揭示番茄定量抗病性的遗传基础:元 QTL 分析和转录本图谱挖掘。

IF 5.3 2区 生物学 Q1 PLANT SCIENCES
Moein Khojasteh, Hadi Darzi Ramandi, S Mohsen Taghavi, Ayat Taheri, Asma Rahmanzadeh, Gongyou Chen, Majid R Foolad, Ebrahim Osdaghi
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引用次数: 0

摘要

关键信息:番茄抗细菌和真菌病害的全基因组 QTL 挖掘和元分析发现了 73 个元 QTL 区域,其置信区间显著细化/缩小。番茄生产受到一系列生物胁迫的影响,造成产量损失和品质下降。虽然已经确定了许多番茄病害的遗传抗性来源并对其进行了表征,但尚未确定抗性基因或数量性状位点(QTL)在不同资源中的稳定性。在此,我们研究了之前在 40 项独立研究和 54 个独特的制图群体中报道的 491 个番茄抗病 QTLs。与原始 QTLs 的平均置信区间(CI)相比,我们发现了 29 个抗细菌病原体的元 QTLs(MQTLs)和 44 个抗真菌病原体的 MQTLs,并将 QTLs 的平均置信区间(CI)分别缩小了 4.1 倍和 6.7 倍。MQTL 的 CI 的相应物理长度从 56 kb 到 6.37 Mb 不等,中位数为 921 kb,其中 27% 的 CI 低于 500 kb,53% 的 CI 低于 1 Mb。对番茄和拟南芥的防御反应进行比较后发现,在MQTL区域有73个同源基因,这些基因被认为参与了对细菌和真菌病害的防御。有趣的是,在一些 MQTL 区域中发现了多个与植物防御反应有关的基因,包括 PR-P2、NDR1、PDF1.2、Pip1、SNI1、PTI5、NSL1、DND1、CAD1、SlACO、DAD1、SlPAL、Ph-3、EDS5/SID1、CHI-B/PR-3、Ph-5、ETR1、WRKY29 和 WRKY25。此外,我们还在 MQTL 区域发现了一些候选抗性基因,这些基因可用于标记/基因辅助育种以及克隆和遗传转化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Unraveling the genetic basis of quantitative resistance to diseases in tomato: a meta-QTL analysis and mining of transcript profiles.

Unraveling the genetic basis of quantitative resistance to diseases in tomato: a meta-QTL analysis and mining of transcript profiles.

Key message: Whole-genome QTL mining and meta-analysis in tomato for resistance to bacterial and fungal diseases identified 73 meta-QTL regions with significantly refined/reduced confidence intervals. Tomato production is affected by a range of biotic stressors, causing yield losses and quality reductions. While sources of genetic resistance to many tomato diseases have been identified and characterized, stability of the resistance genes or quantitative trait loci (QTLs) across the resources has not been determined. Here, we examined 491 QTLs previously reported for resistance to tomato diseases in 40 independent studies and 54 unique mapping populations. We identified 29 meta-QTLs (MQTLs) for resistance to bacterial pathogens and 44 MQTLs for resistance to fungal pathogens, and were able to reduce the average confidence interval (CI) of the QTLs by 4.1-fold and 6.7-fold, respectively, compared to the average CI of the original QTLs. The corresponding physical length of the CIs of MQTLs ranged from 56 kb to 6.37 Mb, with a median of 921 kb, of which 27% had a CI lower than 500 kb and 53% had a CI lower than 1 Mb. Comparison of defense responses between tomato and Arabidopsis highlighted 73 orthologous genes in the MQTL regions, which were putatively determined to be involved in defense against bacterial and fungal diseases. Intriguingly, multiple genes were identified in some MQTL regions that are implicated in plant defense responses, including PR-P2, NDR1, PDF1.2, Pip1, SNI1, PTI5, NSL1, DND1, CAD1, SlACO, DAD1, SlPAL, Ph-3, EDS5/SID1, CHI-B/PR-3, Ph-5, ETR1, WRKY29, and WRKY25. Further, we identified a number of candidate resistance genes in the MQTL regions that can be useful for both marker/gene-assisted breeding as well as cloning and genetic transformation.

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来源期刊
Plant Cell Reports
Plant Cell Reports 生物-植物科学
CiteScore
10.80
自引率
1.60%
发文量
135
审稿时长
3.2 months
期刊介绍: Plant Cell Reports publishes original, peer-reviewed articles on new advances in all aspects of plant cell science, plant genetics and molecular biology. Papers selected for publication contribute significant new advances to clearly identified technological problems and/or biological questions. The articles will prove relevant beyond the narrow topic of interest to a readership with broad scientific background. The coverage includes such topics as: - genomics and genetics - metabolism - cell biology - abiotic and biotic stress - phytopathology - gene transfer and expression - molecular pharming - systems biology - nanobiotechnology - genome editing - phenomics and synthetic biology The journal also publishes opinion papers, review and focus articles on the latest developments and new advances in research and technology in plant molecular biology and biotechnology.
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