Discovery Research, Dow Agrosciences, Indianapolis, Indiana, United States.
J Agric Food Chem. 2015 Jan 21;63(2):593-602. doi: 10.1021/jf503934v. Epub 2015 Jan 7.
Alternative sources of natural rubber are of importance due to economic, biological, and political threats that could diminish supplies of this resource. Prickly lettuce (Lactuca serriola L.) synthesizes long-chain natural rubber and was studied to determine underlying genetic and phenotypic characteristics of rubber biosynthesis. Genotypic and phenotypic analysis of an F2 segregating population using EST-SSR markers led to the discovery of genetic regions linked to natural rubber production. Interval mapping (IM) and multiple QTL mapping (MQM) identified several QTL in the mapping population that had significance based on LOD score thresholds. The discovered QTL and the corresponding local markers are genetic resources for understanding rubber biosynthesis in prickly lettuce and could be used in marker-assisted selection (MAS) breeding. Prickly lettuce is an excellent candidate for elucidating the rubber synthesis mechanism and has potential as a crop plant for rubber production.
由于经济、生物和政治威胁可能会减少这种资源的供应,因此替代天然橡胶的来源具有重要意义。刺莴苣(Lactuca serriola L.)合成长链天然橡胶,并对其进行了研究,以确定橡胶生物合成的潜在遗传和表型特征。使用 EST-SSR 标记对 F2 分离群体进行基因型和表型分析,发现与天然橡胶产量相关的遗传区域。区间作图(IM)和多个 QTL 作图(MQM)在基于 LOD 得分阈值具有显著意义的作图群体中鉴定出多个 QTL。发现的 QTL 和相应的局部标记是了解刺莴苣橡胶生物合成的遗传资源,可用于标记辅助选择(MAS)育种。刺莴苣是阐明橡胶合成机制的理想候选植物,并且具有作为橡胶生产作物的潜力。