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新型质体-核基因组组合增强了胞质杂种葡萄柚对柑橘溃疡病的抗性。

Novel Plastid-Nuclear Genome Combinations Enhance Resistance to Citrus Canker in Cybrid Grapefruit.

作者信息

Murata Mayara M, Omar Ahmad A, Mou Zhonglin, Chase Christine D, Grosser Jude W, Graham James H

机构信息

Citrus Research and Education Center, University of Florida, Lake Alfred, FL, United States.

Biochemistry Department, Zagazig University, Zagazig, Egypt.

出版信息

Front Plant Sci. 2019 Jan 7;9:1858. doi: 10.3389/fpls.2018.01858. eCollection 2018.

Abstract

Host disease resistance is the most desirable strategy for control of citrus canker, a disease caused by a gram-negative bacterium subsp. . However, no resistant commercial citrus cultivar has been identified. Cybridization, a somatic hybridization approach that combines the organelle and nuclear genomes from different species, was used to create cybrids between citrus canker resistant 'Meiwa' kumquat ( Swingle snym. Thunb.) and susceptible grapefruit ( Macfad) cultivars. From these fusions, cybrids with grapefruit nucleus, kumquat mitochondria and kumquat chloroplasts and cybrids with grapefruit nucleus, kumquat mitochondria and grapefruit chloroplasts were generated. These cybrids showed a range of citrus canker response, but all cybrids with kumquat chloroplasts had a significantly lower number of lesions and lower subsp. populations than the grapefruit controls. Cybrids with grapefruit chloroplasts had a significantly higher number of lesions than those with kumquat chloroplasts. To understand the role of chloroplasts in the cybrid disease defense, quantitative PCR was performed on both cybrid types and their parents to examine changes in gene expression during subsp. infection. The results revealed chloroplast influences on nuclear gene expression, since isonuclear cybrids and 'Marsh' grapefruit had different gene expression profiles. In addition, only genotypes with kumquat chloroplasts showed an early up-regulation of reactive oxygen species genes upon subsp. infection. These cybrids have the potential to enhance citrus canker resistance in commercial grapefruit orchards. They also serve as models for understanding the contribution of chloroplasts to plant disease response and raise the question of whether other alien chloroplast genotypes would condition similar results.

摘要

宿主抗病性是控制柑橘溃疡病最理想的策略,柑橘溃疡病是由一种革兰氏阴性细菌亚种引起的病害。然而,尚未鉴定出具有抗性的商业柑橘品种。体细胞杂交是一种将不同物种的细胞器和核基因组结合起来的体细胞杂交方法,用于在抗柑橘溃疡病的“梅湾”金橘(Swingle 同义词 Thunb.)和易感葡萄柚(Macfad)品种之间创造体细胞杂种。通过这些融合,产生了具有葡萄柚细胞核、金橘线粒体和金橘叶绿体的体细胞杂种以及具有葡萄柚细胞核、金橘线粒体和葡萄柚叶绿体的体细胞杂种。这些体细胞杂种表现出一系列柑橘溃疡病反应,但所有具有金橘叶绿体的体细胞杂种的病斑数量和亚种群体数量均显著低于葡萄柚对照。具有葡萄柚叶绿体的体细胞杂种的病斑数量显著高于具有金橘叶绿体的体细胞杂种。为了了解叶绿体在体细胞杂种抗病防御中的作用,对两种体细胞杂种类型及其亲本进行了定量 PCR,以检测亚种感染期间基因表达的变化。结果表明叶绿体对核基因表达有影响,因为同核体细胞杂种和“马什”葡萄柚具有不同的基因表达谱。此外,只有具有金橘叶绿体的基因型在亚种感染后表现出活性氧基因的早期上调。这些体细胞杂种有潜力增强商业葡萄柚果园对柑橘溃疡病的抗性。它们还可作为理解叶绿体对植物病害反应贡献的模型,并提出了其他外来叶绿体基因型是否会产生类似结果的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39ec/6330342/27a4d48d8ac9/fpls-09-01858-g001.jpg

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