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首页> 外文期刊>Molecular Breeding >Inheritance and variation of erucic acid content in a transgenic rapeseed (Brassica napus L.) doubled haploid population
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Inheritance and variation of erucic acid content in a transgenic rapeseed (Brassica napus L.) doubled haploid population

机译:转基因油菜(甘蓝型油菜)单倍体群体中芥酸含量的遗传和变异

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摘要

Erucic acid (22:1) is a valuable renewable resource for the oleochemical industry. Currently available high erucic acid rapeseed cultivars contain only about 50% erucic acid in the seed oil. A substantial increase of the erucic acid content of the rapeseed oil could increase market prospects. The transgenic line TNKAT, over expressing the rapeseed fatty acid elongase gene (fae1) and expressing the Ld-LPAAT gene from Limnanthes douglasii was crossed with the line 6575-1 HELP (high erucic and low polyunsaturated fatty acid). A from the F1 plants produced population of 90 doubled haploid (DH) lines was tested in a greenhouse with three replicates. Parental lines TNKAT and 6575-1 HELP contained 46 and 50% erucic acid in the seed oil, respectively. In the DH population the erucic acid content ranged between 35 and 59%. The Ld-LPAAT + Bn-fae1.1 transgene showed a 1:1 segregation. The transgenic DH lines contained up to 8% trierucolyglycerol, but surprisingly had a by 2.3% lower erucic acid content compared to the non-transgenic segregants. Results indicated that the ectopically expressed fae1.1 gene may not be functional. The DH population also showed a large quantitative variation for PUFA content ranging from 6 to 28% (TNKAT: 21%, 6575-1 HELP: 8%). Regression analysis showed that in the DH population a 10% reduction in PUFA content led to a 4.2% increase in erucic acid content. Development of locus specific PCR primers for the two resident erucic acid genes fae1.1 (A-genome) and fae1.2 genes (C-genome) of rapeseed allowed sequencing of the respective alleles from TNKAT and 6575-1 HELP. Single nucleotide polymorphisms were only found for the fae1.1 gene. Use of allele specific fae1.1 PCR primers, however, did not reveal a significant effect of the fae1.1 allele from either parent on erucic acid content. The high erucic acid low polyunsaturated fatty acid DH lines and the fae1 locus specific primers developed in the present study should be useful in future studies aimed at increasing erucic acid content in rapeseed.
机译:芥酸(22:1)是油脂化学工业的宝贵可再生资源。当前可获得的高芥酸油菜籽品种在种子油中仅包含约50%芥酸。菜籽油中芥酸含量的大量增加可以增加市场前景。过度表达油菜籽脂肪酸延伸酶基因(fae1)和来自Limnanthes douglasii的Ld-LPAAT基因的转基因品系TNKAT与品系6575-1 HELP(高芥酸和低多不饱和脂肪酸)杂交。在三个重复的温室中测试了来自F1植物的A产生的90个双单倍体(DH)系的种群。亲本系TNKAT和6575-1 HELP分别在种子油中包含46%和50%的芥酸。在DH人群中,芥酸含量在35%至59%之间。 Ld-LPAAT + Bn-fae1.1转基因显示1:1分离。转基因DH品系含有高达8%的甘油三酸酯,但是令人惊讶地与非转基因分离剂相比,芥酸含量降低了2.3%。结果表明异位表达的fae1.1基因可能不起作用。 DH人群的PUFA含量也存在较大的定量变化,范围为6%至28%(TNKAT:21%,6575-1 HELP:8%)。回归分析表明,在DH族中,PUFA含量降低了10%,芥酸含量增加了4.2%。油菜两个常驻芥酸基因fae1.1(A基因组)和fae1.2基因(C基因组)的基因座特异性PCR引物的开发,可以对来自TNKAT和6575-1 HELP的等位基因进行测序。仅发现了fae1.1基因的单核苷酸多态性。但是,等位基因特异性fae1.1 PCR引物的使用没有揭示亲本的fae1.1等位基因对芥酸含量的显着影响。本研究中开发的高芥酸低多不饱和脂肪酸DH系和fae1基因座特异性引物应在未来旨在提高油菜籽中芥酸含量的研究中有用。

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  • 来源
    《Molecular Breeding》 |2009年第1期|125-138|共14页
  • 作者单位

    Department of Crop Sciences Plant Breeding Georg-August-Universität Göttingen Von-Siebold-Str. 8 37075 Gottingen Germany;

    Department of Crop Sciences Plant Breeding Georg-August-Universität Göttingen Von-Siebold-Str. 8 37075 Gottingen Germany;

    Department of Crop Sciences Plant Breeding Georg-August-Universität Göttingen Von-Siebold-Str. 8 37075 Gottingen Germany;

    Department of Crop Sciences Plant Breeding Georg-August-Universität Göttingen Von-Siebold-Str. 8 37075 Gottingen Germany;

    Department of Crop Sciences Plant Breeding Georg-August-Universität Göttingen Von-Siebold-Str. 8 37075 Gottingen Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Brassica napus; Erucic acid; Oil quality; Fae1; LPAAT;

    机译:甘蓝型油菜;芥酸;油质;Fae1;LPAAT;

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