Wang Chengcheng, Zheng Lihua, Tang Zhong, Sun Shengkai, Ma Jian Feng, Huang Xin-Yuan, Zhao Fang-Jie
State Key Laboratory of Crop Genetics and Germplasm Enhancement, College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing, China.
Institute of Plant Science and Resources, Okayama University, Chuo, Kurashiki, Japan.
J Exp Bot. 2020 Jun 22;71(12):3678-3689. doi: 10.1093/jxb/eraa113.
Arsenic (As) contamination in paddy soil can cause phytotoxicity and elevated As accumulation in rice grains. Arsenic detoxification is closely linked to sulfur assimilation, but the genes involved have not been described in rice. In this study, we characterize the function of OASTL-A1, an O-acetylserine(thiol) lyase, in cysteine biosynthesis and detoxification of As in rice. Tissue expression analysis revealed that OsOASTL-A1 is mainly expressed in roots at the vegetative growth stage and in nodes at the reproductive stage. Furthermore, the expression of OsOASTL-A1 in roots was strongly induced by As exposure. Transgenic rice plants expressing pOsOASTL-A1::GUS (β-glucuronidase) indicated that OsOASTL-A1 was strongly expressed in the outer cortex and the vascular cylinder in the root mature zone. Subcellular localization using OsOASTL-A1:eGFP (enhanced green fluorescent protein) fusion protein showed that OsOASTL-A1 was localized to the cytosol. In vivo and in vitro enzyme activity assays showed that OsOASTL-A1 possessed the O-acetylserine(thiol) lyase activity. Knockout of OsOASTL-A1 led to significantly lower levels of cysteine, glutathione, and phytochelatins in roots and increased sensitivity to arsenate stress. Furthermore, the osoastl-a1 knockout mutants reduced As accumulation in the roots, but increased As accumulation in shoots. We conclude that OsOASTL-A1 is the cytosolic O-acetylserine(thiol) lyase that plays an important role in non-protein thiol biosynthesis in roots for As detoxification.
稻田土壤中的砷(As)污染会导致植物毒性,并使水稻籽粒中的砷积累量增加。砷解毒与硫同化密切相关,但水稻中涉及的相关基因尚未见报道。在本研究中,我们对水稻中参与半胱氨酸生物合成及砷解毒的O - 乙酰丝氨酸(硫醇)裂解酶OASTL - A1的功能进行了表征。组织表达分析表明,OsOASTL - A1在营养生长阶段主要在根中表达,在生殖阶段主要在节中表达。此外,根中OsOASTL - A1的表达受砷暴露强烈诱导。表达pOsOASTL - A1::GUS(β - 葡萄糖醛酸酶)的转基因水稻植株表明,OsOASTL - A1在根成熟区的外皮层和维管束中强烈表达。使用OsOASTL - A1:eGFP(增强型绿色荧光蛋白)融合蛋白进行的亚细胞定位显示,OsOASTL - A1定位于细胞质溶胶中。体内和体外酶活性测定表明,OsOASTL - A1具有O - 乙酰丝氨酸(硫醇)裂解酶活性。敲除OsOASTL - A1导致根中半胱氨酸、谷胱甘肽和植物螯合肽水平显著降低,并增加了对砷酸盐胁迫的敏感性。此外,osoastl - a1敲除突变体降低了根中砷的积累,但增加了地上部砷的积累。我们得出结论,OsOASTL - A1是细胞质溶胶中的O - 乙酰丝氨酸(硫醇)裂解酶,在根中非蛋白质硫醇生物合成以进行砷解毒中起重要作用。