Centre de Coopération Internationale en Recherche Agronomique pour le Développement (CIRAD), Unité Mixte de Recherche Peuplements Végétaux et Bio-agresseurs en Milieu Tropical (UMR PVBMT), F-97410 Saint-Pierre, France.
Unité Mixte de Recherche Peuplements Végétaux et Bio-agresseurs en Milieu Tropical (UMR PVBMT), Université de la Réunion, F-97410 Saint-Pierre, France.
Int J Mol Sci. 2018 Jan 25;19(2):357. doi: 10.3390/ijms19020357.
Eggplant cultivation is limited by numerous diseases, including the devastating bacterial wilt (BW) caused by the species complex (RSSC). Within the RSSC, (including phylotypes I and III) causes severe damage to all solanaceous crops, including eggplant. Therefore, the creation of cultivars resistant to strains is a major goal for breeders. An intraspecific eggplant population, segregating for resistance, was created from the cross between the susceptible MM738 and the resistant EG203 lines. The population of 123 doubled haploid lines was challenged with two strains belonging to phylotypes I (PSS4) and III (R3598), which both bypass the published BW-resistance quantitative trait locus (QTL). Ten and three QTLs of resistance to PSS4 and to R3598, respectively, were detected and mapped. All were strongly influenced by environmental conditions. The most stable QTLs were found on chromosomes 3 and 6. Given their estimated physical position, these newly detected QTLs are putatively syntenic with BW-resistance QTLs in tomato. In particular, the QTLs' position on chromosome 6 overlaps with that of the major broad-spectrum tomato resistance QTL . The present study is a first step towards understanding the complex polygenic system, which underlies the high level of BW resistance of the EG203 line.
茄子种植受到许多疾病的限制,包括由物种复合体(RSSC)引起的破坏性细菌性萎蔫病(BW)。在 RSSC 中,(包括表型 I 和 III)会对所有茄科作物,包括茄子,造成严重损害。因此,培育对 RSSC 菌株具有抗性的品种是育种者的主要目标。通过对易感 MM738 和抗性 EG203 系之间的杂交,创建了一个对 RSSC 具有抗性的茄子种内群体。该群体的 123 个双单倍体系受到了属于表型 I(PSS4)和 III(R3598)的两个菌株的挑战,这两个菌株都绕过了已发表的 BW 抗性数量性状位点(QTL)。分别检测到并映射到对 PSS4 和 R3598 具有抗性的 10 个和 3 个 QTL。所有这些 QTL 都强烈受到环境条件的影响。在染色体 3 和 6 上发现了最稳定的 QTL。根据它们的估计物理位置,这些新检测到的 QTL 与番茄中的 BW 抗性 QTL 可能是同线性的。特别是,染色体 6 上的 QTL 位置与番茄主要广谱抗性 QTL 的位置重叠。本研究是理解 EG203 系高 BW 抗性背后复杂多基因系统的第一步。