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阿富汗地方品种“KU3067”对小麦叶锈病和条锈病抗性位点的鉴定与特征分析

Identification and Characterization of Resistance Loci to Wheat Leaf Rust and Stripe Rust in Afghan Landrace "KU3067".

作者信息

Zhang Peipei, Lan Caixia, Singh Ravi P, Huerta-Espino Julio, Li Zaifeng, Lagudah Evans, Bhavani Sridhar

机构信息

State Key Laboratory of North China Crop Improvement and Regulation, College of Plant Protection, Hebei Agricultural University, Baoding, China.

Hubei Hongshan Laboratory, College of Plant Science & Technology, Huazhong Agricultural University, Wuhan, China.

出版信息

Front Plant Sci. 2022 Jun 28;13:894528. doi: 10.3389/fpls.2022.894528. eCollection 2022.

Abstract

Leaf rust and stripe rust are important wheat diseases worldwide causing significant losses where susceptible varieties are grown. Resistant cultivars offer long-term control and reduce the use of hazardous chemicals, which can be detrimental to both human health and the environment. Land races have been a valuable resource for mining new genes for various abiotic and biotic stresses including wheat rusts. Afghan wheat landrace "KU3067" displayed high seedling infection type (IT) for leaf rust and low IT for stripe rust; however, it displayed high levels of field resistance for both rusts when tested for multiple seasons against the Mexican rust isolates. This study focused on identifying loci-conferring seedling resistance to stripe rust, and also loci-conferring adult plant resistance (APR) against the Mexican races of leaf rust and stripe rust. A backcrossed inbred line (BIL) population advanced to the BC1F generation derived from the cross of KU3067 and Apav (triple rust susceptible line) was used for both, inheritance and QTL mapping studies. The population and parents were genotyped with Diversity Arrays Technology-genotyping-by-sequencing (DArT-Seq) and phenotyped for leaf rust and stripe rust response at both seedling and adult plant stages during multiple seasons in Mexico with relevant pathotypes. Mapping results identified an all-stage resistance gene for stripe rust, temporarily designated as , on chromosome 7BL. In total, six QTL-conferring APR to leaf rust on 1AS, 2AL, 4DL, 6BL, 7AL, and 7BL, and four QTL for stripe rust resistance on 1BS, 2AL, 4DL, and 7BL were detected in the analyses. Among these, pleiotropic gene / on 4DL with a significantly large effect is the first report in an Afghan landrace-conferring resistance to both leaf and stripe rusts. / showed pleiotropic resistance to both rusts and explained 7.5-17.2 and 12.6-19.3% of the phenotypic variance for leaf and stripe rusts, respectively. and detected in all stripe environments with phenotypic variance explained (PVE) 12.9-20.5 and 5.4-12.5%, and are likely to be new. These QTL and their closely linked markers will be useful for fine mapping and marker-assisted selection (MAS) in breeding for durable resistance to multiple rust diseases.

摘要

叶锈病和条锈病是全球范围内重要的小麦病害,在种植易感品种的地区会造成重大损失。抗性品种可提供长期防治效果,并减少有害化学物质的使用,这些化学物质对人类健康和环境都可能有害。地方品种一直是挖掘包括小麦锈病在内的各种非生物和生物胁迫新基因的宝贵资源。阿富汗小麦地方品种“KU3067”对叶锈病表现出高幼苗感染型(IT),对条锈病表现出低IT;然而,在与墨西哥锈病分离株进行多个季节的测试时,它对两种锈病都表现出高水平的田间抗性。本研究的重点是鉴定赋予幼苗对条锈病抗性的基因座,以及赋予成株对墨西哥叶锈病和条锈病生理小种抗性(APR)的基因座。一个回交自交系(BIL)群体,由KU3067和Apav(三重锈病易感系)杂交产生,已推进到BC1F代,用于遗传和QTL定位研究。利用多样性阵列技术测序基因分型(DArT-Seq)对该群体和亲本进行基因分型,并在墨西哥多个季节用相关致病型对叶锈病和条锈病反应在幼苗和成株阶段进行表型分析。定位结果在7BL染色体上鉴定出一个条锈病全生育期抗性基因,暂时命名为 。分析共检测到6个赋予叶锈病APR的QTL,分别位于1AS、2AL、4DL、6BL、7AL和7BL上,以及4个条锈病抗性QTL,分别位于1BS、2AL、4DL和7BL上。其中,4DL上具有显著大效应的多效性基因 / 是在阿富汗地方品种中首次报道的赋予叶锈病和条锈病抗性的基因。 / 对两种锈病都表现出多效性抗性,分别解释了叶锈病和条锈病表型变异的7.5 - 17.2%和12.6 - 19.3%。在所有条锈病环境中检测到的 和 ,表型变异解释率(PVE)分别为12.9 - 20.5%和5.4 - 12.5%,可能是新的。这些QTL及其紧密连锁的标记将有助于在培育对多种锈病持久抗性的育种中进行精细定位和标记辅助选择(MAS)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a532/9274257/017936f03df3/fpls-13-894528-g0001.jpg

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