟盐分流动。经过7天的驯化期后,将植株暴露于以下盐浓度下:0、50、170和250mM NaCl,持续30天。在此之后,对叶片气体交换、叶绿素a荧光、法尔克尔叶绿素指数、叶片超微结构和微观形态进行了评估。最高盐浓度主要影响二氧化碳同化、胞间二氧化碳浓度和水分利用的内在效率。叶绿素a荧光和法尔克尔指数在任何盐处理条件下均未受到显著影响,然而叶绿体受到了损伤。同时,当植株处于最高盐浓度时,叶片盐腺明显表现出更高的盐分分泌。结果表明,白骨壤能够耐受红树林中的不同盐浓度,并通过盐腺排出过量盐分,这可以减轻盐胁迫。然而,当暴露于较长时间的高盐通量时,植物生长可能会受到影响。

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