洋桔梗
- 网络Eustoma grandiflorum;Lisianthus;Prairie gentian
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为了优化洋桔梗的转化条件,研究了其再生系统和抗生素敏感性。
In order to optimize the transformation conditions for Eustoma grandiflorum , the regeneration system and antibiotics sensitivity were also investigated .
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本研究以月季、洋桔梗和硫华菊为试验材料,运用真空冷冻干燥法、包埋干燥法对其干燥方法进行了研究。
In this thesis , a number of experimental had been performed on Rosa hybrida , Eustoma grandiflorum and Cosmos sulphurens , using the technique of vacuum freeze-drying and embedding drying .
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通过基因组DNA的PCR检测得到转基因阳性株,其中烟草24株,洋桔梗8株。
The positive transgenic plantlets with 24 tobacco transformants and 8 lisianthus transformants were obtained by PCR of genomic DNA .
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从而为农杆菌介导的Bt基因遗传转化康乃馨和洋桔梗奠定了基础。
It laid a foundation for the Agrobacterium-mediated genetic transformation of Bt gene into carnations and lisianthus . 5 .
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洋桔梗切花衰老过程中的蛋白质变化
Protein Changes in Eustoma grandiflorum Cut Flowers during Their Senescence
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洋桔梗在天津地区的栽培试验
Experiment on Eustoma grandiflorum Cultivation in Tianjin Area
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赤霉素对不同光温条件下洋桔梗幼苗生长的影响
Effect of GA on Seedling Growth of Eustoma grandiflorum under Different Light and Temperature Conditions
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然而,研究焦点主要集中在经济农作物上,花卉抗虫基因工程虽然有一定发展,但是还处于初级阶段,而且关于洋桔梗抗虫基因工程的研究几乎还未见报道。
Since most researches focus on economic crops , insect-resistant genetic engineering of flowers although have developed , but also in infancy , and the insect-resistant genetic engineering on Eustoma grandiflorum has not been reported almost .