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Overexpression of Sinapine Esterase BnSCE3 in Oilseed Rape Seeds Triggers Global Changes in Seed Metabolism1[W][OA]

机译:油菜种子中芥子油酯酶BnSCE3的过表达引发种子代谢的整体变化[W] [OA]

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摘要

Sinapine (O-sinapoylcholine) is the predominant phenolic compound in a complex group of sinapate esters in seeds of oilseed rape (Brassica napus). Sinapine has antinutritive activity and prevents the use of seed protein for food and feed. A strategy was developed to lower its content in seeds by expressing an enzyme that hydrolyzes sinapine in developing rape seeds. During early stages of seedling development, a sinapine esterase (BnSCE3) hydrolyzes sinapine, releasing choline and sinapate. A portion of choline enters the phospholipid metabolism, and sinapate is routed via 1-O-sinapoyl-β-glucose into sinapoylmalate. Transgenic oilseed rape lines were generated expressing BnSCE3 under the control of a seed-specific promoter. Two distinct single-copy transgene insertion lines were isolated and propagated to generate homozygous lines, which were subjected to comprehensive phenotyping. Sinapine levels of transgenic seeds were less than 5% of wild-type levels, whereas choline levels were increased. Weight, size, and water content of transgenic seeds were significantly higher than those of wild-type seeds. Seed quality parameters, such as fiber and glucosinolate levels, and agronomically important traits, such as oil and protein contents, differed only slightly, except that amounts of hemicellulose and cellulose were about 30% higher in transgenic compared with wild-type seeds. Electron microscopic examination revealed that a fraction of the transgenic seeds had morphological alterations, characterized by large cavities near the embryonic tissue. Transgenic seedlings were larger than wild-type seedlings, and young seedlings exhibited longer hypocotyls. Examination of metabolic profiles of transgenic seeds indicated that besides suppression of sinapine accumulation, there were other dramatic differences in primary and secondary metabolism. Mapping of these changes onto metabolic pathways revealed global effects of the transgenic BnSCE3 expression on seed metabolism.
机译:Sinapine(O-sinapoylcholine)是含油菜子(Brassica napus)种子中复杂的芥子酸酯类中的主要酚类化合物。锡那平具有抗营养活性,可防止种子蛋白用于食品和饲料。通过表达一种在发育中的油菜种子中水解sinapine的酶来开发降低种子中种子含量的策略。在幼苗发育的早期,sinapine酯酶(BnSCE3)水解sinapine,释放出胆碱和芥子酸酯。胆碱的一部分进入磷脂代谢,而芥子酸酯通过1-O-芥子酰基-β-葡萄糖进入芥子酸苹果酸酯。在种子特异性启动子的控制下产生表达BnSCE3的转基因油菜。分离并传播两个不同的单拷贝转基因插入株系,以产生纯合株系,将其进行全面的表型分析。 Sinapine转基因种子的水平低于野生型水平的5%,而胆碱水平却提高了。转基因种子的重量,大小和水分含量显着高于野生型种子。种子质量参数(例如纤维和芥子油苷水平)以及农艺上重要的性状(例如油和蛋白质含量)仅略有不同,只是转基因中的半纤维素和纤维素含量比野生型种子高约30%。电子显微镜检查表明,一部分转基因种子具有形态学改变,其特征是在胚胎组织附近有大孔。转基因的幼苗比野生型的幼苗大,而年轻的幼苗表现出更长的胚轴。检查转基因种子的代谢状况表明,除抑制sinapine积累外,初级和次级代谢还存在其他显着差异。这些变化映射到代谢途径上揭示了转基因BnSCE3表达对种子代谢的整体影响。

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