Jia Haiyan, Zhao Bing, Wang Xiaodong, Wang Yuchun
National Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China.
Sheng Wu Gong Cheng Xue Bao. 2008 Oct;24(10):1723-8. doi: 10.1016/s1872-2075(08)60071-0.
A system for the Agrobacterium rhizogenes-mediated transformation and plant regeneration of A. venetum has been developed. The highest transformation frequency was 100%, achieved by using strain LBA9402 with root explants. The highest density of hairy roots reached 22 when root explants transformed by R1000 cultured in the dark. Adventitious shoots were obtained from profusely branched, fast-growing (type PBF) hairy roots, and the adventitious shoot induction frequency was 20%. Regenerated shoots rooted easily on hormone-free 1/2 MS solid medium in 2 weeks. Approximately 1/3 regenerated plants derived from hairy roots exhibited prolific roots with shortened internodes. Whereas other regenerated plants showed another phenotype: long intemodes, strong stems, and fleshy blades. However, all regenerated plants displayed a relatively fast development procedure and stronger than the aseptic seedlings. Polymerase chain reaction (PCR) analyses confirmed the hairy root lines and regenerated plants were induced by A. rhizogenes.
已开发出一种用于发根农杆菌介导的罗布麻转化和植株再生的系统。使用菌株LBA9402和根外植体时,最高转化频率达到100%。当用R1000转化的根外植体在黑暗中培养时,毛状根的最高密度达到22。从大量分支、生长迅速(PBF型)的毛状根中获得不定芽,不定芽诱导频率为20%。再生芽在无激素的1/2 MS固体培养基上2周内很容易生根。大约1/3源自毛状根的再生植株表现出多根且节间缩短。而其他再生植株表现出另一种表型:节间长、茎粗壮且叶片肉质。然而,所有再生植株均显示出相对较快的发育过程且比无菌苗更强壮。聚合酶链反应(PCR)分析证实毛状根系和再生植株是由发根农杆菌诱导产生的。