Soybean hairy roots produced in vitro by Agrobacterium rhizogenes-mediated transformation
Liqiao Chen, Yupeng Cai, Xiujie Liu, Guo Chen, Shi Sun, Cunxiang Wu, Bingjun Jiang, Tianfu Han, Wensheng Hou
Abstract
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Liqiao Chen, Yupeng Cai, Xiujie Liu, Guo Chen, Shi Sun, Cunxiang Wu, Bingjun Jiang, Tianfu Han, Wensheng Hou
Abstract
Open-access reader
Soybean is one of the world's most important oil and protein crops. Efficient transformation is a key factor for the improvement of soybean by genetic modification. We describe an optimized protocol for the Agrobacterium rhizogenes -mediated transformation of soybean and the induction of hairy root development in vitro. Cotyledons with 0.5-cm hypocotyls were cut from 5-day-old seedlings and used as explants. After infection and co-cultivation, hairy roots were produced in induction culture medium after 10–12 days. Using this method, 90%–99% of the infected explants of five different cultivars produced hairy roots within one month. Observations using reporter constructs showed that 30%–60% of the hairy roots induced were transformed. Based on high transformation efficiency and short transformation period, this method represents an efficient and rapid platform for study of soybean gene function.
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Soybean is one of the world's most important oil and protein crops. Efficient transformation is a key factor for the improvement of soybean by genetic modification. We describe an optimized protocol for the Agrobacterium rhizogenes -mediated transformation of soybean and the induction of hairy root development in vitro. Cotyledons with 0.5-cm hypocotyls were cut from 5-day-old seedlings and used as explants. After infection and co-cultivation, hairy roots were produced in induction culture medium after 10–12 days. Using this method, 90%–99% of the infected explants of five different cultivars produced hairy roots within one month. Observations using reporter constructs showed that 30%–60% of the hairy roots induced were transformed. Based on high transformation efficiency and short transformation period, this method represents an efficient and rapid platform for study of soybean gene function.
Key concepts: Agrobacterium, Biology, Transformation (genetics), Explant culture, Hypocotyl, Reporter gene, Rhizobiaceae, Botany