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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Silicon-mediated changes in radial hydraulic conductivity and cell wall stability are involved in silicon-induced drought resistance in tomato
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Silicon-mediated changes in radial hydraulic conductivity and cell wall stability are involved in silicon-induced drought resistance in tomato

机译:硅介导的径向液压导电性和细胞壁稳定性的变化涉及番茄中的硅诱导的抗旱性

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Plants frequently experience drought stress. It is well known that silicon (Si) facilitates recovery from drought stress by improving drought resistance in plants. However, the effects of Si on the roots associated with the drought resistance in plants remain elusive. In this study, tomato (cv. 'Jinpeng 1(#)') was adopted to study the silicon-mediated drought avoidance and drought tolerance. The results showed that exogenous Si evidently influenced the drought-induced changes of the related indicators. Roots added with Si were more adaptable to drought stress. Silicon was involved in improving hydraulic conductivity in radial direction, which enhanced water uptake of tomato roots. Si also maintained solute accumulation at a high level, such as proline, soluble sugar, and soluble protein, and the osmotic adjustment ability of root was improved. So silicon promoted the drought avoidance by improving water absorption and water situation in tomato root. In addition, silicon enhanced antioxidant activities, including SOD activity and CAT activity, and reduced O-2 (A) production rate, H2O2 content, and malondialdehyde content, which contributed to alleviate harmful effects of drought and mitigate drought-induced cell wall rupture. Therefore, via induction of antioxidant activities, detoxification of the ROS, and maintenance of cell wall stability in tomato roots, silicon contributed to the drought tolerance. Though the silicon-mediated drought avoidance and drought tolerance can maintain physiological activities of tomato at relatively lower water potential, the maximal duration at which Si induced drought resistance was 3 or 5 days. When drought stress was for too long time, which exceeded the self-regulation of the tomato, mitigative effects of Si were weakened.
机译:植物经常经历干旱压力。众所周知,硅(Si)促进通过改善植物的抗旱性来恢复干旱胁迫。然而,Si对与植物抗旱抗旱相关的根的影响仍然难以捉摸。在本研究中,番茄(CV。'金鹏1(#)')采用研究硅介导的干旱避免和耐旱性。结果表明,外源性Si明显影响了干旱诱导的相关指标的变化。用Si添加的根更适应干旱胁迫。硅在径向方向上提高液压导电性,增强了番茄根的吸水。 Si还在高水平下保持溶质积累,例如脯氨酸,可溶性糖和可溶性蛋白质,并且改善了根系的渗透调节能力。因此,硅通过提高番茄根中的吸水和水状况来促进干旱避免。此外,硅增强的抗氧化活性,包括SOD活性和猫活性,以及​​降低O-2()生产率,H 2 O 2含量和丙二醛含量,这有助于缓解干旱和缓解干旱诱导的细胞的有害影响墙壁破裂。因此,通过诱导抗氧化活性,RO的排毒,以及在番茄根中维持细胞壁稳定性,硅导致耐旱性。虽然硅介导的干旱避免和干旱耐受性可以在相对较低的水势下保持番茄的生理活性,但Si诱导抗旱性为3或5天的最大持续时间。当干旱胁迫太久时,超过番茄的自调节,Si的减弱效果被削弱。

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