首页> 外文期刊>Journal of Applied Phycology >Increased growth response of strawberry roots to a commercial extract from Durvillaea potatorum and Ascophyllum nodosum
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Increased growth response of strawberry roots to a commercial extract from Durvillaea potatorum and Ascophyllum nodosum

机译:增加草莓根源的增长响应从Durvillaea potatorum和Nodosum的商业提取物

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The withdrawal of soil fumigants like methyl bromide is forcing strawberry growers to consider supplementary and alternative ways of producing crops. In addition to controlling soil-borne pests, soil fumigation causes an increased growth response in strawberry roots, and the use of biostimulants may offer an alternative to replace this response. We tested the hypothesis that treatment with a commercial extract (Seasol (R)) from the seaweeds Duvillaea potatorum and Ascophyllum nodosum can increase root growth, and transplant (runner) and fruit yields of strawberry. From 2014 to 2016, we conducted three field trials on strawberry farms in the nursery sector at Toolangi and in the fruiting sector at Coldstream in Victoria, Australia. We applied the seaweed extract as a monthly drench (10L ha(-1)) to two cultivars of strawberry (Albion' and Fortuna'), compared with an untreated control. In the nursery sector, use of the extract significantly increased the density of secondary roots (feeder roots) on harvested runners by up to 22%. Treatment with the extract also significantly increased yields of marketable runners by 8-19%. In the fruit sector, use of the extract significantly increased the root length density (root length per volume of soil) of strawberry plants by 38% and marketable fruit yields by 8%. Root length density at final harvest and marketable fruit yield of strawberry were highly correlated (r=0.94). This relationship provides an insight into the mode of action of seaweed extracts and is discussed. Overall, the results show the potential benefits of the integrated use of seaweed extracts in strawberry production across the nursery and fruit sectors, and their promise for supplementing or replacing the increased growth response provided by soil fumigants.
机译:甲基溴化物等土壤熏蒸剂撤出是迫使草莓种植者考虑辅助和替代的生产作物的方式。除了控制土壤传播的害虫外,土壤熏蒸导致草莓根中的增长反应增加,使用生物刺激剂的使用可以提供替代这种反应的替代方案。我们测试了从海藻Duvillaea Potatorum和Nodosum的商业提取物(Seasol(R))治疗的假设可以增加根系生长和移植(跑步者)和草莓的果原产量。从2014年到2016年,我们在Toolangi的托儿所和苗圃领域的草莓农场进行了三次田间试验,并在澳大利亚维多利亚的寒冷地区进行了结果。我们将海藻提取物作为每月淋雨(10L HA(-1))施加到两种草莓(Albion'和Fortuna')的每月浸泡(Albion'和Fortuna'),与未经治疗的控制相比。在苗圃部门,提取物的使用显着增加了收获的跑步者的二次根(饲养根)的密度高达22%。用提取物的治疗也显着提高了销售赛跑者的产量8-19%。在水果部门中,使用提取物显着提高了草莓植物的根长度(土壤的根部长度),将草莓植物的根长密度(每体积的土壤长度)增加了38%和销售果实产量8%。最终收获的根长度和销售草莓的果实产量高度相关(r = 0.94)。这种关系提供了对海藻提取物的作用方式的洞察力。总体而言,结果表明,在苗圃和水果领域的草莓生产中综合使用海藻提取物的潜在益处,以及他们对土壤熏蒸剂提供的增加或取代增长的增长响应的承诺。

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