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Modification of Leaf Glucosinolate Contents in Brassica oleracea by Divergent Selection and Effect on Expression of Genes Controlling Glucosinolate Pathway

机译:不同选择对甘蓝型油菜叶片中芥子油苷含量的影响及其对调控芥子油苷途径基因表达的影响

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摘要

Modification of the content of secondary metabolites opens the possibility of obtaining vegetables enriched in these compounds related to plant defense and human health. We report the first results of a divergent selection for glucosinolate (GSL) content of the three major GSL in leaves: sinigrin (SIN), glucoiberin (GIB), and glucobrassicin (GBS) in order to develop six kale genotypes (Brassica oleracea var. acephala) with high (HSIN, HIGIB, HGBS) and low (LSIN, LGIB, LGBS) content. The aims were to determine if the three divergent selections were successful in leaves, how each divergent selection affected the content of the same GSLs in flower buds and seeds and to determine which genes would be involved in the modification of the content of the three GSL studied. The content of SIN and GIB after three cycles of divergent selection increased 52.5% and 77.68%, and decreased 51.9% and 45.33%, respectively. The divergent selection for GBS content was only successful and significant for decreasing the concentration, with a reduction of 39.04%. Mass selection is an efficient way of modifying the concentration of individual GSLs. Divergent selections realized in leaves had a side effect in the GSL contents of flower buds and seeds due to the novo synthesis in these organs and/or translocation from leaves. The results obtained suggest that modification in the SIN and GIB concentration by selection is related to the GSL-ALK locus. We suggest that this locus could be related with the indirect response found in the GBS concentration. Meantime, variations in the CYP81F2 gene expression could be the responsible of the variations in GBS content. The genotypes obtained in this study can be used as valuable materials for undertaking basic studies about the biological effects of the major GSLs present in kales.
机译:二级代谢物含量的改变为获得富含这些与植物防御和人类健康有关的化合物的蔬菜提供了可能性。我们报告了三个主要GSL叶片中芥子油苷(GSL)含量的不同选择的第一个结果:芥子苷(SIN),葡萄糖素(GIB)和葡糖溴素(GBS)以开发六种羽衣甘蓝基因型(芸苔var。 (hsin,HIGIB,HGBS)和低(LSIN,LGIB,LGBS)含量高。目的是确定三种不同选择在叶片中是否成功,每种不同选择如何影响花蕾和种子中相同GSL的含量,并确定哪些基因将参与所研究的三种GSL含量的修饰。经过三个周期的发散选择后,SIN和GIB的含量分别增加了52.5%和77.68%,分别降低了51.9%和45.33%。 GBS含量的不同选择仅对降低浓度是成功的且有意义的,降低了39.04%。质量选择是修改单个GSL浓度的有效方法。由于这些器官中的新合成和/或叶片易位,因此在叶片中实现的发散选择对花蕾和种子的GSL含量有副作用。获得的结果表明,通过选择对SIN和GIB浓度的修饰与GSL-ALK基因座有关。我们建议该基因座可能与GBS浓度中的间接反应有关。同时,CYP81F2基因表达的变化可能是GBS含量变化的原因。在这项研究中获得的基因型可以用作有价值的材料,以进行有关存在于羽衣甘蓝中的主要GSL的生物学效应的基础研究。

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