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Antitranspirant Application Increases Grafting Success of Watermelon

机译:抗催潮剂的应用增加了西瓜的嫁接成功

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摘要

The one-cotyledon splice grafting method is commonly used for watermelon (Citrullus lanatus) because it is relatively rapid and there is less rootstock regrowth than with other grafting methods. However, plants must rely on moisture in the air for survival during at least the first 4 days after grafting. In 2015 and 2016, greenhouse experiments were conducted to investigate if application of commercial stomata-coating and stomata-closing antitranspirant products, applied 1 day before grafting to both scion and rootstock seedlings, could increase the survival of watermelon transplants grafted using the one-cotyledon method. 'TriX Palomar' watermelon was grafted onto rootstock 'Tetsukabuto' (Cucurbita maxima x C. moschata) in Expt. 1, and onto rootstock 'Emphasis' (Lagenaria siceraria) in Expt. 2. The survival of grafted watermelon differed because of experiment (P = 0.0003), antitranspirant treatment (P < 0.0001), and experimental repeat (P < 0.0001). The survival of 'TriX Palomar' grafted onto 'Tetsukabuto' was greatest for plants treated with the stomata-coating + stomata-closing antitranspirants (92% to 100%), followed by the stomata-closing antitranspirant (79% to 97%), water (72%), and the stomata-coating antitranspirant (50% to 60%). For 'TriX Palomar' grafted onto 'Emphasis', plants treated with the stomata-closing antitranspirant had the greatest survival (87% to 97%), followed by stomata-coating + stomata-closing antitranspirants (84% to 94%), the stomata-coating antitranspirant (50% to 67%), and water (53% to 68%). In Expt. 3, stomatal conductance (gS) was similar for both 'TriX Palomar' and 'Emphasis' seedlings before treatment application, but differed because of the treatments 1 and 2 days after application. Stomatal conductance did not change for 'TriX Palomar' seedlings after application of the stomata-coating antitranspirant or water, or for 'Emphasis' seedlings after application of the stomata-coating antitranspirant. Stomatal conductance of 'TriX Palomar' seedlings decreased 57% to 62% after application of the stomata-closing antitranspirant and decreased 48% to 60% after application of the stomata-coatingD stomata-closing antitranspirants. Stomatal conductance for 'Emphasis' seedlings increased 37% after water application, and decreased 58% to 68% after application of the stomata-closing antitranspirant, and decreased 42% to 45% after application of the stomata-coating + stomata-closing antitranspirants. The survival rate of grafted 'TriX Palomar' transplants was increased nearly 30% by application 1 day before grafting of the commercial stomata-closing antitranspirant or stomata-coating + stomata-closing antitranspirants in this study. Increase in grafting success is likely due to a reduction in transpiration that occurs when the stomata-closing antitranspirant is applied to the seedlings before grafting.
机译:西瓜(Citrullus lanatus)通常采用单子叶拼接嫁接法,因为与其他嫁接方法相比,单子叶拼接嫁接法速度相对较快,且砧木再生较少。然而,植物必须依赖空气中的水分才能在嫁接后的至少前4天存活。2015年和2016年,进行了温室试验,以调查在嫁接前1天向接穗和砧木幼苗施用商业气孔涂层和气孔关闭抗蒸腾剂产品是否可以提高采用单子叶法嫁接的西瓜移栽成活率。”TriX Palomar’西瓜在试验1中嫁接到砧木‘Tetsukabuto’(Cucurbita maxima x C.moschata)上,在试验2中嫁接到砧木‘Emphasis’(Lagenaria siceraria)上。嫁接西瓜的存活率因试验(P=0.0003)、抗蒸腾剂处理(P<0.0001)和重复试验(P<0.0001)而不同。在“Tetsukabuto”上嫁接的“TriX Palomar”的存活率在使用气孔涂层+气孔关闭抗蒸腾剂(92%至100%)的植物中最高,其次是气孔关闭抗蒸腾剂(79%至97%)、水(72%)和气孔涂层抗蒸腾剂(50%至60%)。对于嫁接到“Emphasis”上的“TriX Palomar”,用气孔关闭抗蒸腾剂处理的植株存活率最高(87%至97%),其次是气孔涂层+气孔关闭抗蒸腾剂(84%至94%)、气孔涂层抗蒸腾剂(50%至67%)和水(53%至68%)。在试验3中,“TriX Palomar”和“Emphasis”幼苗在施用处理前的气孔导度(gS)相似,但由于施用后1天和2天的处理不同而有所不同。施用气孔涂层抗蒸腾剂或水后,“TriX Palomar”幼苗的气孔导度没有变化,或者施用气孔涂层抗蒸腾剂后“Emphasis”幼苗的气孔导度没有变化。施用气孔封闭抗蒸腾剂后,“TriX Palomar”幼苗的气孔导度下降57%至62%,施用气孔包裹气孔封闭抗蒸腾剂后,气孔导度下降48%至60%。“Emphasis”幼苗的气孔导度在浇水后增加了37%,在施用气孔关闭抗蒸腾剂后降低了58%至68%,在施用气孔涂层+气孔关闭抗蒸腾剂后降低了42%至45%。在本研究中,在移植商用气孔关闭抗蒸腾剂或气孔涂层+气孔关闭抗蒸腾剂前1天施用,嫁接的“TriX Palomar”移植体的存活率提高了近30%。嫁接成功率的增加很可能是由于在嫁接前向幼苗施用气孔关闭抗蒸腾剂时,蒸腾作用减少。

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