National Institute for Biotechnology and Genetic Engineering (NIBGE), Jhang Road, PO Box 577, Faisalabad, 38000, Pakistan.
Mol Biol Rep. 2011 Apr;38(4):2359-69. doi: 10.1007/s11033-010-0369-7. Epub 2010 Nov 20.
The phosphoenolpyruvate (PEP) carboxylase is regulated at the levels of transcription and post-translation in C4 plants in light and abundantly accumulates in leaf mesophyll cells. We report here developmental and photosynthetic regulation of stably accumulated Bacillus thuringiensis δ-endotoxin under the control of PEP-C promoter in transgenic sugarcane. In young leaves of plants, the transprotein is accumulated to 39% of the levels in mature leaves (135 ng mg(-1)), and is induced with the cell development, from base to tip. Nevertheless, these levels are decreased up to 99.98% in non-photosynthetic cells as cane matures, from top to bottom, suggesting the photosynthesis regulation of δ-endotoxin in cane cells. Further, transgenic plants are highly resistant to 'dead heart'. In these studies, Scirpophaga nivela larvae causing 'dead heart' were killed within one hour of release to the transgenic plants. Therefore, this report may be regarded as the first report that provides a better strategy for developing transgenic sugarcane lines with absolute protection against invading larvae and no toxin residues in cane juice.
磷酸烯醇式丙酮酸(PEP)羧化酶在 C4 植物中受光和大量积累的叶肉细胞的转录和翻译后水平调节。我们在此报告在转基因甘蔗中,受 PEP-C 启动子控制的稳定积累的苏云金芽孢杆菌 δ-内毒素的发育和光合调节。在植物的幼叶中,转蛋白积累到成熟叶(135ngmg(-1))水平的 39%,并随着细胞从基部到顶部的发育而被诱导。然而,随着甘蔗从上到下成熟,这些水平在非光合细胞中下降到 99.98%,表明在甘蔗细胞中 δ-内毒素的光合作用调节。此外,转基因植物对“枯心”具有高度抗性。在这些研究中,导致“枯心”的 Scirpophaga nivela 幼虫在释放到转基因植物后一小时内被杀死。因此,本报告可以被视为第一个提供更好策略的报告,用于开发具有绝对抗入侵幼虫能力且甘蔗汁中无毒素残留的转基因甘蔗品系。