Key Laboratory of Rice Genetic Breeding of Anhui Province, Rice Research Institute, Anhui Academy of Agricultural Sciences, Hefei, China.
Plant Biotechnol J. 2018 Jun;16(6):1138-1147. doi: 10.1111/pbi.12858. Epub 2017 Nov 28.
Using promoters expressed in nonendosperm tissues to activate target genes in specific plant tissues or organs with very limited expression in the endosperm is an attractive approach in crop transgenic engineering. In this article, five putative nonendosperm tissue-expressed promoters were cloned from the rice genome and designated P , P , P , P and P . By qualitatively and quantitatively examining GUSplus reporter gene expression in transgenic rice plants, P -P were all found to be active in the roots, leaves, stems, sheaths and panicles but not in the endosperm of plants at different developmental stages. In addition, P , P and P were also inactive in rice embryos. Among these promoters, P and P exhibited higher activities in all of the tested tissues, and their activities in stems, leaves, roots and sheaths were higher than or comparable to those of the rice Actin1 promoter. We also progressively monitored the activities of P -P in two generations of single-copy lines and found that these promoters were stably expressed between generations. Transgenic rice was produced using P and P to drive a modified Bt gene, mCry1Ab. Bt protein expressed in the tested plants ranged from 1769.4 to 4428.8 ng/g fresh leaves, whereas Bt protein was barely detected in the endosperm. Overall, our study identified five novel nonendosperm tissue-expressed promoters that might be suitable for rice genetic engineering and might reduce potential social concern regarding the safety of GMO crops.
利用在非胚乳组织中表达的启动子激活在胚乳中表达非常有限的特定植物组织或器官中的靶基因,是作物转基因工程中的一种有吸引力的方法。本文从水稻基因组中克隆了 5 个假定的非胚乳组织表达启动子,分别命名为 P 、 P 、 P 、 P 和 P 。通过定性和定量检测转基因水稻植株中 GUSplus 报告基因的表达,发现 P -P 在不同发育阶段的植株根、叶、茎、鞘和穗中均有活性,但在胚乳中没有活性。此外, P 、 P 和 P 在水稻胚中也没有活性。在这些启动子中, P 和 P 在所有测试的组织中都表现出较高的活性,它们在茎、叶、根和鞘中的活性高于或可与水稻 Actin1 启动子相媲美。我们还逐步监测了 P -P 在两代单拷贝系中的活性,发现这些启动子在两代之间稳定表达。使用 P 和 P 驱动改良的 Bt 基因 mCry1Ab 生产了转基因水稻。在测试的植物中表达的 Bt 蛋白含量为 1769.4 至 4428.8ng/g 鲜叶,而在胚乳中几乎检测不到 Bt 蛋白。总的来说,我们的研究确定了五个新的非胚乳组织表达启动子,它们可能适合水稻基因工程,并可能减少对转基因作物安全性的潜在社会关注。