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Study of the physiological mechanisms of two species of Spiraea during adaptation to drought treatment

机译:两种肺炎在适应干旱治疗过程中的生理机制研究

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The photosynthetic rate, light saturation point, light compensation point, changes in the MDA and SOD activities, and protein expression of two different drought-resistance species, Spiraea fritschiana and Spiraea trichocarpa, were assessed in this study. Furthermore, the drought-resistant physiological mechanisms of both species were analyzed at the protein level. The photosynthetic capacities of two Spiraea species decreased under drought stress, and the light saturation point and light compensation point decreased. However, their capacities to use weak light increased. Spiraea fritschiana, which demonstrated a stronger drought resistance, showed a better ability to adapt to weak light than S. trichocarpa. The content of MDA in S. fritschiana was notably lower than that in S. trichocarpa, indicating that the concentration of the membrane peroxidation products of S. fritschiana was less than those of S. trichocarpa. Compared with S. trichocarpa, S. fritschiana's SOD activity was higher, and its ability to remove ROS was also better. Sixty-six proteins were identified with significantly different expression behavior and included regulatory, redox homeostasis, metabolism and energy, and cytoskeleton proteins. The results showed that the photosynthesis of S. trichocarpa was significantly affected by the drought stress. Enzymes in photosynthesis changed significantly; the expression of the RuBisCo large subunit decreased; and RuBisCo carboxylase, the chlorophyll a-b binding protein, ATP synthase, OEC 33 kD photosystem II protein and 23 kD OEC protein greatly increased. In addition, four antioxidant enzymes greatly increased, GroES chaperonin decreased, and eIF5A significantly increased under light stress. When S. fritschiana Schneid encountered serious drought stress, in addition to those enzymes that changed significantly under light drought stress in S. trichocarpa Nakai, NAD(P)H-quinone oxidoreductase and eIF5A were up-regulated. Specifically, three heat-shock proteins were induced. The expression of the enzymes of the two Spiraea that were related to photosynthesis, oxidation-reduction and regulation were all affected, but their species and expression patterns were different. In S. trichocarpa Nakai and S. fritschiana Schneid, there were significant changes in the proteins related to energy metabolism and the proteins related to energy transport, respectively. Thus, we considered that, in the case of protein involvement, the differences in the metabolic pathways and adjustment levels might contribute to S. trichocarpa having a weaker drought tolerance than S. fritschiana.
机译:在本研究中评估了光合速率,光饱和点,光补偿点,MDA和SOD活性的变化以及两种不同的抗旱物种的蛋白表达,以及两种不同的干旱物种。此外,在蛋白质水平下分析了两种物种的抗旱生理机制。在干旱胁迫下,两种螺旋藻种类的光合容量减少,光饱和点和光补偿点降低。然而,它们使用弱光的能力增加。 Spiraea Fritschiana,展示了较强的抗旱性,表明,适应弱光的能力比S. Trichocarpa更好。 S.Fritchiana中MDA的含量明显低于S. Trichocarpa的MDA含量,表明S. Fricschiana的膜过氧化产物的浓度小于S. Trichocarpa的浓度。与S. Trichocarpa相比,S.Fritschiana的SOD活动更高,并且其去除ROS的能力也更好。用显着不同的表达行为鉴定六十六种蛋白质,包括调节,氧化还原稳态,代谢和能量,以及细胞骨架蛋白。结果表明,S. Trichocarpa的光合作用受干旱胁迫的显着影响。光合作用中的酶变化显着变化; Rubisco大亚基的表达减少;和Rubisco羧化酶,叶绿素A-B结合蛋白,ATP合酶,OEC 33 KD光系统II蛋白和23 kd oc蛋白大大增加。此外,四种抗氧化酶大大增加,橡胶伴侣蛋白减少,并且在轻应力下显着增加。当S.FritschianaSchneid遇到严重的干旱胁迫时,除了在richocarpa Nakai的轻盈胁迫下显着变化的那些酶,NAD(P)H-醌氧化还原酶和EIF5A是上调的。具体地,诱导三种热冲击蛋白。与光合作用,氧化还原和调节有关的两种螺旋藻的酶的表达都受到影响,但它们的物种和表达模式不同。在S. Trichocarpa Nakai和S.Fritschiana Schneid中,与能量代谢和与能量运输相关的蛋白质有关的蛋白质存在显着变化。因此,我们认为,在蛋白质受累的情况下,代谢途径和调节水平的差异可能导致具有比S. Fricschiana较弱的干旱耐受性的richocarpa。

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