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氨基酸通透酶(AAP)基因 CsAAP2A 和 SlAAP5A/B 是黄瓜和番茄对卵菌敏感性所必需的。

The amino acid permease (AAP) genes CsAAP2A and SlAAP5A/B are required for oomycete susceptibility in cucumber and tomato.

机构信息

Plant Breeding, Wageningen University & Research, Wageningen, Netherlands.

BASF Vegetable Seeds, Haelen, Netherlands.

出版信息

Mol Plant Pathol. 2021 Jun;22(6):658-672. doi: 10.1111/mpp.13052. Epub 2021 May 2.

Abstract

Cucurbit downy mildew (DM), caused by the obligate biotroph Pseudoperonospora cubensis, is a destructive disease in cucumber. A valuable source of DM resistance is the Indian cucumber accession PI 197088, which harbours several quantitative trait loci (QTLs) contributing to quantitatively inherited DM resistance. With a combination of fine-mapping and transcriptomics, we identified Amino Acid Permease 2A (CsAAP2A) as a candidate gene for QTL DM4.1.3. Whole-genome and Sanger sequencing revealed the insertion of a Cucumis Mu-like element (CUMULE) transposon in the allele of the resistant near-isogenic line DM4.1.3. To confirm whether loss of CsAAP2A contributes to partial DM resistance, we performed targeting induced local lesions in genomes on a DM-susceptible cucumber genotype to identify an additional csaap2a mutant, which indeed was partially DM resistant. In view of the loss of the putative function as amino acid transporter, we measured amino acids in leaves. We found that DM-inoculated leaves of line DM4.1.3 (with the csaap2a mutation) contained significantly fewer amino acids than wild-type cucumber. The decreased flow of amino acids towards infected leaves in csaap2a plants compared to the wild type might explain the resistant phenotype of the mutant, as this would limit the available nutrients for the pathogen and thereby its fitness. To examine whether AAP genes play a conserved role as susceptibility factors in plant-oomycete interactions, we made targeted mutations in two AAP genes from tomato and studied the effect on susceptibility to Phytophthora infestans. We conclude that not only CsAAP2A but also SlAAP5A/SlAAP5B are susceptibility genes for oomycete pathogens.

摘要

黄瓜霜霉病(DM)由专性生物营养型病原菌古巴假霜霉菌引起,是黄瓜的一种破坏性疾病。印度黄瓜品系 PI 197088 是 DM 抗性的宝贵来源,该品系含有多个数量性状位点(QTLs),有助于对 DM 产生数量遗传抗性。通过精细定位和转录组学分析,我们将氨基酸渗透酶 2A(CsAAP2A)鉴定为 QTL DM4.1.3 的候选基因。全基因组和 Sanger 测序揭示了一个黄瓜 Mu 样元件(CUMULE)转座子在抗性近等基因系 DM4.1.3 等位基因中的插入。为了确认 CsAAP2A 的缺失是否导致部分 DM 抗性,我们对一个 DM 敏感的黄瓜基因型进行了靶向诱导基因组局部损伤,以鉴定出另一个 csaap2a 突变体,该突变体确实对 DM 具有部分抗性。鉴于其作为氨基酸转运体的功能丧失,我们测量了叶片中的氨基酸。我们发现,具有 csaap2a 突变的品系 DM4.1.3(携带突变)的 DM 接种叶片中的氨基酸含量明显低于野生型黄瓜。与野生型相比,csaap2a 植株中氨基酸向感染叶片的流动减少,这可能解释了突变体的抗性表型,因为这将限制病原体可利用的营养物质,从而降低其适应性。为了研究 AAP 基因是否作为植物-卵菌互作中的感病因子发挥保守作用,我们在番茄中的两个 AAP 基因上进行了靶向突变,并研究了其对疫霉菌易感性的影响。我们得出的结论是,不仅 CsAAP2A,而且 SlAAP5A/SlAAP5B 都是卵菌病原体的感病基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8177/8126186/16c4b57560dc/MPP-22-658-g005.jpg

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