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首页> 外文期刊>Hydrobiologia >Combined effects of simulated tidal sea-level rise and salinity on seedlings of a mangrove species, Kandelia candel (L.) Druce
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Combined effects of simulated tidal sea-level rise and salinity on seedlings of a mangrove species, Kandelia candel (L.) Druce

机译:模拟潮汐海平面上升和盐度对红树植物Kandelia candel(L.)Druce幼苗的综合影响

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摘要

To investigate the effects of the simultaneous occurrence of salt stress and tidal sea-level rise on mangroves, potted Kandelia candel seedlings were treated under deep flooding (flooded 40 cm above the soil surface for 16 h per day, inundating the entire plant) and shallow flooding (flooded just above the soil surface for 8 h per day) at salinity levels of 5, 15, and 25 ppt over 14 months. Deep flooding enhanced stem elongations at all salinity levels but increased stem biomass only at 5 ppt. Deep flooding increased both leaf production and leaf fall; leaf biomass increased at 5 ppt, but decreased at 15 and 25 ppt. Biomass ratios of root/shoot (R/S) of deep flooding treatments were significantly lower than those of shallow flooding treatments. Under deep flooding, superoxide dismutase (SOD) activities did not show significant change between 5 and 15 ppt, but increased at 25 ppt. With increasing salinity level, peroxidase (POD) activities increased, and the difference between shallow and deep flooding was enhanced. Malonaldehyde (MDA) content significantly decreased at 25 ppt with 40 cm flooding, but was not affected by other treatments. These results demonstrated that the growth and physiological responses of K. candel seedlings under deep flooding conditions varied with salinity level; growth was enhanced at low salinity level but inhibited at high salinity level. It is therefore probable that K. candel will shift from downstream to upstream, where the influence of fresher river water resources will ameliorate the effects of increased salinities that accompany deeper tidal flooding in these mangrove ecosystems. Keywords Flooding - Kandelia candel - Mangrove - Salinity Handling editor: Karen McKee
机译:为了研究盐胁迫和潮汐海平面上升的同时发生对红树林的影响,对盆栽的Kandelia candel幼苗进行了深水淹没(每天在土壤表面以上40 cm淹水16 h,淹没了整个植物)并进行了浅水处理。在14个月内,盐度分别为5、15和25 ppt的洪水(每天在土壤表面上方淹没8 h)。深水淹在所有盐度水平下均能增加茎伸长,但仅在5 ppt时才增加茎生物量。深水淹没增加了叶片产量和叶片脱落;叶片生物量在5 ppt时增加,但在15和25 ppt时下降。深水处理的根/茎生物量比(R / S)显着低于浅水处理。在深水淹没下,超氧化物歧化酶(SOD)活性在5至15 ppt之间未显示出明显变化,但在25 ppt时有所增加。随着盐度水平的提高,过氧化物酶(POD)活性增加,浅水淹藏和深水淹藏之间的差异增大。丙二醛(MDA)含量在25 ppt处以40 cm淹没量显着降低,但不受其他处理的影响。这些结果表明,深淹条件下K. candel幼苗的生长和生理响应随盐度水平的变化而变化。在低盐度时生长增强,但在高盐度时生长受到抑制。因此,K。candel很可能会从下游转移到上游,在这些红树林生态系统中,较新的河流水资源的影响将减轻盐分增加带来的影响,这些盐分伴随着更深的潮汐洪水泛滥。洪水-坎德里亚坎德尔-红树林-盐度处理编辑:Karen McKee

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