首页> 外文OA文献 >Isolation and Expression of Glucosinolate Synthesis Genes CYP83A1 and CYP83B1 in Pak Choi (Brassica rapa L. ssp. chinensis var. communis (N. Tsen & S.H. Lee) Hanelt)
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Isolation and Expression of Glucosinolate Synthesis Genes CYP83A1 and CYP83B1 in Pak Choi (Brassica rapa L. ssp. chinensis var. communis (N. Tsen & S.H. Lee) Hanelt)

机译:芥子油苷合成基因CYP83A1和CYP83B1在白菜中的分离和表达(N. Tsen&S.H. Lee)Hanelt)

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摘要

CYP83A1 and CYP83B1 are two key synthesis genes in the glucosinolate biosynthesis pathway. CYP83A1 mainly metabolizes the aliphatic oximes to form aliphatic glucosinolate and CYP83B1 mostly catalyzes aromatic oximes to synthesis corresponding substrates for aromatic and indolic glucosinolates. In this study, two CYP83A1 genes named BcCYP83A1-1 (JQ289997), BcCYP83A1-2 (JQ289996) respectively and one CYP83B1 (BcCYP83B1, HM347235) gene were cloned from the leaves of pak choi (Brassica rapa L. ssp. chinensis var. communis (N. Tsen & S.H. Lee) Hanelt) “Hangzhou You Dong Er” cultivar. Their ORFs were 1506, 1509 and 1500 bp in length, encoding 501, 502 and 499 amino acids, respectively. The predicted amino acid sequences of CYP83A1-1, CYP83A1-2 and CYP83B1 shared high sequence identity of 87.65, 86.48 and 95.59% to the corresponding ones in Arabidopsis, and 98.80, 98.61 and 98.80% to the corresponding ones in Brassica pekinensis (Chinese cabbage), respectively. Quantitative real-time PCR analysis indicated that both CYP83A1 and CYP83B1 expressed in roots, leaves and petioles of pak choi, while the transcript abundances of CYP83A1 were higher in leaves than in petioles and roots, whereas CYP83B1 showed higher abundances in roots. The expression levels of glucosinolate biosynthetic genes were consistent with the glucosinolate profile accumulation in shoots of seven cultivars and three organs. The isolation and characterization of the glucosinolate synthesis genes in pak choi would promote the way for further development of agronomic traits via genetic engineering.
机译:CYP83A1和CYP83B1是硫代葡萄糖苷生物合成途径中的两个关键合成基因。 CYP83A1主要代谢脂肪族肟形成脂肪族芥子油苷,CYP83B1主要催化芳香族肟合成相应的芳香族和吲哚芥子油苷底物。本研究从青菜(Brassica rapa L.ssp.chinensis var。communis var。communis var。communis var。communis var.communis var.communis.communis.communis.var.communis.communis.var.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis.communis的叶片中,分别克隆出两个CYP83A1基因,分别命名为BcCYP83A1-1(JQ289997),BcCYP83A1-2(JQ289996)和一个CYP83B1(BcCYP83B1,HM347235)基因中。 (N. Tsen&Lee SH)Hanelt)“杭州有东二”品种。它们的ORF长度为1506、1509和1500bp,分别编码501、502和499个氨基酸。 CYP83A1-1,CYP83A1-2和CYP83B1的预测氨基酸序列与拟南芥中的相应氨基酸具有87.65、86.48和95.59%的高序列同一性,与甘蓝型油菜中的相应氨基酸具有98.80、98.61和98.80%的较高序列同一性。 ), 分别。实时荧光定量PCR分析表明,CYP83A1和CYP83B1在小白菜的根,叶和叶柄中均表达,而CYP83A1的转录本丰度高于叶柄和根中,而CYP83B1则在根中具有较高的丰度。芥子油苷生物合成基因的表达水平与七个品种和三个器官的新芽中芥子油苷分布有关。白菜中芥子油苷合成基因的分离和鉴定将为通过基因工程进一步发展农艺性状提供途径。

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