Phytopathology. 2004 Apr;94(4):370-9. doi: 10.1094/PHYTO.2004.94.4.370.
ABSTRACT The major scab resistance gene Vf, extensively used in apple breeding programs, was recently overcome by the new races 6 and 7 of the fungal pathogen Venturia inaequalis. New, more durable, scab resistance genes are needed in apple breeding programs. F(1) progeny derived from the cross between partially resistant apple cv. Discovery and apple hybrid 'TN10-8' were inoculated in the greenhouse with eight isolates of V. inaequalis, including isolates able to overcome Vf. One major resistance gene, Vg, and seven quantitative trait loci (QTL) were identified for resistance to these isolates. Three QTL on linkage group (LG)12, LG13, and LG15 were clearly isolate-specific. Another QTL on LG5 was detected with two isolates. Three QTL on LG1, LG2, and LG17 were identified with most isolates tested, but not with every isolate. The QTL on LG2 displayed alleles conferring different specificities. This QTL co-localized with the major scab resistance genes Vr and Vh8, whereas the QTL on LG1 colocalized with Vf. These results contribute to a better understanding of the genetic basis of the V. inaequalis-Malus x domestica interaction.
摘要 广泛应用于苹果育种计划的主要抗疮痂病基因 Vf 最近被真菌病原体梨火疫病菌(Venturia inaequalis)的新菌株 6 和 7 克服。苹果育种计划需要新的、更持久的抗疮痂病基因。从部分抗性苹果品种‘发现’(Discovery)和苹果杂种‘TN10-8’杂交的 F1 后代在温室中用 8 个梨火疫病菌分离株接种,包括能够克服 Vf 的分离株。鉴定出一个主要的抗药性基因 Vg 和七个数量性状位点(QTL)对这些分离株的抗性。LG12、LG13 和 LG15 三个 QTL 对分离株具有明显的特异性。在 LG5 上还检测到了两个分离株的 QTL。LG1、LG2 和 LG17 上的三个 QTL 被大多数测试的分离株识别,但不是每个分离株都能识别。LG2 上的 QTL 显示出赋予不同特异性的等位基因。该 QTL 与主要的抗疮痂病基因 Vr 和 Vh8 共定位,而 LG1 上的 QTL 与 Vf 共定位。这些结果有助于更好地理解梨火疫病菌-苹果属间相互作用的遗传基础。