砧木对武鸣沃柑果实熟期的影响
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1.华中农业大学园艺林学学院;2.广西壮族自治区水果技术指导站;3.广西农业科学院园艺研究所

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南宁市科技局重大科技专项(20222062);广西农科院柑橘资源与育种团队项目(桂农科2021YT044);广西陆川橘红试验站项目(桂TS2022013);国家现代农业柑橘产业技术体系(CARS-26)


Effect of Rootstock on Fruit Ripening of Wuming Orah Mandarin
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    摘要:

    揭示不同砧木对武鸣沃柑成熟期果实品质的影响,为确定武鸣沃柑最佳采收期和通过砧木调控果实熟期提供科学依据。分别以香橙和枳作为砧木的沃柑为试材,从果实转色期至成熟期分8个时间点(S1-S8时期)采样,测定果面色差值、可溶性固形物(TSS)和可滴定酸(TA)含量、出汁率和5个重要时间点的初生代谢物等品质指标的变化;进而采用RNA-Seq分析3个重点时期的基因表达,并利用qRT-PCR验证关键基因。结果显示,在S1-S5的同一时间点,枳砧果实着色更快且果面更红;出汁率提高0.37%-11.64%,TSS提高0.73%-1.00%、固酸比提高0.32-3.41。感官评价实验表明,枳砧果实总体满意度为8.11,显著高于香橙砧果实的总体满意度(7.22)。初生代谢组分析表明,枳砧明显提高了果实蔗糖、D-果糖、D-葡萄糖和Myo-肌醇含量;而S6-S8同一时期,二者的TA含量、固酸比和感官风味等指标差异不显著。转录组分析共筛选出1 481个差异表达基因,主要富集于碳水化合物代谢、蛋白质磷酸化、转录调节等生物学途径。qRT-PCR证实,果实蔗糖积累关键基因CsSUC1在枳砧果实中优先上调表达。以上结果表明,枳砧嫁接的武鸣沃柑果实最佳采收期为1月上旬,而香橙砧嫁接的沃柑最佳采收期为1月中旬,二者相差约2周;枳砧促进果实成熟的主要原因与加速果实可溶性糖积累有关。

    Abstract:

    Abstract This study investigated the influence of rootstock selection on fruit quality dynamics during ripening in 'Wuming Orah' mandarin, establishing scientific criteria for optimal harvest time and ripening regulation. Using fragrant citrus (Citrus × junos Siebold ex Tanaka) and (Poncirus trifoliata (L.) Raf) as rootstocks, fruit samples were collected at eight developmental stages (S1–S8) spanning the color-break period to full maturity. Key quality parameters were analyzed, including color index of fruit pericarp, total soluble solids (TSS), titratable acidity (TA), juice rate, and primary metabolite profiles at five critical stages. Transcriptomic analysis via RNA-Seq was performed at three pivotal stages, with qRT-PCR validation of key genes. Results demonstrated that P. trifoliata-grafted fruits exhibited accelerated pericarp coloration and enhanced redness during S1–S5. Compared to C. junos-grafted fruits, P. trifoliata conferred significantly higher juice yield (increase: 0.37%–11.64%), TSS content (elevation: 0.73%–1.00%), and TSS/TA ratio (increase: 0.32–3.41). Sensory evaluation revealed superior overall preference scores for P. trifoliata fruits (8.11 vs. 7.22). Primary metabolomics analysis indicated elevated sucrose, D-fructose, D-glucose, and myo-inositol levels in P. trifoliata-grafted fruits. No significant inter-rootstock differences in TA, TSS/TA, or sensory attributes were observed during S6–S8. Transcriptomic profiling identified 1,481 differentially expressed genes, predominantly enriched in carbohydrate metabolism, protein phosphorylation, and transcriptional regulation pathways. qRT-PCR confirmed the early upregulation of CsSUC1 (the key sucrose transporter gene) in P. trifoliata-grafted fruits, correlating with accelerated sugar accumulation. These findings indicate that the optimal harvest window for P. trifoliata-grafted Wuming Orah mandarin occurs in early January—approximately two weeks earlier than C. junos-grafted fruits (mid-January). The hastened maturation associated with P. trifoliata rootstock appears mechanistically linked to enhanced soluble sugar accumulation.

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  • 收稿日期:2025-04-14
  • 最后修改日期:2025-06-27
  • 录用日期:2025-08-14
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