Alseekh Saleh, Tohge Takayuki, Wendenberg Regina, Scossa Federico, Omranian Nooshin, Li Jie, Kleessen Sabrina, Giavalisco Patrick, Pleban Tzili, Mueller-Roeber Bernd, Zamir Dani, Nikoloski Zoran, Fernie Alisdair R
Max-Planck Institute for Molecular Plant Physiology, 14476, Potsdam-Golm, Germany.
Max-Planck Institute for Molecular Plant Physiology, 14476, Potsdam-Golm, Germany Consiglio per la Ricerca e la Sperimentazione in Agricoltura, Centro di Ricerca per la Frutticoltura, 00134 Rome, Italy.
Plant Cell. 2015 Mar;27(3):485-512. doi: 10.1105/tpc.114.132266. Epub 2015 Mar 13.
A large-scale metabolic quantitative trait loci (mQTL) analysis was performed on the well-characterized Solanum pennellii introgression lines to investigate the genomic regions associated with secondary metabolism in tomato fruit pericarp. In total, 679 mQTLs were detected across the 76 introgression lines. Heritability analyses revealed that mQTLs of secondary metabolism were less affected by environment than mQTLs of primary metabolism. Network analysis allowed us to assess the interconnectivity of primary and secondary metabolism as well as to compare and contrast their respective associations with morphological traits. Additionally, we applied a recently established real-time quantitative PCR platform to gain insight into transcriptional control mechanisms of a subset of the mQTLs, including those for hydroxycinnamates, acyl-sugar, naringenin chalcone, and a range of glycoalkaloids. Intriguingly, many of these compounds displayed a dominant-negative mode of inheritance, which is contrary to the conventional wisdom that secondary metabolite contents decreased on domestication. We additionally performed an exemplary evaluation of two candidate genes for glycolalkaloid mQTLs via the use of virus-induced gene silencing. The combined data of this study were compared with previous results on primary metabolism obtained from the same material and to other studies of natural variance of secondary metabolism.
对特征明确的潘那利番茄渐渗系进行了大规模代谢数量性状位点(mQTL)分析,以研究番茄果实果皮中与次生代谢相关的基因组区域。在76个渐渗系中总共检测到679个mQTL。遗传力分析表明,次生代谢的mQTL比初生代谢的mQTL受环境影响小。网络分析使我们能够评估初生代谢和次生代谢的相互关联性,并比较和对比它们与形态性状的各自关联。此外,我们应用了最近建立的实时定量PCR平台,以深入了解一部分mQTL的转录调控机制,包括对羟基肉桂酸酯、酰基糖、柚皮素查耳酮和一系列糖苷生物碱的mQTL。有趣的是,这些化合物中的许多表现出显性负遗传模式,这与次生代谢产物含量在驯化过程中降低的传统观点相反。我们还通过病毒诱导基因沉默对两个糖苷生物碱mQTL的候选基因进行了示例性评估。本研究的综合数据与之前从相同材料获得的初生代谢结果以及其他次生代谢自然变异研究进行了比较。