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延胡索酸乙酰乙酸水解酶是水稻育性所必需的。

Fumarylacetoacetate hydrolase is required for fertility in rice.

机构信息

College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha, 410128, China.

Crop Gene Engineering Key Laboratory of Hunan Province, Hunan Agricultural University, Changsha, 410128, China.

出版信息

Planta. 2021 May 18;253(6):122. doi: 10.1007/s00425-021-03632-1.

Abstract

The rice OsFAH gene functions identically to that of Arabidopsis SSCD1 encoding FAH. Loss of OsFAH causes rice sterility. Fumarylacetoacetate hydrolase (FAH) is the last enzyme in the tyrosine (Tyr) degradation pathway that is crucial for animals. By genetic analysis of the mutant of Short-day Sensitive Cell Death 1 gene encoding Arabidopsis FAH, we first found the pathway also plays a critical role in plants (Han et al., Plant Physiol 162:1956-1964, 2013). To further understand the role of the Tyr degradation pathway in plants, we investigated a biological function of the rice FAH. Firstly, the cDNA of rice FAH gene (OsFAH) was cloned and confirmed to be able to rescue the Arabidopsis Short-day Sensitive Cell Death 1 mutant defective in the FAH. Then, we identified the OsFAH T-DNA insertion mutant and generated the OsFAH RNA interference lines, and found that loss of OsFAH results in rice sterility. Furthermore, we analyzed expression of the OsFAH gene in roots, stems, leaves and young panicles at booting stage of rice and found that its transcript level was highest in young panicles and lowest in roots. In addition, the expression analysis of β-glucuronidase driven by OsFAH promoter in transgenic Arabidopsis showed that the OsFAH promoter was highly active in aerial tissues in vegetative stage, and sepals, filaments and stigma in reproductive stage. These results suggested that FAH plays an important role in rice fertility.

摘要

水稻 OsFAH 基因的功能与拟南芥 SSCD1 编码的 FAH 完全相同。OsFAH 的缺失导致水稻不育。延胡索酸乙酰乙酸水解酶(FAH)是酪氨酸(Tyr)降解途径中的最后一种酶,对动物至关重要。通过对拟南芥 FAH 编码的短日照敏感细胞死亡 1 基因突变体的遗传分析,我们首次发现该途径在植物中也起着关键作用(Han 等人,《植物生理学》162:1956-1964,2013)。为了进一步了解 Tyr 降解途径在植物中的作用,我们研究了水稻 FAH 的生物学功能。首先,克隆了水稻 FAH 基因(OsFAH)的 cDNA,并证实其能够挽救拟南芥中 FAH 缺陷的短日照敏感细胞死亡 1 突变体。然后,我们鉴定了 OsFAH T-DNA 插入突变体,并生成了 OsFAH RNAi 系,发现 OsFAH 的缺失导致水稻不育。此外,我们分析了水稻根、茎、叶和幼穗在抽穗期的 OsFAH 基因表达,发现其转录水平在幼穗中最高,在根中最低。此外,在转基因拟南芥中由 OsFAH 启动子驱动的β-葡萄糖醛酸酶的表达分析表明,在营养阶段,OsFAH 启动子在地上组织中高度活跃,而在生殖阶段,在萼片、花丝和柱头中高度活跃。这些结果表明 FAH 在水稻育性中起着重要作用。

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