番荔枝生物活性次生代谢产物的诱导。壳聚糖和水杨酸激发剂对山烟幼苗的影响。

Q3 Agricultural and Biological Sciences
Plant-environment interactions (Hoboken, N.J.) Pub Date : 2025-08-18 eCollection Date: 2025-08-01 DOI:10.1002/pei3.70075
Mónica F Antolínez-Pérez, Juan P Fernández-Trujillo, Luis G Sequeda-Castañeda, Yineth Pineros-Castro
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引用次数: 0

摘要

利用水杨酸(SA)和壳聚糖(CH)等激发子是诱导植物次生代谢产物产生的有效策略。但其在番荔枝苗上的应用尚不明确。几乎没有被探索过。研究了不同浓度SA(100、250和400 μM)和CH(60、80和100 μM)对番荔枝物候生长、酚类化合物和黄酮类化合物积累及抗氧化活性的影响。在控制条件下,每周进行三次治疗。总酚含量(TPC)以每克提取物干质量的没食子酸当量毫克数(mg GAE/g DW)计量,总黄酮含量(TFC)以每克提取物干质量的槲皮素当量毫克数(mg QE/g DW)计量。采用2,2-二苯基-1-苦基肼基(DPPH)自由基清除法和铁还原抗氧化能力(FRAP)法测定抗氧化活性,结果以提取物每克干质量(mg TE/g DW)的Trolox当量毫克数表示。结果表明,水杨酸浓度为100 μM、壳聚糖浓度为80 μM时,茎长和叶数最高;这些浓度还诱导了最高含量的酚类物质(高达23.5 mg GAE/g DW)和类黄酮(15.5 mg QE/g DW),以及更高的抗氧化活性(高达21.5 mg TE/g DW)。代谢产物的积累与抗氧化能力呈正相关。这是首次证实水杨酸和壳聚糖作为生物刺激剂对番荔枝生理和次生代谢的调节作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Induction of Bioactive Secondary Metabolites in <i>Annona cherimola</i> Mill. (Chirimoya) Seedlings Using Chitosan and Salicylic Acid as Elicitors.

Induction of Bioactive Secondary Metabolites in <i>Annona cherimola</i> Mill. (Chirimoya) Seedlings Using Chitosan and Salicylic Acid as Elicitors.

Induction of Bioactive Secondary Metabolites in <i>Annona cherimola</i> Mill. (Chirimoya) Seedlings Using Chitosan and Salicylic Acid as Elicitors.

Induction of Bioactive Secondary Metabolites in Annona cherimola Mill. (Chirimoya) Seedlings Using Chitosan and Salicylic Acid as Elicitors.

The use of elicitors such as salicylic acid (SA) and chitosan (CH) represents an effective strategy to induce the production of secondary metabolites in plants. However, its application in seedlings of Annona cherimola Mill. has been scarcely explored. This study evaluated the effect of different concentrations of SA (100, 250 and 400 μM) and CH (60, 80 and 100 μM) applied foliar on phenological growth, accumulation of phenolic compounds and flavonoids, and antioxidant activity in Annona cherimola. Three weekly treatments were applied under controlled conditions. Total phenolic content (TPC) was quantified as milligrams of gallic acid equivalents per gram of dry mass (mg GAE/g DW) of extract, and total flavonoid content (TFC) as milligrams of quercetin equivalents per gram of dry mass (mg QE/g DW) of extract. Antioxidant activity was determined using the 2,2-diphenyl-1-picrylhydrazyl (DPPH) radical scavenging method and the ferric reducing antioxidant power (FRAP) assay, and results were expressed as milligrams of Trolox equivalents per gram of dry mass (mg TE/g DW) of extract. The results showed that salicylic acid 100 μM and chitosan 80 μM promoted the highest stem growth and leaf count. These concentrations also induced the highest content of phenols (up to 23.5 mg GAE/g DW) and flavonoids (15.5 mg QE/g DW), as well as higher antioxidant activity (up to 21.5 mg TE/g DW). A positive correlation was observed between the accumulation of metabolites and the antioxidant capacity. This is the first report to validate the use of salicylic acid and chitosan as biostimulant tools to modulate physiology and secondary metabolism in Annona cherimola (Chirimoya).

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