首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Physiological responses to salt stress of salt-adapted and directly salt (NaCl and NaCl+Na2SO4 mixture)-stressed cyanobacterium Anabaena fertilissima
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Physiological responses to salt stress of salt-adapted and directly salt (NaCl and NaCl+Na2SO4 mixture)-stressed cyanobacterium Anabaena fertilissima

机译:盐适应和直接盐(NaCl和NaCl + Na 2 SO 4混合物)盐胁迫的生理反应 - 妥善的蓝杆菌anabaena

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Soil salinity in nature is generally mixed type; however, most of the studies on salt toxicity are performed with NaCl and little is known about sulfur type of salinity (Na2SO4). Present study discerns the physiologic mechanisms responsible for salt tolerance in salt-adapted Anabaena fertilissima, and responses of directly stressed parent cells to NaCl and NaCl+Na2SO4 mixture. NaCl at 500 mM was lethal to the cyanobacterium, whereas salt-adapted cells grew luxuriantly. Salinity impaired gross photosynthesis, electron transport activities, and respiration in parent cells, but not in the salt-adapted cells, except a marginal increase in PSI activity. Despite higher Na+ concentration in the salt mixture, equimolar NaCl appeared more inhibitive to growth. Sucrose and trehalose content and antioxidant activities were maximal in 250 mM NaCl-treated cells, followed by salt mixture and was almost identical in salt-adapted (exposed to 500 mm NaCl) and control cells, except a marginal increase in ascorbate peroxidase activity and an additional fourth superoxide dismutase isoform. Catalase isoform of 63 kDa was induced only in salt-stressed cells. Salinity increased the uptake of intracellular Na+ and Ca2+ and leakage of K+ in parent cells, while cation level in salt-adapted cells was comparable to control. Though there was differential increase in intracellular Ca2+ under different salt treatments, ratio of Ca2+/Na+ remained the same. It is inferred that stepwise increment in the salt concentration enabled the cyanobacterium to undergo priming effect and acquire robust and efficient defense system involving the least energy.
机译:本质上的土壤盐度通常是混合式;然而,大多数关于盐毒性的研究是用NaCl进行的,并且关于硫型盐度(Na 2 SO 4)很少。目前的研究辨别负责盐适应的Anabaena Fertilissima的耐盐性的生理机制,以及将直接应力的亲本细胞对NaCl和NaCl + Na 2 SO 4混合物的反应。含有500毫米的NaCl对蓝藻致死,而盐适应的细胞茂盛着茂盛。盐度受损的总光合作用,电子传输活动和亲本细胞中的呼吸,但不在盐适应细胞中,除了psi活性的边际增加。尽管盐混合物中的Na +浓度较高,但Equimolar NaCl对生长似乎更敏感。蔗糖和海藻糖含量和抗氧化剂活性在250mM NaCl处理的细胞中最大,其次是盐混合物,并且在盐适应(暴露于500mM NaCl)和对照细胞中几乎相同,除了抗坏血酸过氧化物酶活性的边际增加和另外的第四种超氧化物歧化酶同种型。仅在盐胁迫细胞中诱导63kDa的过氧化氢酶同种型。盐度增加了细胞内Na +和Ca2 +的摄取,并在亲本细胞中的k +泄漏,而盐适应细胞的阳离子水平与对照相当。虽然细胞内Ca2 +在不同的盐处理下存在差异增加,但Ca2 + / Na +的比例保持不变。推断,逐步增加盐浓度使蓝杆菌能够接受引发效果,并获得涉及最少能源的强大和高效的防御系统。

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