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首页> 外文期刊>Journal of Plant Growth Regulation >Overexpression of Tomato Homolog of Glycolate/Glycerate Transporter Gene PLGG1/AtLrgB Leads to Reduced Chlorophyll Biosynthesis
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Overexpression of Tomato Homolog of Glycolate/Glycerate Transporter Gene PLGG1/AtLrgB Leads to Reduced Chlorophyll Biosynthesis

机译:乙醇酸/甘油转运蛋白基因PLGG1 / AtLrgB的番茄同源基因的过量表达导致叶绿素生物合成减少

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摘要

LrgA and LrgB genes have been identified as new components in regulation of programmed cell death (PCD) in bacteria. While in Arabidopsis, it has been documented that AtLrgB plays a crucial role in chloroplast development and photorespiration by acting as a glycolate/glycerate translocator (PLGG1) in the chloroplast inner membrane. However, little is known about LrgB homologs in other plant species, especially those with fleshy fruits. In this study, a homologous gene of AtLrgB, here designated SlLrgB, was identified in tomato. Similar to AtLrgB, structure analysis suggests that the LrgA and LrgB genes have evolved into two domains of the SlLrgB protein. Expression pattern analysis showed that SlLrgB accumulated mainly in green tissues and could be regulated by light, hormone, and abiotic stress treatments. Compared to wild-type plants, parts of SlLrgB overexpression plants displayed etiolated leaves and a growth retardation phenotype, with significantly reduced chlorophyll content both in leaves and fruits. The qPCR results revealed that the SGR gene, which was associated with chlorophyll degradation, was severely repressed. Two key genes in the chlorophyll biosynthesis pathway, CAO and POR, were also suppressed in the SlLrgB overexpression plants. Taken together, we suggest that SlLrgB may play important roles in the regulation of chlorophyll metabolism pathways in tomato.
机译:LrgA和LrgB基因已被确定为调节细菌中程序性细胞死亡(PCD)的新成分。在拟南芥中,据报道,AtLrgB通过在叶绿体内膜中充当乙醇酸酯/甘油酸酯转运子(PLGG1),在叶绿体发育和光呼吸中起关键作用。但是,对其他植物物种,尤其是那些有肉质果实的植物中的LrgB同源物知之甚少。在这项研究中,在番茄中鉴定了AtLrgB的同源基因,此处命名为SlLrgB。与AtLrgB相似,结构分析表明LrgA和LrgB基因已进化为SlLrgB蛋白的两个域。表达模式分析表明,SlLrgB主要在绿色组织中积累,并受光,激素和非生物胁迫处理的调节。与野生型植物相比,SlLrgB过表达植物的部分显示出黄化的叶子和生长延迟表型,叶子和果实中的叶绿素含量均显着降低。 qPCR结果表明,与叶绿素降解有关的SGR基因被严重抑制。在SlLrgB过表达植物中,叶绿素生物合成途径中的两个关键基因CAO和POR也被抑制。两者合计,我们建议SlLrgB可能在调节番茄叶绿素代谢途径中起重要作用。

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