Fatty acid desaturases modulated octadecanoid pathway in Sesame

M. Chellamuthu, Reshma Sanal, S. Subramanian
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Abstract

Omega 3 fatty acid desaturases are involved in the production of α-linolenic acid (LNA) an essential omega 3 fatty acid, which is present in only traces in sesame seeds. LNA is the precursor for jasmonic acid which is the end product of octadecanoid pathway. This study was undertaken to analyze the key components of octadecanoid pathway and its relationship with fatty acid content in sesame. Fatty acid desaturation and membrane fluidity are modulated differentially in various stresses. Sesame seedlings were subjected to transient stress to analyse the octadecanoid pathway and its impact on fatty acid desaturation.  The mRNA levels of omega 3 desaturases and LNA content were higher in cold stressed sesame seedlings than heat, drought and salinity stresses. The LOX activity and MDA content were higher in heat stressed sesame seedlings. Jasmonic acid content was higher in salinity stressed seedlings while abscisic acid registered the highest in drought stressed seedlings. Chloroplast fatty acid desaturase genes expression was found to increase the LNA content in cold stressed seedlings. The level of membrane damage measured by lipid peroxidation in terms of LOX activity and MDA content were found to be minimal in cold stressed seedling. This suggests a possible role of LNA in membrane fluidity and cold acclimation in sesame. A synergistic role of JA and ABA is also suspected in abiotic stress tolerance in sesame.
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脂肪酸去饱和酶调节芝麻十八烷通路
Omega - 3脂肪酸去饱和酶参与α-亚麻酸(LNA)的产生,这是一种必需的Omega - 3脂肪酸,在芝麻中只存在少量。LNA是茉莉酸的前体,茉莉酸是十八烷酸途径的最终产物。本研究旨在分析芝麻中类十八烷途径的关键组分及其与脂肪酸含量的关系。脂肪酸的去饱和和膜的流动性在不同的压力下有不同的调节。通过对芝麻幼苗进行瞬态胁迫,分析了十八烷途径及其对脂肪酸去饱和的影响。低温胁迫下芝麻幼苗欧米茄- 3去饱和酶mRNA水平和LNA含量高于高温、干旱和盐胁迫。热胁迫芝麻幼苗LOX活性和MDA含量较高。盐胁迫下茉莉酸含量较高,干旱胁迫下脱落酸含量最高。叶绿体脂肪酸去饱和酶基因的表达增加了冷胁迫幼苗LNA含量。通过脂质过氧化测定LOX活性和MDA含量,发现低温胁迫下幼苗的膜损伤程度最小。这表明LNA可能在芝麻的膜流动性和冷驯化中起作用。JA和ABA的协同作用也被怀疑在芝麻的非生物抗性中起作用。
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