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首页> 外文期刊>Plant Biotechnology >Overproduction of artemisinin in tetraploid Artemisia annua L.
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Overproduction of artemisinin in tetraploid Artemisia annua L.

机译:四倍体青蒿中青蒿素的过量生产。

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Tetraploid plants of Artemisia annua L. exhibiting high-artemisinin-yield were successfully induced by treating excised leaves of in vitro plant with 0.1% colchicine. The chromosome number of original diploid plant was confirmed to be 2n=2x=18 whereas that of the tetraploid plant was 2n=4x=36. Morphological and anatomical characteristics of tetraploid plants were obviously different from the diploid counterpart. The tetraploid plants had larger sizes of root system, stomata and glandular secretory trichomes than diploid plant, whereas leaf size in tetraploid was smaller but thicker than diploid. The highest amount of artemisinin content was produced at flower blooming stage in both diploid (2.4% dry weight) and tetraploid (3.8% dry weight) lines. Based on the maximum yield of artemisinin, the optimum harvest time for the diploid lines was flower initiation stage but it was at full blooming stage for tetraploid lines. The highest artemisinin yield in tetraploid plants up to 3.0 mg plant(-1) was detected at this stage which was 1.5 times greater than diploid plants. This is a first report that clearly showed the potential of chromosome doubling strategy to produce high-yield line of A. annua plant for artemisinin production.
机译:通过用0.1%秋水仙碱处理离体植物的离体叶片,成功诱导了青蒿的四倍体植物,该植物具有较高的青蒿素收率。确认原始二倍体植物的染色体数为2n = 2x = 18,而四倍体植物的染色体数为2n = 4x = 36。四倍体植物的形态和解剖特征与二倍体植物明显不同。四倍体植物的根系,气孔和腺分泌毛状体比二倍体植物大,而四倍体的叶片较小但比二倍体厚。在开花期,在二倍体(干重为2.4%)和四倍体(干重为3.8%)品系中,青蒿素含量最高。基于青蒿素的最大产量,二倍体品系的最佳收获时间是花的起始阶段,而四倍体品系的最佳收获时间则是在开花期。在此阶段,检测到四倍体植物中最高青蒿素产量最高为3.0 mg plant(-1),是二倍体植物的1.5倍。这是第一份报告,清楚地​​表明了染色体加倍策略在生产青蒿素生产的高产农杆菌植物高产系中的潜力。

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