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Development of Novel Glyphosate-Tolerant Japonica Rice Lines: A Step Toward Commercial Release

机译:新型耐草甘膦粳稻的开发:迈向商业化

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摘要

Glyphosate is the most widely used herbicide for its low cost and high efficiency. However, it is rarely applied directly in rice field due to its toxicity to rice. Therefore, glyphosate-tolerant rice can greatly decrease the cost of rice production and provide a more effective weed management strategy. Although, several approaches to develop transgenic rice with glyphosate tolerance have been reported, the agronomic performances of these plants have not been well evaluated, and the feasibility of commercial production has not been confirmed yet. Here, a novel glyphosate-tolerant gene cloned from the bacterium Isoptericola variabilis was identified, codon optimized (designated as I. variabilis-EPSPS*), and transferred into Zhonghua11, a widely used japonica rice cultivar. After systematic analysis of the transgene integration via PCR, Southern blot and flanking sequence isolation, three transgenic lines with only one intact I. variabilis-EPSPS* expression cassette integrated into intergenic regions were identified. Seed test results showed that the glyphosate tolerance of the transgenic rice was about 240 times that of wild type on plant medium. The glyphosate tolerance of transgenic rice lines was further evaluated based on comprehensive agronomic performances in the field with T3 and T5generations in a 2-year assay, which showed that they were rarely affected by glyphosate even when the dosage was 8400 g ha−1. To our knowledge, this is the first demonstration of the development of glyphosate-tolerant rice lines based on a comprehensive analysis of agronomic performances in the field. Taken together, the results suggest that the selected glyphosate-tolerant rice lines are highly tolerant to glyphosate and have the possibility of commercial release. I. variabilis-EPSPS* also can be a promising candidate gene in other species for developing glyphosate-tolerant crops.
机译:草甘膦因其低成本和高效率而成为使用最广泛的除草剂。但是,由于其对稻米的毒性,因此很少直接用于稻田。因此,耐草甘膦水稻可以大大降低水稻生产成本,并提供更有效的杂草治理策略。尽管已经报道了开发具有草甘膦耐受性的转基因水稻的几种方法,但是尚未很好地评估这些植物的农艺性能,并且尚未证实商业化生产的可行性。在此,鉴定了从瓦氏异鳞翅目(Isoptericola variabilis)细菌中克隆的耐草甘膦的新基因,对其进行了密码子优化(命名为I. variabilis-EPSPS * ),并转移到广泛使用的粳稻品种中华11中。通过PCR,Southern blot和侧翼序列分离对转基因整合进行系统分析,鉴定出3个转基因株系,其中只有一个完整的I. variabilis-EPSPS * 表达盒整合到基因间区域中。种子测试结果表明,转基因水稻对草甘膦的耐受性约为野生型在植物培养基上的240倍。在2年的试验中,基于具有T3和T5世代的田间综合农艺性能,进一步评估了转基因水稻品系的草甘膦耐受性,这表明即使剂量为8400 g ha,它们也很少受到草甘膦的影响- 1 。据我们所知,这是对田间农艺性能的综合分析基础上的耐草甘膦水稻品系发展的首次证明。两者合计,结果表明所选的耐草甘膦水稻品系对草甘膦具有高度的耐受性,并具有商业化释放的可能性。 I. variabilis-EPSPS * 在开发耐草甘膦作物的其他物种中也可能是有希望的候选基因。

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