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Endogenous polyamine content and photosynthetic performance under hypo-osmotic conditions reveal Cymodocea nodosa as an obligate halophyte

机译:低渗条件下的内源多胺含量和光合作用表现为结节藻(Cymodocea nodosa)为专性盐生植物

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摘要

Endogenous polyamine (PA) content in the seagrass Cymodocea nodosa was monitored at different embryo and seedling developmental stages. Total PA concentration, including putrescine (Put), spermidine (Spd) and spermine (Spm), and the Put (Spm + Spd)~(-1) ratio decreased during embryo development, from the immature fruit to the mature seed stage (with a sharp decline in the free PA fraction), and subsequently increased during germination and seedling development from the cotyledon to seedling stage, indicating an important role during zygotic embryogenesis and seed germination. In particular, total levels of Put and Spm significantly decreased from the fruit to the mature seed, to be restored after germination. Spd levels remained constant during allthe developmental stages studied. When seedlings were subjected to hypo-osmotic stress (i.e. salinity decrease from 36 to 5 psu), fluorescence levels decreased, reaching a minimum photochemical efficiency (F_v/F_m) at 5 psu (0.582 ± 0.025, mean ± SE),indicating that seedlings were under high stress. Contrary to expectations, this was followed by a slight decrease in total PA content (showing a significance difference between 5 psu and higher salinities in bound-insoluble PA) and the accumulation of the PA cadaverine (Cad) at 5 psu (indicating cell death), which revealed the inability of this species to face the abiotic stress promoted by long-term salinity decrease. These 2 physiological indicators may suggest that C. nodosa is an obligatehalo-phyte because it requires an environment with relatively high and stable salinity for its survival. Moreover, exogenous application of Spd significantly improved F_v/F_m values at the lowest salinity treatment (5 psu: 0.670 ± 0.012), which suggestsa protective role of Spd in maintaining the photo-synthetic apparatus of C. nodosa seedlings under long-term hypo-osmotic stress.
机译:在不同的胚胎和幼苗发育阶段对海草Cymodocea nodosa中的内源多胺(PA)含量进行了监测。从不成熟果实到成熟种子阶段,总的PA浓度,包括腐胺(Put),亚精胺(Spd)和亚精胺(Spm),以及Put(Spm + Spd)〜(-1)比率降低。游离PA含量急剧下降),随后在发芽和从子叶到苗期的幼苗发育过程中增加,这表明在合子胚发生和种子发芽过程中发挥了重要作用。特别是,从果实到成熟种子,Put和Spm的总含量显着降低,并在发芽后恢复。在研究的所有发育阶段中,Spd水平保持恒定。当幼苗受到低渗胁迫(即盐度从36降低到5 psu)时,荧光水平降低,达到5 psu时的最低光化学效率(F_v / F_m)(0.582±0.025,平均值±SE),表明该幼苗承受着很大的压力与预期相反,其后总PA含量略有下降(显示5 psu和结合不溶性PA中较高盐度之间的显着差异)和5 psu时PA尸胺(Cad)的积累(表明细胞死亡) ,这表明该物种无法应对因长期盐度降低而引起的非生物胁迫。这两个生理指标可能暗示结节梭菌是专性的卤代植物,因为它需要一个相对较高且稳定的盐度环境才能生存。此外,在最低盐度处理下(5 psu:0.670±0.012),外源施用Spd可以显着提高F_v / F_m值,这表明Spd在长期低胁迫下维持结节藻幼苗光合装置的保护作用。渗透压力。

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