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首页> 外文期刊>Functional Plant Biology >Involvement of OpsLTP1 from Opuntia streptacantha in abiotic stress adaptation and lipid metabolism
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Involvement of OpsLTP1 from Opuntia streptacantha in abiotic stress adaptation and lipid metabolism

机译:OPSLTP1参与来自非生物胁迫适应和脂质代谢的仙飞精链球菌

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摘要

Plant lipid transfer proteins (LTPs) exhibit the ability to transfer lipids between membranes in vitro, and have been implicated in diverse physiological processes associated to plant growth, reproduction, development, biotic and abiotic stress responses. However, their mode of action is not yet fully understood. To explore the functions of the OpsLTP1 gene encoding a LTP from cactus pear Opuntia streptacantha Lem., we generated transgenic Arabidopsis thaliana (L.) Heynh. plants to overexpress OpsLTP1 and contrasted our results with the loss-of-function mutant ltp3 from A. thaliana under abiotic stress conditions. The ltp3 mutant seeds showed impaired germination under salt and osmotic treatments, in contrast to OpsLTP1 overexpressing lines that displayed significant increases in germination rate. Moreover, stress recovery assays showed that ltp3 mutant seedlings were more sensitive to salt and osmotic treatments than wild-type plants suggesting that AtLTP3 is required for stress-induced responses, while the OpsLTP1 overexpressing line showed no significant differences. In addition, OpsLTP1 overexpressing and ltp3 mutant seeds stored lower amount of total lipids compared with wild-type seeds, showing changes primarily on 16C and 18C fatty acids. However, ltp3 mutant also lead changes in lipid profile and no over concrete lipids which may suggest a compensatory activation of other LTPs. Interestingly, linoleic acid (18:2 omega 6) was consistently increased in neutral, galactoglycerolipids and phosphoglycerolipids of OpsLTP1 overexpressing line indicating a role of OpsLTP1 in the modulation of lipid composition in A. thaliana.
机译:植物脂转移蛋白质(LTPS)表现出体外膜之间转移脂质的能力,并涉及与植物生长,繁殖,发育,生物和非生物应激反应相关的不同生理过程。但是,他们的行动方式尚未完全理解。探讨从仙人掌梨Ipuntia Streptacantha LEM编码一个LTP的OPSLTP1基因的功能。,我们生成了转基因拟南芥噻ana(L.)Heynh。植物对过表达OPSLTP1,并将我们的结果与来自非生物胁迫条件下的A. Thilana的函数突变突变体LTP3对比。 LTP3突变体种子在盐和渗透处理下发芽损伤,与OPSLTP1过表达线相比显示出萌发率显着增加。此外,应力恢复测定显示,LTP3突变体幼苗比野生型植物更敏感,表明应激诱导的响应需要ATLTP3,而OPSLTP1过表达线显示出没有显着差异。此外,与野生型种子相比,OPSLTP1过表达和LTP3突变种子储存了较低的总脂质量,主要显示在16C和18C脂肪酸上的变化。然而,LTP3突变体也铅的脂质型材的变化,并且没有超过混凝土脂质,这可能表明其它LTP的补偿性活化。有趣的是,亚油酸(18:2ω6)始终增加了OPSLTP1过表达线的中性,吡酰甘油胆糖脂和磷酸甘油脂,表明OPSLTP1在A.本地脂质组合物调节中的作用。

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