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Altered lipid composition and enhanced lipid production in green microalga by introduction of brassica diacylglycerol acyltransferase 2

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논문

Altered lipid composition and enhanced lipid production in green microalga by introduction of brassica diacylglycerol acyltransferase 2

학술지

Plant biotechnology journal

저자명

Ahmad, Irshad; Sharma, Anil K.; Daniell, Henry; Kumar, Shashi

초록

<P><B>Summary</B></P><P>Higher lipid biosynthesis and accumulation are important to achieve economic viability of biofuel production <I>via</I> microalgae. To enhance lipid content, <I>Chlamydomonas reinhardtii</I> was genetically engineered with a key enzyme diacylglycerol acyltransferase (<I>BnDGAT2</I>) from <I>Brassica napus,</I> responsible for neutral lipid biosynthesis. The transformed colonies harbouring <I>aph7</I> gene, screened on hygromycin&#8208;supplemented medium, achieved transformation frequency of ~120?&plusmn;?10 colonies/1?&times;?10<SUP>6</SUP> cells. Transgene integration and expression were confirmed by PCR, Southern blots, staining lipid droplets, proteins and spectro&#8208;fluorometric analysis of Nile red&#8208;stained cells. The neutral lipid is a major class (over 80% of total lipids) and most significant requirement for biodiesel production; this was remarkably higher in the transformed alga than the untransformed control. The levels of saturated fatty acids in the transformed alga decreased to about 7% while unsaturated fatty acids increased proportionately when compared to wild type cells. Polyunsaturated fatty acids, especially &alpha;&#8208;linolenic acid, an essential omega&#8208;3 fatty acid, were enhanced up to 12% in the transformed line. Nile red staining confirmed formation of a large number of lipid globules in the transformed alga. Evaluation of long&#8208;term stability and vitality of the transgenic alga revealed that cryopreservation produced significantly higher quantity of lipid than those maintained continuously over 128 generations on solid medium. The overexpression of <I>BnDGAT2</I> significantly altered the fatty acids profile in the transformed alga. Results of this study offer a valuable strategy of genetic manipulation for enhancing polyunsaturated fatty acids and neutral lipids for biofuel production in algae.</P>

발행연도

2015

라이선스

implied-oa

ISSN

1467-7644

ISSN

1467-7652

13

4

페이지

pp.540-550

주제어

green algae; bioenergy; biodiesel; transgenic algae; polyunsaturated fatty acids; neutral lipids

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논문; 2014-11-18

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