Bai Ling, Kim Eun-Ha, DellaPenna Dean, Brutnell Thomas P
Boyce Thompson Institute, Cornell University, Ithaca, NY 14853, USA.
Plant J. 2009 Aug;59(4):588-99. doi: 10.1111/j.1365-313X.2009.03899.x. Epub 2009 Apr 25.
In maize, human selection for yellow endosperm has led to diversification of grain carotenoid content and composition. This variation has remained largely untapped in modern breeding programs that have focused nearly exclusively on yield gains. In this paper, we show that carotenoid accumulation patterns differ in maize embryo and endosperm tissues, and that this tissue-specific accumulation is largely mediated through differential expression of genes encoding lycopene beta-cyclase and lycopene epsilon-cyclase (LcyB and LcyE). In the absence of LCYB function, LCYE produces a number of unusual carotenes, including delta-carotene, epsilon-carotene and lactucaxanthin (epsilon,epsilon-carotene-3,3'-diol), in endosperm tissue. A similar carotene cyclization profile is seen when LcyE is introduced into lycopene-accumulating Escherichia coli cells, suggesting that the carotenoid profile in the endosperm tissue of the lcyB mutant is largely due to the activity of LCYE in the absence of LCYB. Using site-directed mutagenesis of LcyE, critical amino acids were defined that regulate the product specificity of the enzyme. Finally, we show that several genes encoding enzymes in isoprenoid and carotenoid biosynthesis are probably subject to negative transcriptional regulation, mediated by a carotenoid or a molecule derived from a carotenoid. The implications of these findings with respect to breeding for carotenoid composition in maize grain are discussed.
在玉米中,人类对黄色胚乳的选择导致了谷物类胡萝卜素含量和组成的多样化。这种变异在现代育种计划中基本未被利用,因为这些计划几乎完全专注于提高产量。在本文中,我们表明玉米胚和胚乳组织中的类胡萝卜素积累模式不同,并且这种组织特异性积累很大程度上是通过编码番茄红素β-环化酶和番茄红素ε-环化酶(LcyB和LcyE)的基因的差异表达来介导的。在缺乏LCYB功能的情况下,LCYE在胚乳组织中产生许多不寻常的胡萝卜素,包括δ-胡萝卜素、ε-胡萝卜素和叶黄质(ε,ε-胡萝卜素-3,3'-二醇)。当将LcyE导入积累番茄红素的大肠杆菌细胞时,会出现类似的胡萝卜素环化谱,这表明lcyB突变体胚乳组织中的类胡萝卜素谱很大程度上是由于在缺乏LCYB时LCYE的活性。通过对LcyE进行定点诱变,确定了调节该酶产物特异性的关键氨基酸。最后,我们表明类异戊二烯和类胡萝卜素生物合成中的几个编码酶的基因可能受到类胡萝卜素或源自类胡萝卜素的分子介导的负转录调控。讨论了这些发现对玉米籽粒类胡萝卜素组成育种的意义。