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首页> 外文期刊>Plant molecular biology reporter >Enhanced Agrobacterium-mediated Transformation of Embryogenic Calli of Upland Cotton via Efficient Selection and Timely Subculture of Somatic Embryos
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Enhanced Agrobacterium-mediated Transformation of Embryogenic Calli of Upland Cotton via Efficient Selection and Timely Subculture of Somatic Embryos

机译:通过高效选择和及时继代培养体细胞胚增强农杆菌介导的陆地棉胚性愈伤组织的转化

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摘要

Agrobacterium-tumefaciens-mediated transformation of cotton embryogenic calli (EC) was enhanced by choosing appropriate EC and improving efficiency of coculture, selection cultivation, and plant regeneration. After 48-h cocultivation, the number of beta-glucuronidase (GUS)-positive calli characterized by yellow, loose, and fine-grained EC was twofold greater than that of gray, brown, and coarse-granule EC. It indicated that efficiency of transient transformation was affected by EC morphology. And transient transformation efficiency was also improved by cocultivation on the medium adding 50 mg l(-1) acetosyringone at 19 C for 48 h. Subculturing EC on the selection medium with low cell density was beneficial to production of more kanamycin-resistant (Km-R) calli lines. From an original 0.3-g EC, an average of 20 Km-R calli lines were obtained from a selection dish and the GUS-positive rate of Km-R clones was 81.97%. A large number of normal plants were rapidly regenerated on the differentiation medium with dehydration treatments and the GUS-positive rate of regeneration plants was about 72.60%. Polymerase chain reaction analysis of GUS-positive plantlets revealed a 100% positive detection rate for neomycin phosphotransferase II gene and uidA. Southern blot of transgenic plants regenerated from different Km-R calli lines demonstrated that the target gene, mostly with the low copy number, has been integrated into the cotton genome.
机译:通过选择合适的EC并提高共培养,选择栽培和植物再生的效率,可增强农杆菌介导的棉花胚性愈伤组织(EC)转化。共培养48小时后,以黄色,疏松和细粒EC为特征的β-葡萄糖醛酸酶(GUS)阳性愈伤组织的数量是灰色,棕色和粗粒EC的两倍。这表明瞬态转化的效率受EC形态的影响。通过在19 C下添加50 mg l(-1)乙酰丁香酮的培养基上共培养48 h,瞬时转化效率也得到了提高。在具有低细胞密度的选择培养基上对EC进行亚培养有利于生产更具抗卡那霉素(Km-R)的愈伤组织。从最初的0.3 g EC中,从选择皿中平均获得20 Km-R愈伤组织,Km-R克隆的GUS阳性率为81.97%。通过脱水处理,大量的正常植物在分化培养基上迅速再生,再生植物的GUS阳性率为约72.60%。对GUS阳性小植株的聚合酶链反应分析显示,新霉素磷酸转移酶II基因和uidA的阳性检出率为100%。从不同的Km-R愈伤组织再生的转基因植物的Southern印迹表明,目标基因(大部分具有低拷贝数)已整合到棉花基因组中。

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