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Genetic analysis of the interaction between Allium species and arbuscular mycorrhizal fungi

机译:葱属物种与丛枝菌根真菌相互作用的遗传分析

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The response of Allium cepa, A. roylei, A. fistulosum, and the hybrid A. fistulosum x A. roylei to the arbuscular mycorrhizal fungus (AMF) Glomus intraradices was studied. The genetic basis for response to AMF was analyzed in a tri-hybrid A. cepa x (A. roylei x A. fistulosum) population. Plant response to mycorrhizal symbiosis was expressed as relative mycorrhizal responsiveness (R') and absolute responsiveness (R). In addition, the average performance (AP) of genotypes under mycorrhizal and non-mycorrhizal conditions was determined. Experiments were executed in 2 years, and comprised clonally propagated plants of each genotype grown in sterile soil, inoculated with G. intraradices or non-inoculated. Results were significantly correlated between both years. Biomass of non-mycorrhizal and mycorrhizal plants was significantly positively correlated. R' was negatively correlated with biomass of non-mycorrhizal plants and hence unsuitable as a breeding criterion. R and AP were positively correlated with biomass of mycorrhizal and non-mycorrhizal plants. QTLs contributing to mycorrhizal response were located on a linkage map of the A. roylei x A. fistulosum parental genotype. Two QTLs from A. roylei were detected on chromosomes 2 and 3 for R, AP, and biomass of mycorrhizal plants. A QTL from A. fistulosum was detected on linkage group 9 for AP (but not R), biomass of mycorrhizal and non-mycorrhizal plants, and the number of stem-borne roots. Co-segregating QTLs for plant biomass, R and AP indicate that selection for plant biomass also selects for enhanced R and AP. Moreover, our findings suggest that modern onion breeding did not select against the response to AMF, as was suggested before for other cultivated species. Positive correlation between high number of roots, biomass and large response to AMF in close relatives of onion opens prospects to combine these traits for the development of more robust onion cultivars.
机译:研究了葱属洋葱,油菜曲霉,瘘管曲霉和杂种曲霉×油菜曲霉对丛枝菌根真菌(AMF)Glomus intraradices的响应。在三杂种曲霉x(roylei x a。fistulosum)种群中分析了对AMF反应的遗传基础。植物对菌根共生的反应表示为相对菌根反应度(R')和绝对反应度(R)。此外,确定了在菌根和非菌根条件下基因型的平均表现(AP)。实验在2年内进行,包括在无菌土壤中生长,接种根瘤菌或未接种根瘤菌的每种基因型的无性繁殖植物。两年之间的结果显着相关。非菌根和菌根植物的生物量显着正相关。 R'与非菌根植物的生物量呈负相关,因此不适合作为育种标准。 R和AP与菌根和非菌根植物的生物量呈正相关。导致菌根反应的QTL位于A. roylei x A. fistulosum亲本基因型的连锁图上。在菌根植物的R,AP和生物量的2号和3号染色体上检测到两个来自A. roylei的QTL。在第9个连锁群中检测到了来自A.的瘘管的QTL(但未检测到R),菌根和非菌根植物的生物量以及茎生根的数量。植物生物量,R和AP的共分离QTL表明,对植物生物量的选择还选择了增强的R和AP。此外,我们的研究结果表明,现代洋葱育种并未像其他栽培物种那样选择针对AMF的反应。大量根,生物量和对洋葱近亲对AMF的大量反应之间的正相关关系为将这些性状结合起来以开发更强壮的洋葱品种开辟了前景。

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