A new autoclave extract from Anabaena minutissima for seed priming improves tomato plantlets growth and protects against soilborne pathogens

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-06-20 DOI:10.1007/s10811-024-03285-z
Hillary Righini, Stefania Galletti, Stefano Cianchetta, Antera Martel Quintana, Ornella Francioso, Roberta Roberti
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Abstract

This study assessed the effectiveness of the treatment of tomato seeds with an aqueous extract of the dried biomass of the microalga Anabaena minutissima in protecting the plants from diseases caused by soilborne pathogens like Rhizoctonia solani and Pythium ultimum. The extract, obtained by an autoclave-assisted method at 100 °C, was rich in proteins and carbohydrates (56.6 and 26.9% of total solids). Preliminary tests were performed revealing: i) a moderate direct activity toward pathogen in vitro growth, with ± 9% stimulation/inhibition, depending on the pathogen; ii) a stimulatory/inhibitory activity toward seedling growth, depending on the dose; iii) no effect on the mycelial growth by root exudates of treated plantlets. Then, a greenhouse experiment was set up to test the response of tomato plants in substrates artificially inoculated with the single pathogens, after seed treatment with the extract at different doses (0, 2.5, 5, and 10 mg mL-1). The treatment generally increased the percentage of standing plants and restored plant development up to the level of healthy controls. Moreover, the disease incidence and severity progressively reduced at increasing doses. Finally, the seed treatment significantly increased some markers of induced systemic resistance like endochitinase and glucanase activity, in hypocotyls of 14-day-old seedlings, compared to non-treated controls. Besides, the treatment increased epicotyls’ carotenoid and chlorophyll a and b content. Overall, these results demonstrate that seed priming with A. minutissima aqueous extract is a promising eco-friendly tool to ameliorate tomato plant responses towards soilborne pathogens, stimulating plant growth and activating induced resistance mechanisms.

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一种用于种子处理的新型高压锅提取物,可改善番茄幼苗的生长并防止土传病原体的侵袭
本研究评估了用微型藻类 Anabaena minutissima 的干燥生物质水提取物处理番茄种子对保护植物免受根瘤菌(Rhizoctonia solani)和白粉病菌(Pythium ultimum)等土传病原体病害的效果。这种提取物是在 100 °C 下通过高压锅辅助方法获得的,富含蛋白质和碳水化合物(分别占总固形物的 56.6% 和 26.9%)。初步测试表明:i) 对病原体的体外生长有适度的直接活性,刺激/抑制率为 ± 9%,具体取决于病原体;ii) 对幼苗生长有刺激/抑制活性,具体取决于剂量;iii) 对处理过的小植株根部渗出物的菌丝生长没有影响。然后,在温室中进行了一项实验,测试番茄植株在人工接种了单一病原体的基质中,用不同剂量(0、2.5、5 和 10 毫克毫升/升)的提取物处理种子后的反应。处理后,立株率普遍提高,植株发育恢复到健康对照组的水平。此外,随着剂量的增加,病害的发生率和严重程度也逐渐降低。最后,与未处理的对照组相比,种子处理明显增加了诱导系统抗性的一些指标,如 14 天幼苗下胚轴的内切酶和葡聚糖酶活性。此外,处理还增加了外胚轴类胡萝卜素和叶绿素 a、b 的含量。总之,这些结果表明,用 A. minutissima 水提取物给种子打底是一种很有前景的生态友好型工具,可改善番茄植株对土传病原体的反应,刺激植株生长并激活诱导抗性机制。
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ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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