Department of Agriculture and Forest Sciences (DAFNE), University of Tuscia, Via San Camillo de Lellis, snc, 01100 Viterbo, Italy.
Department of Agrobiotechnology Tulln (IFA-Tulln), University of Natural Resources and Life Sciences Vienna (BOKU), Konrad Lorenz Straße 20, A-3430 Tulln an der Donau, Austria.
Molecules. 2020 Oct 16;25(20):4752. doi: 10.3390/molecules25204752.
Fusarium head blight (FHB) is a devastating disease for cereals. FHB is managed by fungicides at anthesis, but their efficacy is variable. Conventional fungicides accumulate in the soil and are dangerous for animal and human health. This study assayed the antifungal ability of chitosan hydrochloride against . Chitosan reduced growth and downregulated the transcript of the major genes involved in the cell growth, respiration, virulence, and trichothecenes biosynthesis. Chitosan promoted the germination rate, the root and coleoptile development, and the nitrogen balance index in two durum wheat genotypes, Marco Aurelio (FHB-susceptible) and DBC480 (FHB-resistant). Chitosan reduced FHB severity when applied on spikes or on the flag leaves. FHB severity in DBC480 was of 6% at 21 dpi after chitosan treatments compared to inoculated control (20%). The elicitor-like property of chitosan was confirmed by the up-regulation of , and (around 3-fold). Chitosan decreased the fungal spread and mycotoxins accumulation. This study demonstrated that the non-toxic chitosan is a powerful molecule with the potential to replace the conventional fungicides. The combination of a moderately resistant genotype (DBC480) with a sustainable compound (chitosan) will open new frontiers for the reduction of conventional compounds in agriculture.
镰刀菌穗腐病(FHB)是谷物的毁灭性疾病。在开花期使用杀菌剂来防治 FHB,但它们的效果是可变的。传统杀菌剂在土壤中积累,对动物和人类健康有危险。本研究测定了盐酸壳聚糖对 的抗真菌能力。壳聚糖抑制 生长并下调参与细胞生长、呼吸、毒性和单端孢霉烯生物合成的主要基因的转录。壳聚糖促进了两个硬质小麦基因型 Marco Aurelio(FHB 敏感)和 DBC480(FHB 抗性)的发芽率、根和胚芽鞘发育以及氮平衡指数。壳聚糖在穗部或旗叶上处理时,可降低 FHB 严重度。与接种对照(20%)相比,用壳聚糖处理后,DBC480 的 FHB 严重度在 21dpi 时为 6%。壳聚糖通过上调 、 和 (约 3 倍)来确认其类激发子特性。壳聚糖减少了真菌的扩散和真菌毒素的积累。本研究表明,无毒的壳聚糖是一种强大的分子,具有替代传统杀菌剂的潜力。将中度抗性基因型(DBC480)与可持续化合物(壳聚糖)相结合,将为减少农业中传统化合物开辟新的领域。