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葡萄根瘤蚜和剑线虫抗性的遗传决定因素的特征,来自麝香葡萄背景。

Characterization of genetic determinants of the resistance to phylloxera, Daktulosphaira vitifoliae, and the dagger nematode Xiphinema index from muscadine background.

机构信息

INRAE, UMR EGFV, 33883, Villenave d'Ornon, France.

IFV, Domaine de l'Espiguette, 30240, Le Grau du Roi, France.

出版信息

BMC Plant Biol. 2020 May 12;20(1):213. doi: 10.1186/s12870-020-2310-0.

Abstract

BACKGROUND

Muscadine (Muscadinia rotundifolia) is known as a resistance source to many pests and diseases in grapevine. The genetics of its resistance to two major grapevine pests, the phylloxera D. vitifoliae and the dagger nematode X. index, vector of the Grapevine fanleaf virus (GFLV), was investigated in a backcross progeny between the F1 resistant hybrid material VRH8771 (Vitis-Muscadinia) derived from the muscadine R source 'NC184-4' and V. vinifera cv. 'Cabernet-Sauvignon' (CS).

RESULTS

In this pseudo-testcross, parental maps were constructed using simple-sequence repeats markers and single nucleotide polymorphism markers from a GBS approach. For the VRH8771 map, 2271 SNP and 135 SSR markers were assembled, resulting in 19 linkage groups (LG) and an average distance between markers of 0.98 cM. Phylloxera resistance was assessed by monitoring root nodosity number in an in planta experiment and larval development in a root in vitro assay. Nematode resistance was studied using 10-12 month long tests for the selection of durable resistance and rating criteria based on nematode reproduction factor and gall index. A major QTL for phylloxera larval development, explaining more than 70% of the total variance and co-localizing with a QTL for nodosity number, was identified on LG 7 and designated RDV6. Additional QTLs were detected on LG 3 (RDV7) and LG 10 (RDV8), depending on the in planta or in vitro experiments, suggesting that various loci may influence or modulate nodosity formation and larval development. Using a Bulked Segregant Analysis approach and a proportion test, markers clustered in three regions on LG 9, LG 10 and LG 18 were shown to be associated to the nematode resistant phenotype. QTL analysis confirmed the results and QTLs were thus designated respectively XiR2, XiR3 and XiR4, although a LOD-score below the significant threshold value was obtained for the QTL on LG 18.

CONCLUSIONS

Based on a high-resolution linkage map and a segregating grapevine backcross progeny, the first QTLs for resistance to D. vitifoliae and to X. index were identified from a muscadine source. All together these results open the way to the development of marker-assisted selection in grapevine rootstock breeding programs based on muscadine derived resistance to phylloxera and to X. index in order to delay GFLV transmission.

摘要

背景

麝香葡萄(Muscadinia rotundifolia)被称为许多葡萄藤害虫和疾病的抗性来源。使用来自 muscadine R 源'NC184-4'的杂种 VRH8771(Vitis-Muscadinia)与 V. vinifera cv. 'Cabernet-Sauvignon'(CS)之间的回交后代,研究了其对两种主要葡萄藤害虫——葡萄根瘤蚜 D. vitifoliae 和剑线虫 X. index(葡萄扇叶病毒 GFLV 的载体)的抗性的遗传。

结果

在这个假测交中,使用简单序列重复标记和基于 GBS 的单核苷酸多态性标记构建了亲本图谱。对于 VRH8771 图谱,组装了 2271 个 SNP 和 135 个 SSR 标记,得到 19 个连锁群(LG)和标记之间的平均距离为 0.98 cM。通过监测根瘤数的体内实验和幼虫发育的体外根实验评估根瘤蚜抗性。使用长达 10-12 个月的耐持久性选择和基于线虫繁殖因子和瘿指数的评分标准研究线虫抗性。在 LG 7 上鉴定到一个解释超过 70%总方差的主要根瘤蚜幼虫发育 QTL,并与结节数的 QTL 共定位,命名为 RDV6。根据体内或体外实验,在 LG 3(RDV7)和 LG 10(RDV8)上检测到额外的 QTL,表明各种位点可能影响或调节结节形成和幼虫发育。使用 Bulked Segregant Analysis 方法和比例检验,证明 LG 9、LG 10 和 LG 18 上标记簇与线虫抗性表型相关。QTL 分析证实了这些结果,因此分别将 QTL 命名为 XiR2、XiR3 和 XiR4,尽管 LG 18 上的 QTL 获得的 LOD 得分低于显著阈值。

结论

基于高分辨率连锁图谱和分离的葡萄藤回交后代,首次从麝香葡萄来源鉴定出对葡萄根瘤蚜和剑线虫的抗性 QTL。所有这些结果为利用来自麝香葡萄的根瘤蚜和剑线虫抗性开发基于标记的葡萄砧木选择奠定了基础,以延迟 GFLV 的传播。

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