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首页> 外文期刊>Molecular Plant-Microbe Interactions >The Amino Acid Permeases AAP3 and AAP6 Are Involved in Root-Knot Nematode Parasitism of Arabidopsis
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The Amino Acid Permeases AAP3 and AAP6 Are Involved in Root-Knot Nematode Parasitism of Arabidopsis

机译:氨基酸通透酶AAP3和AAP6参与拟南芥的根结线虫寄生

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The root-knot nematode, Meloidogyne incognita, is an obligate parasite which depends entirely on the host plant for its nutrition. Root-knot nematodes induce the formation of a highly specialized feeding site consisting of several giant cells surrounded by a network of vascular tissues. Nutrients, including amino acids and sugars, are transferred apoplastically from the vascular tissues to the feeding site. Using Arabidopsis thaliana lacking the vascular-expressed amino acid permeases (AAP) AAP3 or AAP6, we demonstrate that disruption of amino acid transport can affect nematode parasitism. Nematode infestation levels are significantly reduced on the aap3 and aap6 mutants. AAP3 and AAP6 act distinctly in the transport of amino acids to the feeding site, as demonstrated by differences in their carrying capacity profiles. Furthermore, analyses of promoter: beta -glucuronidase lines show different expression patterns for AAP3 and AAP6 in infected roots. In the aap3-3 mutant, part of the decrease in infestation is connected to a defect in early infection, where juveniles enter but then leave the root. Both aap3-3 and aap6-1 produce fewer females and produce more adult male nematodes. Additionally, detrimental effects are observed in the nematodes harvested from aap3-3 and aap6-1 mutants, including decreased egg hatching and infectivity and lower levels of lipid reserves. The transport of amino acids by AAP3 and AAP6 is important for nematode infection and success of the progeny.Digital Object Identifier http://dx.doi.org/10.1094/MPMI-05-12-0123-FI
机译:根结线虫Meloidogyne incognita是专性寄生虫,其营养完全依赖宿主植物。根结线虫诱导形成高度专业化的饲养场所,该场所由被血管组织网络包围的数个巨细胞组成。营养物质(包括氨基酸和糖)从血管组织过质生转移到饲喂部位。使用缺乏血管表达的氨基酸通透酶(AAP)AAP3或AAP6的拟南芥,我们证明了氨基酸运输的破坏会影响线虫寄生。在aap3和aap6突变体上,线虫感染水平显着降低。 AAP3和AAP6在氨基酸向饲喂部位的转运中起着明显的作用,这由它们的承载能力特征的差异证明。此外,启动子:β-葡糖醛酸糖苷酶系的分析显示了在感染根中AAP3和AAP6的不同表达模式。在aap3-3突变体中,感染减少的部分原因与早期感染的缺陷有关,早期感染是幼虫进入,然后离开根的地方。 aap3-3和aap6-1都产生较少的雌性,并产生更多的成年男性线虫。此外,在从aap3-3和aap6-1突变体收获的线虫中观察到有害作用,包括降低卵孵化率和感染力以及降低脂质储备水平。 AAP3和AAP6对氨基酸的运输对于线虫感染和后代的成功至关重要。数字对象标识符http://dx.doi.org/10.1094/MPMI-05-12-0123-FI

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