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匙羹藤在高温下适应所需的甾醇糖基转移酶。

Sterol glycosyltransferases required for adaptation of Withania somnifera at high temperature.

作者信息

Singh Gaurav, Tiwari Manish, Singh Surendra P, Singh Ruchi, Singh Surendra, Shirke Pramod A, Trivedi Prabodh K, Misra Pratibha

机构信息

CSIR, National Botanical Research Institute, Lucknow, India.

Department of Botany, Institute of Science, Banaras Hindu University, Varanasi, India.

出版信息

Physiol Plant. 2017 Jul;160(3):297-311. doi: 10.1111/ppl.12563. Epub 2017 May 16.

Abstract

Heat is a major environmental stress factor that confines growth, productivity, and metabolism of plants. Plants respond to such unfavorable conditions through changes in their physiological, biochemical and developmental processes. Withania somnifera, an important medicinal plant, grows in hot and dry conditions, however, molecular mechanisms related to such adaptive properties are not known. Here, we elucidated that members of the sterol glycosyltransferases (SGT) gene family play important roles in the survival of W. somnifera under adverse conditions through maintaining the integrity of the membrane. SGTs are enzymes involved in sterol modifications and participate in metabolic flexibility during stress. Silencing of WsSGT members, for instance WsSGTL1, WsSGTL2 and WsSGTL4, was inimical for important physiological parameters, such as electron transport rate, photochemical quantum yield, acceptor side limitation, non-photochemical quenching (NPQ), Fv/Fm and net photosynthetic rate, whereas stomatal conductance, transpiration rate and dark respiration rates (Rds) were increased. Decreased NPQ and increased Rds helped to generate significant amount of ROS in the Wsamisgt lines. After heat stress, H O , lipid peroxidation and nitric oxide production increased in the Wsamisgt lines due to high ROS generation. The expression of HSPs in Wsamisgt lines might be involved in regulation of physiological processes during stress. We have also observed increased proline accumulation which might be involved in restricting water loss in the Wsamisgt lines. Taken together, our observations revealed that SGTL enzyme activity is required to maintain the internal damages of the cell against high temperature by maintaining the sterol vs sterol glycosides ratio in the membranes of W. somnifera.

摘要

热是一种主要的环境胁迫因素,限制了植物的生长、生产力和新陈代谢。植物通过其生理、生化和发育过程的变化来应对这种不利条件。睡茄是一种重要的药用植物,生长在炎热干燥的环境中,然而,与这种适应性特性相关的分子机制尚不清楚。在这里,我们阐明了甾醇糖基转移酶(SGT)基因家族的成员通过维持膜的完整性在睡茄逆境生存中发挥重要作用。SGT是参与甾醇修饰的酶,并在胁迫期间参与代谢灵活性。例如,沉默WsSGT成员,如WsSGTL1、WsSGTL2和WsSGTL4,对重要的生理参数是有害的,如电子传递速率、光化学量子产率、受体侧限制、非光化学猝灭(NPQ)、Fv/Fm和净光合速率,而气孔导度、蒸腾速率和暗呼吸速率(Rds)增加。NPQ降低和Rds增加有助于在Wsamisgt系中产生大量活性氧。热胁迫后,由于活性氧大量产生,Wsamisgt系中的H₂O₂、脂质过氧化和一氧化氮产生增加。Wsamisgt系中热休克蛋白(HSPs)的表达可能参与胁迫期间生理过程的调节。我们还观察到脯氨酸积累增加,这可能参与限制Wsamisgt系中的水分流失。综上所述,我们的观察结果表明,SGTL酶活性对于通过维持睡茄膜中甾醇与甾醇糖苷的比例来维持细胞免受高温的内部损伤是必需的。

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