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首页> 外文期刊>Frontiers in Plant Science >Coordinated Changes in Antioxidative Enzymes Protect the Photosynthetic Machinery from Salinity Induced Oxidative Damage and Confer Salt Tolerance in an Extreme Halophyte Salvadora persica L.
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Coordinated Changes in Antioxidative Enzymes Protect the Photosynthetic Machinery from Salinity Induced Oxidative Damage and Confer Salt Tolerance in an Extreme Halophyte Salvadora persica L.

机译:抗氧化酶的协调变化可保护光合机械免受盐分诱导的极端盐生盐生植物盐胁迫中的光合作用机制。

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Salinity-induced modulations in growth, photosynthetic pigments, relative water content (RWC), lipid peroxidation, photosynthesis, photosystem II efficiency, and changes in activity of various antioxidative enzymes were studied in the halophyte Salvadora persica treated with various levels of salinity (0, 250, 500, 750, and 1000 mM NaCl) to obtain an insight into the salt tolerance ability of this halophyte. Both fresh and dry biomass as well as leaf area (LA) declined at all levels of salinity whereas salinity caused an increase in leaf succulence. A gradual increase was observed in the Na~(+)content of leaf with increasing salt concentration up to 750 mM NaCl, but at higher salt concentration (1000 mM NaCl), the Na~(+)content surprisingly dropped down to the level of 250 mM NaCl. The chlorophyll and carotenoid contents of the leaf remained unaffected by salinity. The photosynthetic rate (P_(N)), stomatal conductance (g_(s)), the transpiration rate (E), quantum yield of PSII (ΦPSII), photochemical quenching (qP), and electron transport rate remained unchanged at low salinity (250 to 500 mM NaCl) whereas, significant reduction in these parameters were observed at high salinity (750 to 1000 mM NaCl). The RWC% and water use efficiency (WUE) of leaf remained unaffected by salinity. The salinity had no effect on maximum quantum efficiency of PS II (Fv/Fm) which indicates that PS II is not perturbed by salinity-induced oxidative damage. Analysis of the isoforms of antioxidative enzymes revealed that the leaves of S. persica have two isoforms each of Mn-SOD and Fe-SOD and one isoform of Cu-Zn SOD, three isoforms of POX, two isoforms of APX and one isoform of CAT. There was differential responses in activity and expression of different isoforms of various antioxidative enzymes. The malondialdehyde (MDA) content (a product of lipid peroxidation) of leaf remained unchanged in S. persica treated with various levels of salinity. Our results suggest that the absence of pigment degradation, the reduction of water loss, and the maintenance of WUE and protection of PSII from salinity-induced oxidative damage by the coordinated changes in antioxidative enzymes are important factors responsible for salt tolerance of S. persica .
机译:研究了盐度诱导的生长调节,光合色素,相对水含量(RWC),脂质过氧化,光合作用,光系统II效率以及各种盐度下的盐生植物Salvadora persica的各种抗氧化酶活性的变化(0, 250、500、750和1000 mM NaCl),以了解这种盐生植物的耐盐能力。在所有盐度水平下,新鲜和干燥生物量以及叶面积(LA)均下降,而盐度导致叶片多汁性增加。随着盐浓度增加到750 mM NaCl,叶片的Na〜(+)含量逐渐增加,但是在更高盐浓度(1000 mM NaCl)下,Na〜(+)含量出人意料地下降到250 mM氯化钠。叶片的叶绿素和类胡萝卜素含量不受盐度影响。在低盐度下,光合速率(P_(N)),气孔导度(g_(s)),蒸腾速率(E),PSII的量子产率(ΦPSII),光化学猝灭(qP)和电子传输速率保持不变( 250至500 mM NaCl),而在高盐度(750至1000 mM NaCl)下,这些参数显着降低。叶片的RWC%和水分利用效率(WUE)不受盐度的影响。盐度对PS II的最大量子效率(Fv / Fm)没有影响,这表明PS II不受盐度诱导的氧化损伤的干扰。对抗氧化酶同工型的分析表明,紫茎泽兰的叶子具有Mn-SOD和Fe-SOD两种同工型和Cu-Zn SOD的同工型,POX的三种同工型,APX的两种同工型和CAT的一种同工型。 。在各种抗氧化酶的不同同工型的活性和表达上存在差异响应。在不同盐度水平下处理的多年生葡萄球菌叶片中丙二醛(MDA)含量(脂质过氧化产物)保持不变。我们的结果表明,不存在色素降解,水分减少的减少,WUE的维持以及通过抗氧化酶的协同变化保护PSII免受盐度诱导的氧化损伤,这是造成紫穗槐耐盐性的重要因素。

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