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在生菜中的一个大型效应子筛选中发现,霜霉病布氏乳杆菌的两种 GKLR 蛋白在植物体内的特异性识别。

Specific in planta recognition of two GKLR proteins of the downy mildew Bremia lactucae revealed in a large effector screen in lettuce.

出版信息

Mol Plant Microbe Interact. 2013 Nov;26(11):1259-70. doi: 10.1094/MPMI-05-13-0142-R.


DOI:10.1094/MPMI-05-13-0142-R
PMID:23883357
Abstract

Breeding lettuce (Lactuca sativa) for resistance to the downy mildew pathogen Bremia lactucae is mainly achieved by introgression of dominant downy mildew resistance (Dm) genes. New Bremia races quickly render Dm genes ineffective, possibly by mutation of recognized host-translocated effectors or by suppression of effector-triggered immunity. We have previously identified 34 potential RXLR(-like) effector proteins of B. lactucae that were here tested for specific recognition within a collection of 129 B. lactucae-resistant Lactuca lines. Two effectors triggered a hypersensitive response: BLG01 in 52 lines, predominantly L. saligna, and BLG03 in two L. sativa lines containing Dm2 resistance. The N-terminal sequences of BLG01 and BLG03, containing the signal peptide and GKLR variant of the RXLR translocation motif, are not required for in planta recognition but function in effector delivery. The locus responsible for BLG01 recognition maps to the bottom of lettuce chromosome 9, whereas recognition of BLG03 maps in the RGC2 cluster on chromosome 2. Lactuca lines that recognize the BLG effectors are not resistant to Bremia isolate Bl:24 that expresses both BLG genes, suggesting that Bl:24 can suppress the triggered immune responses. In contrast, lettuce segregants displaying Dm2-mediated resistance to Bremia isolate Bl:5 are responsive to BLG03, suggesting that BLG03 is a candidate Avr2 protein.

摘要

培育抗霜霉病病原体莴苣霜霉病菌( Bremia lactucae )的生菜( Lactuca sativa )主要通过显性霜霉病抗性( Dm )基因的渐渗来实现。新的 Bremia 菌株会迅速使 Dm 基因失效,这可能是由于识别的宿主易位效应物的突变,或效应物触发免疫的抑制。我们之前已经鉴定出 34 种潜在的 Bremia lactucae RXLR(-样)效应蛋白,在 129 种抗 Bremia lactucae 的莴苣品系中,对这些效应蛋白进行了特异性识别的测试。有两种效应物触发了过敏反应:BLG01 在 52 个品系中,主要是 L. saligna ,以及 BLG03 在两个含有 Dm2 抗性的 L. sativa 品系中。BLG01 和 BLG03 的 N 端序列,包含信号肽和 RXLR 易位基序的 GKLR 变体,对于在植物体内的识别不是必需的,但在效应物传递中起作用。负责 BLG01 识别的基因座位于莴苣染色体 9 的底部,而 BLG03 的识别基因座位于染色体 2 上的 RGC2 簇中。识别 BLG 效应物的莴苣品系对表达 BLG 两种基因的 Bremia 分离株 Bl:24 没有抗性,这表明 Bl:24 可以抑制触发的免疫反应。相比之下,显示出对 Bremia 分离株 Bl:5 的 Dm2 介导抗性的莴苣分离株对 BLG03 有反应,这表明 BLG03 是候选的 Avr2 蛋白。

相似文献

[1]
Specific in planta recognition of two GKLR proteins of the downy mildew Bremia lactucae revealed in a large effector screen in lettuce.

Mol Plant Microbe Interact. 2013-11

[2]
Effector-mediated discovery of a novel resistance gene against Bremia lactucae in a nonhost lettuce species.

New Phytol. 2017-8-21

[3]
Effector prediction and characterization in the oomycete pathogen Bremia lactucae reveal host-recognized WY domain proteins that lack the canonical RXLR motif.

PLoS Pathog. 2020-10

[4]
Recognition of lettuce downy mildew effector BLR38 in Lactuca serriola LS102 requires two unlinked loci.

Mol Plant Pathol. 2018-11-6

[5]
Effector identification in the lettuce downy mildew Bremia lactucae by massively parallel transcriptome sequencing.

Mol Plant Pathol. 2012-2-1

[6]
Multiple downy mildew effectors target the stress-related NAC transcription factor LsNAC069 in lettuce.

Plant J. 2019-7-4

[7]
The genome of Lactuca saligna, a wild relative of lettuce, provides insight into non-host resistance to the downy mildew Bremia lactucae.

Plant J. 2023-7

[8]
Resistance to Downy Mildew in Lettuce 'La Brillante' is Conferred by Dm50 Gene and Multiple QTL.

Phytopathology. 2015-9

[9]
Host interactors of effector proteins of the lettuce downy mildew Bremia lactucae obtained by yeast two-hybrid screening.

PLoS One. 2020-5-12

[10]
Lactuca saligna, a non-host for lettuce downy mildew ( Bremia lactucae), harbors a new race-specific Dm gene and three QTLs for resistance.

Theor Appl Genet. 2002-8

引用本文的文献

[1]
Apoplastic effector candidates of a foliar forest pathogen trigger cell death in host and non-host plants.

Sci Rep. 2021-10-7

[2]
Expression of several Phytophthora cinnamomi putative RxLRs provides evidence for virulence roles in avocado.

PLoS One. 2021

[3]
Effector prediction and characterization in the oomycete pathogen Bremia lactucae reveal host-recognized WY domain proteins that lack the canonical RXLR motif.

PLoS Pathog. 2020-10

[4]
The Effector Repertoire of the Hop Downy Mildew Pathogen .

Front Genet. 2020-8-11

[5]
Host interactors of effector proteins of the lettuce downy mildew Bremia lactucae obtained by yeast two-hybrid screening.

PLoS One. 2020-5-12

[6]
A secreted WY-domain-containing protein present in European isolates of the oomycete Plasmopara viticola induces cell death in grapevine and tobacco species.

PLoS One. 2019-7-29

[7]
Genomic signatures of heterokaryosis in the oomycete pathogen Bremia lactucae.

Nat Commun. 2019-6-14

[8]
Multiple downy mildew effectors target the stress-related NAC transcription factor LsNAC069 in lettuce.

Plant J. 2019-7-4

[9]
Comparative genomics of downy mildews reveals potential adaptations to biotrophy.

BMC Genomics. 2018-11-29

[10]
Recognition of lettuce downy mildew effector BLR38 in Lactuca serriola LS102 requires two unlinked loci.

Mol Plant Pathol. 2018-11-6

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