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首页> 外文期刊>European Journal of Plant Pathology >Preventive and curative activity of postharvest potassium silicate treatments to control green and blue molds on orange fruit
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Preventive and curative activity of postharvest potassium silicate treatments to control green and blue molds on orange fruit

机译:收获后硅酸钾处理对橙色水果上绿色和蓝色霉菌的预防和治疗活性

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摘要

Preventive and curative antifungal activities of postharvest treatments with potassium silicate (PSi) against green (GM) and blue (BM) molds were evaluated on oranges (cvs. 'Valencia' or 'Lanelate') artificially inoculated in rind wounds with Penicillium digitatum and P. italicum, respectively. The most effective PSi concentration, the effect of fungal inoculum concentration, and the influence of temporal and spatial factors on antifungal activity were assessed in in vivo primary screenings. After 6 days of incubation at 20 A degrees C, significant preventive (treatment before fungal inoculation) and curative (treatment after inoculation) activities against GM and BM were observed with PSi at 90 mM (GM and BM incidence reductions of 23 and 52 %, and 23 and 40 %, respectively). In preventive tests, the effectiveness of PSi was influenced by inoculum concentration (10(3), 10(4), 10(5), or 10(6) spores ml(-1)), but not by the distance between treatment and inoculation sites (10, 20 or 30 mm). PSi applied about 2 h before inoculation showed higher preventive activity than applied before 24, 48 or 96 h. In order to determine the best dip treatment conditions, PSi at 90 mM was tested at 20 or 50 A degrees C for 60 or 150 s in small-scale trials with 'Lanelate' oranges artificially inoculated before or after the treatment and incubated for 7 days at 20 A degrees C. Dips at 20 A degrees C for 60 s were selected and subsequently applied on inoculated 'Valencia' oranges stored at 5 A degrees C and 90 % RH for up to 6 weeks. Curative postharvest dips effectively reduced the incidence and severity of both GM and BM during cold storage, while preventive dips significantly reduced the severity but not the incidence. Overall, postharvest PSi treatments showed potential as a new tool to be part of non-polluting strategies to control penicillium decay of citrus fruit.
机译:在人工接种接种有指状青霉菌和P的果皮伤口的橙子(vs.'Valencia'或'Lanelate')上评估了硅酸钾(PSi)收获后处理对绿色(GM)和蓝色(BM)霉菌的预防和治疗性抗真菌活性。 Italicum。在体内初步筛选中评估了最有效的PSi浓度,真菌接种物浓度的影响以及时间和空间因素对抗真菌活性的影响。在20 m C的温度下孵育6天后,使用90 mM的PSi观察到了对GM和BM的显着预防性(真菌接种前处理)和治愈性(接种后处理)活性(GM和BM发生率分别降低了23%和52%,分别为23%和40%)。在预防性测试中,PSi的有效性受接种物浓度(10(3),10(4),10(5)或10(6)孢子ml(-1))的影响,但不受治疗与接种部位(10、20或30毫米)。接种前2 h施用的PSi的预防活性高于24、48或96 h之前的预防活性。为了确定最佳的浸蘸处理条件,在小规模试验中,在处理之前或之后人工接种了'Lanelate'橘子,并在20或50 A的温度下测试了90 mM的PSi 60或150 s。选择在20 A的温度下浸泡60 s,然后将其施加到在5 A的温度和90%相对湿度下储存长达6周的接种“巴伦西亚”橙子上。采后治疗性蘸药有效降低了冷藏期间GM和BM的发生率和严重程度,而预防性蘸药显着降低了严重程度,但没有降低发病率。总体而言,收获后的PSi处理具有潜力,可以作为控制柑橘类水果青霉菌腐烂的无污染策略的一部分而成为一种新工具。

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