Suppr超能文献

易感基因CsaMLO8中的转座元件插入导致黄瓜下胚轴对白粉病产生抗性。

A transposable element insertion in the susceptibility gene CsaMLO8 results in hypocotyl resistance to powdery mildew in cucumber.

作者信息

Berg Jeroen A, Appiano Michela, Santillán Martínez Miguel, Hermans Freddy W K, Vriezen Wim H, Visser Richard G F, Bai Yuling, Schouten Henk J

机构信息

Wageningen UR Plant Breeding, Wageningen University & Research centre, Droevendaalsesteeg 1, 6708 PB, Wageningen, The Netherlands.

Bayer Crop Science Vegetable Seeds, P.O. Box 4005, 6080 AA, Haelen, The Netherlands.

出版信息

BMC Plant Biol. 2015 Oct 9;15:243. doi: 10.1186/s12870-015-0635-x.

Abstract

BACKGROUND

Powdery mildew (PM) is an important disease of cucumber (Cucumis sativus L.). CsaMLO8 was previously identified as a candidate susceptibility gene for PM in cucumber, for two reasons: 1) This gene clusters phylogenetically in clade V, which has previously been shown to harbour all known MLO-like susceptibility genes for PM identified in dicot species; 2) This gene co-localizes with a QTL on chromosome 5 for hypocotyl-specific resistance to PM.

METHODS

CsaMLO8 alleles from susceptible and resistant cucumber were cloned and transformed to mlo-mutant tomato. Cucumber seedlings were inoculated with Podosphaera xanthii, tissues were studied for CsaMLO8 expression at several timepoints post inoculation using qRT-PCR. The occurrence of the observed loss-of-function allele of CsaMLO8 in resequenced cucumber accessions was studied in silico.

RESULTS

We cloned CsaMLO8 alleles from susceptible and resistant cucumber genotypes, the latter carrying the QTL for hypocotyl resistance. We found that insertion of a non-autonomous Class LTR retrotransposable element in the resistant genotype leads to aberrant splicing of CsaMLO8 mRNA. Heterologous expression of the wild-type allele of CsaMLO8 in a tomato mlo-mutant restored PM susceptibility. However, heterologous expression of the CsaMLO8 allele cloned from the resistant cucumber genotype failed to restore PM susceptibility. Furthermore we showed that inoculation of susceptible cucumber with the PM pathogen Podosphaera xanthii induced transcriptional upregulation of CsaMLO8 in hypocotyl tissue, but not in cotyledon or leaf tissue. This coincides with the observation that the QTL at the CsaMLO8-locus causes full resistance in hypocotyl tissue, but only partial resistance in cotyledons and true leafs. We studied the occurrence of the loss-of-function allele of CsaMLO8 in cucumber germplasm by an in silico approach using resequencing data of a collection of 115 cucumber accessions, and found that this allele was present in 31 out of 115 accessions.

CONCLUSIONS

CsaMLO8 was characterised as a functional susceptibility gene to PM, particularly in the hypocotyl where it was transcriptionally upregulated upon inoculation with the PM pathogen P. xanthii. A loss-of-function mutation in CsaMLO8 due to the insertion of a transposable element was found to be the cause of hypocotyl resistance to PM. This particular allele of CsaMLO8 was found to occur in 27 % of the resequenced cucumber accessions.

摘要

背景

白粉病是黄瓜(Cucumis sativus L.)的一种重要病害。CsaMLO8先前被鉴定为黄瓜白粉病的一个候选感病基因,原因有两个:1)该基因在系统发育上聚类于V类群,此前已表明该类群包含在双子叶植物物种中鉴定出的所有已知的白粉病类MLO感病基因;2)该基因与5号染色体上一个控制下胚轴对白粉病特异性抗性的QTL共定位。

方法

从感病和抗病黄瓜中克隆CsaMLO8等位基因,并将其转化到mlo突变体番茄中。用瓜单囊壳白粉菌接种黄瓜幼苗,在接种后的几个时间点,使用qRT-PCR研究组织中CsaMLO8的表达。利用计算机模拟研究了重测序黄瓜种质中观察到的CsaMLO8功能缺失等位基因的发生情况。

结果

我们从感病和抗病黄瓜基因型中克隆了CsaMLO8等位基因,后者携带下胚轴抗性的QTL。我们发现,抗性基因型中一个非自主LTR类逆转座子的插入导致CsaMLO8 mRNA的异常剪接。CsaMLO8野生型等位基因在番茄mlo突变体中的异源表达恢复了对白粉病的敏感性。然而,从抗性黄瓜基因型中克隆的CsaMLO8等位基因的异源表达未能恢复对白粉病的敏感性。此外,我们表明,用瓜单囊壳白粉菌接种感病黄瓜会诱导下胚轴组织中CsaMLO8的转录上调,但在子叶或叶片组织中则不会。这与以下观察结果一致,即CsaMLO8位点的QTL在下胚轴组织中引起完全抗性,但在子叶和真叶中仅引起部分抗性。我们利用115份黄瓜种质的重测序数据,通过计算机模拟方法研究了黄瓜种质中CsaMLO8功能缺失等位基因的发生情况,发现115份种质中有31份存在该等位基因。

结论

CsaMLO8被鉴定为对白粉病起作用的感病基因,特别是在下胚轴中,接种瓜单囊壳白粉菌后其转录会上调。发现由于转座子插入导致的CsaMLO8功能缺失突变是下胚轴对白粉病抗性的原因。发现CsaMLO8的这一特定等位基因存在于27%的重测序黄瓜种质中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29f2/4600303/68212584d982/12870_2015_635_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验