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Membrane fatty acid compositions and cold-induced responses in tetraploid and hexaploid wheats

机译:四倍体和六倍体小麦的膜脂肪酸组成和冷诱导响应

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摘要

Plant cells often increase cold tolerance by reprogramming their genes expression which results in adjusted metabolic alternations, a process enhanced under cold acclimation. In present study, we assessed the changes of membrane fatty acid compositions along with physio-biochemical indices like H2O2 and malondialdehyde (MDA) contents and lipoxygenase (LOX) activity during cold stress (CS) phases in acclimated and non-acclimated durum (SRN and Gerdish) and bread (Norstar) wheat genotypes. During thermal treatments, MDA was an end product of lipid peroxidation via oxidative stress (H2O2 content) rather than LOX activity. LOX activity plays a double role in mechanism of cold tolerance in wheat, particularly at severe stress. With increase in severity of CS especially in non-acclimated plants, LOX activity decreased along with an increase in MDA and other responses helped increase or maintaine unsaturated fatty acids (FAs) whereas in acclimated plants (moderate CS), increasing of LOX activity along with a decrease in MDA indicates probably its role in secondary metabolites like jasmonic acid signaling pathway. Significant increase of total FAs and particularly unsaturated FAs showed distinct cell endeavor to protect against CS in Norstar and Gerdish compared to SRN genotype. Results showed that an increase in double bond index and LOX activity and low MDA under CS could be reasons for plant cold tolerance.
机译:植物细胞通常通过重新编程其基因表达来提高其耐寒性,这导致调节的新陈代谢交替,这种过程在寒冷驯化下得到增强。在本研究中,我们评估了在适应和未适应硬质硬质合金(SRN和Gerdish)和面包(Norstar)小麦的基因型。在热处理过程中,MDA是脂质通过氧化应激(H2O2含量)而不是LOX活性过氧化的最终产物。 LOX活性在小麦的耐寒性机制中起着双重作用,特别是在严重胁迫下。随着CS严重程度的增加(尤其是在非驯化植物中),LOX活性下降,MDA升高,其他响应有助于增加或维持不饱和脂肪酸(FAs),而在驯化植物(中度CS)中,LOX活性也随之增加MDA降低可能表明其在次级代谢产物(如茉莉酸信号通路)中的作用。与SRN基因型相比,Norstar和Gerdish中总FA尤其是不饱和FA的显着增加显示出独特的细胞保护CS的能力。结果表明,CS条件下双键指数和LOX活性的增加以及MDA的降低可能是植物耐寒性的原因。

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