Lu Chaofu, Wallis James G, Browse John
Department of Plant Sciences and Plant Pathology, Montana State University, Bozeman, MT, USA.
Methods Mol Biol. 2011;729:37-52. doi: 10.1007/978-1-61779-065-2_3.
It is desirable to produce high homogeneity of novel fatty acids in oilseeds through genetic engineering to meet increasing demands by the oleo-chemical industry. However, expression of key enzymes for biosynthesis of industrial fatty acids usually results in low levels of desired fatty acids in transgenic oilseeds. The abundance of unusual fatty acids in their natural species suggests that additional genes are needed for high production in transgenic plants. We used the model oilseed plant Arabidopsis thaliana expressing a castor fatty acid hydroxylase (FAH12) to identify genes that can boost hydroxy fatty acid accumulation in transgenic seeds. We described previously a high-throughput approach that in principle can allow testing of the entire transcriptome of developing castor seed endosperm by shotgun transforming a full-length cDNA library into a FAH12-expressing Arabidopsis line. The resulting transgenic seeds can be screened by high-throughput gas chromatography. The most critical step of the approach is the construction of a full-length cDNA library. In this chapter, we describe in detail the construction of the cloning vectors and a full-length cDNA library from developing castor seed endosperms. The approach we describe has broad applicability in many areas of biology.
通过基因工程在油料种子中产生高度均一的新型脂肪酸以满足油脂化工行业日益增长的需求是很有必要的。然而,用于工业脂肪酸生物合成的关键酶的表达通常会导致转基因油料种子中所需脂肪酸的含量较低。其天然物种中大量存在的异常脂肪酸表明,转基因植物中要实现高产还需要其他基因。我们利用表达蓖麻脂肪酸羟化酶(FAH12)的模式油料种子植物拟南芥来鉴定能够促进转基因种子中羟基脂肪酸积累的基因。我们之前描述了一种高通量方法,原则上通过将全长cDNA文库枪击转化到表达FAH12的拟南芥品系中,可以对发育中的蓖麻种子胚乳的整个转录组进行检测。所得的转基因种子可以通过高通量气相色谱法进行筛选。该方法最关键的步骤是构建全长cDNA文库。在本章中,我们详细描述了从发育中的蓖麻种子胚乳构建克隆载体和全长cDNA文库的过程。我们所描述的方法在生物学的许多领域都具有广泛的适用性。