Department of Agriculture, Food and Environment, University of Catania, Via Santa Sofia 100, Catania, 95123, Italy.
Research and Innovation Centre, San Michele All' Adige, Fondazione Edmund Mach, Trento, Italy.
BMC Plant Biol. 2024 Jun 7;24(1):509. doi: 10.1186/s12870-024-05211-4.
Among the Citrus species, lemon (Citrus limon Burm f.) is one of the most affected by the two-spotted spider mite (Tetranychus urticae Koch). Moreover, chemical control is hampered by the mite's ability to develop genetic resistance against acaricides. In this context, the identification of the genetic basis of the host resistance could represent a sustainable strategy for spider mite control. In the present study, a marker-trait association analysis was performed on a lemon population employing an association mapping approach. An inter-specific full-sib population composed of 109 accessions was phenotyped through a detached-leaf assays performed in modified Huffaker cells. Those individuals, complemented with two inter-specific segregating populations, were genotyped using a target-sequencing approach called SPET (Single Primer Enrichment Technology), the resulting SNPs were employed for the generation of an integrated genetic map.
The percentage of damaged area in the full-sib population showed a quantitative distribution with values ranging from 0.36 to 9.67%. A total of 47,298 SNPs were selected for an association mapping study and a significant marker linked with resistance to spider mite was detected on linkage group 5. In silico gene annotation of the QTL interval enabled the detection of 13 genes involved in immune response to biotic and abiotic stress. Gene expression analysis showed an over expression of the gene encoding for the ethylene-responsive transcription factor ERF098-like, already characterized in Arabidopsis and in rice for its involvement in defense response.
The identification of a molecular marker linked to the resistance to spider mite attack can pave the way for the development of marker-assisted breeding plan for the development of novel selection coupling favorable agronomical traits (e.g. fruit quality, yield) with a higher resistance toward the mite.
在柑橘属物种中,柠檬(Citrus limon Burm f.)是受二斑叶螨(Tetranychus urticae Koch)影响最大的物种之一。此外,由于螨虫有能力对杀螨剂产生遗传抗性,化学防治受到阻碍。在这种情况下,确定宿主抗性的遗传基础可能代表着控制螨虫的可持续策略。在本研究中,采用关联作图方法对柠檬群体进行了标记-性状关联分析。利用一种称为 SPET(单引物富集技术)的目标测序方法对由 109 个个体组成的种间全同胞群体进行了基因型分析,这些个体与两个种间分离群体相补充。利用 SPET 方法对分离群体进行了基因型分析,得到的 SNP 被用于生成一个综合的遗传图谱。
全同胞群体中受损面积的百分比呈定量分布,范围从 0.36 到 9.67%。共选择了 47298 个 SNP 进行关联作图研究,在连锁群 5 上检测到一个与抗螨性相关的显著标记。对 QTL 区间的基因注释表明,检测到了 13 个与生物和非生物胁迫免疫反应相关的基因。基因表达分析显示,编码乙烯响应转录因子 ERF098 样蛋白的基因表达过度,该基因已在拟南芥和水稻中被鉴定出,参与防御反应。
鉴定出与抗螨性相关的分子标记,可以为开发标记辅助育种计划铺平道路,以开发具有更高抗螨性的新型选择,结合有利的农艺性状(如果实品质、产量)。