首页> 美国卫生研究院文献>Breeding Science >Overexpression of Arabidopsis thaliana gibberellic acid 20 oxidase (AtGA20ox) gene enhance the vegetative growth and fiber quality in kenaf (Hibiscus cannabinus L.) plants
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Overexpression of Arabidopsis thaliana gibberellic acid 20 oxidase (AtGA20ox) gene enhance the vegetative growth and fiber quality in kenaf (Hibiscus cannabinus L.) plants

机译:拟南芥赤霉素20氧化酶(AtGA20ox)基因的过表达增强了洋麻(Hibiscus cannabinus L.)植物的营养生长和纤维品质。

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摘要

Kenaf (Hibiscus cannabinus L.; Family: Malvaceae), is multipurpose crop, one of the potential alternatives of natural fiber for biocomposite materials. Longer fiber and higher cellulose contents are required for good quality biocomposite materials. However, average length of kenaf fiber (2.6 mm in bast and 1.28 mm in whole plant) is below the critical length (4 mm) for biocomposite production. Present study describes whether fiber length and cellulose content of kenaf plants could be enhanced by increasing GA biosynthesis in plants by overexpressing Arabidopsis thaliana Gibberellic Acid 20 oxidase (AtGA20ox) gene. AtGA20ox gene with intron was overexpressed in kenaf plants under the control of double CaMV 35S promoter, followed by in planta transformation into V36 and G4 varieties of kenaf. The lines with higher levels of bioactive GA (0.3–1.52 ng g−1 fresh weight) were further characterized for their morphological and biochemical traits including vegetative and reproductive growth, fiber dimension and chemical composition. Positive impact of increased gibberellins on biochemical composition, fiber dimension and their derivative values were demonstrated in some lines of transgenic kenaf including increased cellulose content (91%), fiber length and quality but it still requires further study to confirm the critical level of this particular bioactive GA in transgenic plants.
机译:红麻(Hibiscus cannabinus L .;家族:锦葵科),是一种多用途作物,是生物复合材料天然纤维的潜在替代品之一。高质量的生物复合材料需要更长的纤维和更高的纤维素含量。然而,洋麻纤维的平均长度(韧皮为2.6毫米,整株为1.28毫米)低于生物复合材料生产的临界长度(4毫米)。目前的研究描述了通过过表达拟南芥赤霉素20氧化酶(AtGA20ox)基因来增加植物中GA的生物合成,是否可以提高洋麻植物的纤维长度和纤维素含量。在双CaMV 35S启动子的控制下,洋麻植物中带有内含子的AtGA20ox基因过表达,然后在植物中转化为洋麻的V36和G4品种。具有较高生物活性GA水平(鲜重0.3–1.52 ng g -1 )的品系的形态和生化特性(包括营养和生殖生长,纤维尺寸和化学组成)得到进一步表征。在一些转基因洋麻中,赤霉素对生化成分,纤维尺寸及其衍生物值的增加具有积极影响,包括增加的纤维素含量(91%),纤维长度和质量,但仍需要进一步研究以确认这一特定水平的关键水平。转基因植物中的生物活性GA。

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