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Engineering of enhanced glycine betaine synthesis improves drought tolerance in maize
Authors:Quan Ruidang  Shang Mei  Zhang Hui  Zhao Yanxiu  Zhang Juren
Affiliation:School of Life Sciences, Shandong University, 27 Shanda South Road, Jinan, Shandong, 250100, China; Key Laboratory of Plant Stress Research, Shandong Normal University, Jinan, Shandong, 250014, China
Abstract:Glycine betaine plays an important role in some plants, including maize, in conditions of abiotic stress, but different maize varieties vary in their capacity to accumulate glycine betaine. An elite maize inbred line DH4866 was transformed with the betA gene from Escherichia coli encoding choline dehydrogenase (EC 1.1.99.1), a key enzyme in the biosynthesis of glycine betaine from choline. The transgenic maize plants accumulated higher levels of glycine betaine and were more tolerant to drought stress than wild-type plants (non-transgenic) at germination and the young seedling stage. Most importantly, the grain yield of transgenic plants was significantly higher than that of wild-type plants after drought treatment. The enhanced glycine betaine accumulation in transgenic maize provides greater protection of the integrity of the cell membrane and greater activity of enzymes compared with wild-type plants in conditions of drought stress.
Keywords:choline dehydrogenase  drought stress  glycine betaine                Zea mays L
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