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Low-dose Application of Nonionic Alkyl Terminated Block Copolymer Surfactant Enhances Turfgrass Seed Germination and Plant Growth

机译:低剂量应用非离子烷基端嵌段共聚物表面活性剂可增强草皮种子发芽和植物生长

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Rapid seed germination and vigorous seedling growth are desired when establishing turfgrass lawns from seed. Low-dose concentrations of nonionic, block copolymer surfactants can have a direct effect on plant physiological functions and growth. The objectives were to determine if a low-dose application of a nonionic alkyl ended block copolymer surfactant applied directly to the seed, within a film coating, would 1) influence speed, synchrony, and final germination percentage (FGP), and 2) enhance seedling emergence and the speed of turfgrass establishment under deficit irrigation. Tests were performed with tall fescue (Schedonorus arundinaceus) and perennial ryegrass (Lolium perenne). Surfactant was applied directly to the seed using a rotary seedcoater at 0.1% by weight of seed. In the first experiment, germination was compared between seeds with a surfactant film coating (SFC) and untreated seeds in growth chambers at three different constant temperatures (10, 20, and 30 degrees C). For both species, the SFC decreased the time for seed germination, and improved germination synchrony, with the greatest treatment response at 10 and 30 degrees C compared with untreated seed. Application of a SFC did not influence FGP. In the second experiment, untreated and treated seed were compared in a grow-room study, with pots watered weekly to 70% of field capacity (FC). Perennial ryegrass density, cover, and aboveground biomass from the SFC were approximate to 47%, 48%, and 46% greater than untreated seed, respectively. Tall fescue density, cover, and aboveground biomass from the SFC seeds were approximate to 22%, 23%, and 28% greater than untreated seed, respectively. Overall these studies demonstrate that SFC can promote seed germination and also enhance turfgrass establishment under deficit irrigation.
机译:从种子建立草皮草坪时,需要快速的种子发芽和旺盛的幼苗生长。低剂量浓度的非离子型嵌段共聚物表面活性剂可直接影响植物的生理功能和生长。目的是确定在膜包衣中低剂量直接施用于种子的非离子烷基末端嵌段共聚物表面活性剂是否会1)影响速度,同步性和最终发芽率(FGP),以及2)提高亏缺灌溉下幼苗出苗和草皮草建立的速度。用高羊茅(Schedonorus arundinaceus)和多年生黑麦草(Lolium perenne)进行测试。使用旋转式种子包衣机以种子重量的0.1%将表面活性剂直接施用于种子。在第一个实验中,比较了具有表面活性剂薄膜涂层(SFC)的种子和未处理的种子在三种不同的恒定温度(10、20和30摄氏度)下在生长室中的发芽率。对于这两个物种,SFC都减少了种子发芽的时间,并改善了发芽同步性,与未处理的种子相比,在10和30摄氏度时处理响应最大。证监会的应用并不影响FGP。在第二个实验中,在生长室研究中比较了未处理和处理过的种子,每周浇盆至田间持水量(FC)的70%。 SFC的多年生黑麦草密度,覆盖率和地上生物量分别比未处理的种子高出约47%,48%和46%。 SFC种子的高羊茅密度,覆盖率和地上生物量分别比未处理的种子高约22%,23%和28%。总体而言,这些研究表明SFC可以促进种子萌发并在亏缺灌溉条件下增强草皮的形成。

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