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DNA 聚合酶 δ 亚基 1 中的突变与对木薯镶嵌病毒的 CMD2 型抗性共分离。

Mutations in DNA polymerase δ subunit 1 co-segregate with CMD2-type resistance to Cassava Mosaic Geminiviruses.

机构信息

Institute of Molecular Plant Biology, Department of Biology, ETH Zürich, Universitätsstrasse 2, 8092, Zürich, Switzerland.

Donald Danforth Plant Science Center, 975 North Warson Road, St. Louis, MO, 63132, USA.

出版信息

Nat Commun. 2022 Jul 7;13(1):3933. doi: 10.1038/s41467-022-31414-0.

Abstract

Cassava mosaic disease (CMD) suppresses cassava yields across the tropics. The dominant CMD2 locus confers resistance to cassava mosaic geminiviruses. It has been reported that CMD2-type landraces lose resistance after regeneration through de novo morphogenesis. As full genome bisulfite sequencing failed to uncover an epigenetic mechanism for this loss of resistance, whole genome sequencing and genetic variant analysis was performed and the CMD2 locus was fine-mapped to a 190 kilobase interval. Collectively, these data indicate that CMD2-type resistance is caused by a nonsynonymous, single nucleotide polymorphism in DNA polymerase δ subunit 1 (MePOLD1) located within this region. Virus-induced gene silencing of MePOLD1 in a CMD-susceptible cassava variety produced a recovery phenotype typical of CMD2-type resistance. Analysis of other CMD2-type cassava varieties identified additional candidate resistance alleles within MePOLD1. Genetic variation of MePOLD1, therefore, could represent an important genetic resource for resistance breeding and/or genome editing, and elucidating mechanisms of resistance to geminiviruses.

摘要

木薯花叶病(CMD)抑制了热带地区的木薯产量。主要的 CMD2 基因座赋予了木薯对木薯镶嵌病毒的抗性。据报道,CMD2 型地方品种在通过从头形态发生再生后失去了抗性。由于全基因组亚硫酸氢盐测序未能揭示这种抗性丧失的表观遗传机制,因此进行了全基因组测序和遗传变异分析,并将 CMD2 基因座精细定位到 190 千碱基的区间内。总的来说,这些数据表明 CMD2 型抗性是由位于该区域内的 DNA 聚合酶 δ 亚单位 1(MePOLD1)中的非同义单核苷酸多态性引起的。在一种对 CMD 敏感的木薯品种中,利用病毒诱导的基因沉默使 MePOLD1 沉默,产生了典型的 CMD2 型抗性恢复表型。对其他 CMD2 型木薯品种的分析确定了 MePOLD1 内的其他候选抗性等位基因。因此,MePOLD1 的遗传变异可能代表了抗性育种和/或基因组编辑的重要遗传资源,并阐明了对镶嵌病毒的抗性机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af6f/9262879/cd1e07f2dd82/41467_2022_31414_Fig1_HTML.jpg

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