Department of Biology, Faculty of Mathematics and Natural Sciences, Bogor Agricultural University (IPB University), Kampus IPB Darmaga, Bogor, 16680, Indonesia.
Department of Biology, Faculty of Mathematics and Natural Sciences, University of Riau, Pekanbaru, Riau, Indonesia.
Plant Physiol Biochem. 2021 May;162:86-99. doi: 10.1016/j.plaphy.2021.02.019. Epub 2021 Feb 21.
There is a decrease in the land available for rice cultivation due to the rapid conversion to urban uses. Subsequently, acid soil could be an alternative land cultivating rice, but will require the use of aluminum (Al)-tolerant rice varieties. This Al tolerance trait is genetically controlled, and there is a need to discover more genes needed to develop Al-tolerant rice. Therefore, the objective of this study was to clone and characterize a novel Al tolerance gene isolated from a local cultivar of Indonesian rice. The gene cloning was conducted based on the rye/rice microsynteny relationship. In addition, the root growth and gene expression analyses were performed to verify the role of the gene on Al tolerance in gene-silenced rice and in overexpressed transgenic tobacco. The results showed an Al tolerance candidate gene, OsGERLP, was successfully cloned from rice cv. Hawara Bunar, with its gene encoding a protein similar to a bacterial ribosomal L32 protein. Additionally, the analysis showed that low gene expression caused the gene-silenced rice to be sensitive to Al, while high expression induced the Al tolerance in transgenic tobacco. Furthermore, it was discovered that the gene expression level in both plants was in line with the lower expression of the OsFRDL4 gene in the silenced rice and the high expression of the MATE gene in transgenic tobacco also with the higher citrate secretion from transgenic tobacco roots. In conclusion, the OsGERLP gene could act as a regulator for other Al tolerance genes, with the potential to develop Al-tolerant rice varieties.
由于快速转为城市用途,可用于种植水稻的土地减少。因此,酸性土壤可能是另一种可用于种植水稻的土地,但这需要使用耐铝(Al)的水稻品种。这种 Al 耐性特性是由遗传控制的,因此需要发现更多开发耐 Al 水稻所需的基因。因此,本研究的目的是从印度尼西亚当地水稻品种中克隆和鉴定一种新的 Al 耐性基因。根据黑麦/水稻微同源关系进行基因克隆。此外,还进行了根生长和基因表达分析,以验证该基因在基因沉默水稻和过表达转基因烟草中对 Al 耐性的作用。结果表明,成功地从水稻品种 Hawara Bunar 中克隆出一个 Al 耐性候选基因 OsGERLP,其基因编码的蛋白与细菌核糖体 L32 蛋白相似。此外,分析表明,低基因表达使基因沉默水稻对 Al 敏感,而高表达诱导转基因烟草的 Al 耐性。此外,还发现两种植物中的基因表达水平与沉默水稻中 OsFRDL4 基因的低表达以及转基因烟草中 MATE 基因的高表达一致,这也与转基因烟草根系中柠檬酸分泌增加有关。总之,OsGERLP 基因可以作为其他 Al 耐性基因的调节剂,具有开发耐 Al 水稻品种的潜力。