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受干扰的卟啉生物合成导致用5-氨基乙酰丙酸和乙氧氟草醚处理的光动力学胁迫水稻(Oryza sativa)出现不同的除草症状。

Perturbed porphyrin biosynthesis contributes to differential herbicidal symptoms in photodynamically stressed rice (Oryza sativa) treated with 5-aminolevulinic acid and oxyfluorfen.

作者信息

Phung Thu-Ha, Jung Sunyo

机构信息

School of Life Sciences and Biotechnology, BK21 Plus KNU Creative Bioresearch Group, Kyungpook National University, Daegu 702-701, Republic of Korea.

School of Life Sciences and Biotechnology, BK21 Plus KNU Creative Bioresearch Group, Kyungpook National University, Daegu 702-701, Republic of Korea.

出版信息

Pestic Biochem Physiol. 2014 Nov;116:103-10. doi: 10.1016/j.pestbp.2014.10.002. Epub 2014 Oct 14.

Abstract

This paper focuses on the molecular mechanism of deregulated porphyrin biosynthesis in rice plants under photodynamic stress imposed by an exogenous supply of 5-aminolevulinic acid (ALA) and oxyfluorfen (OF). Plants treated with 5 mM ALA or 50 µM OF exhibited differential herbicidal symptoms as characterized by white and brown necrosis, respectively, with substantial increases in cellular leakage and malondialdehyde production. Protoporphyrin IX accumulated to higher levels after 1 day of ALA and OF treatment, whereas it decreased to the control level after 2 days of ALA treatment. Plants responded to OF by greatly decreasing the levels of Mg-protoporphyrin IX (MgProto IX), MgProto IX methyl ester, and protochlorophyllide to levels lower than control, whereas their levels drastically increased 1 day after ALA treatment and then disappeared 2 days after the treatment. Enzyme activity and transcript levels of HEMA1, GSA and ALAD for ALA synthesis greatly decreased in ALA- and OF-treated plants. Transcript levels of PPO1, CHLH, CHLI, and PORB genes involving Mg-porphyrin synthesis continuously decreased in ALA- and OF-treated plants, with greater decreases in ALA-treated plants. By contrast, up-regulation of FC2 and HO2 genes in Fe-porphyrin branch was noticeable in ALA and OF-treated plants 1 day and 2 days after the treatments, respectively. Decreased transcript levels of nuclear-encoded genes Lhcb1, Lhcb6, and RbcS were accompanied by disappearance of MgProto IX in ALA- and OF-treated plants after 2 days of the treatments. Under photodynamic stress imposed by ALA and OF, tight control of porphyrin biosynthesis prevents accumulation of toxic metabolic intermediates not only by down-regulation of their biosynthesis but also by photodynamic degradation. The up-regulation of FC2 and HO2 also appears to compensate for the photodynamic stress-induced damage.

摘要

本文聚焦于在由外源供应5-氨基乙酰丙酸(ALA)和乙氧氟草醚(OF)施加的光动力胁迫下,水稻植株中卟啉生物合成失调的分子机制。用5 mM ALA或50 µM OF处理的植株表现出不同的除草症状,分别以白色和褐色坏死为特征,细胞渗漏和丙二醛生成显著增加。在ALA和OF处理1天后,原卟啉IX积累到更高水平,而在ALA处理2天后它降至对照水平。植株对OF的反应是将镁原卟啉IX(MgProto IX)、MgProto IX甲酯和原叶绿素酸酯的水平大幅降低至低于对照的水平,而它们的水平在ALA处理1天后急剧增加,然后在处理2天后消失。在ALA和OF处理的植株中,参与ALA合成的HEMA1、GSA和ALAD的酶活性和转录水平大幅下降。在ALA和OF处理的植株中,涉及镁卟啉合成的PPO1、CHLH、CHLI和PORB基因的转录水平持续下降,在ALA处理的植株中下降幅度更大。相比之下,在ALA和OF处理的植株中,分别在处理1天和2天后,铁卟啉分支中的FC2和HO2基因上调明显。在ALA和OF处理2天后,ALA和OF处理的植株中核编码基因Lhcb1、Lhcb6和RbcS的转录水平下降伴随着MgProto IX的消失。在ALA和OF施加的光动力胁迫下,对卟啉生物合成的严格控制不仅通过下调其生物合成,还通过光动力降解来防止有毒代谢中间体的积累。FC2和HO2的上调似乎也补偿了光动力胁迫诱导的损伤。

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