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首页> 外文期刊>HortTechnology >An Alternative Healing Method for Grafted Tomato Transplants: The Effect of Light Exclusion and Substrate Temperature on Plant Survival and Growth
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An Alternative Healing Method for Grafted Tomato Transplants: The Effect of Light Exclusion and Substrate Temperature on Plant Survival and Growth

机译:嫁接番茄移植的另一种愈合方法:光排斥和衬底温度对植物存活和生长的影响

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The use of tomato (Solanum lycopersicum) grafting is gaining traction across the United States, but small-scale growers face the challenge of creating optimum postgrafting healing conditions. The practice of blocking light for a period of 2 to 4 days while maintaining high humidity is commonly recommended for healing grafted tomato transplants; however, research is exploring alternatives to this practice. The present study investigated a low-input healing method for grafted tomato transplants with a specific focus on light and the use of propagation heat mats to regulate substrate and healing chamber air temperatures during the 7-day healing process. We hypothesized that 4 days of light exclusion and the use of propagation heat mats would improve grafted tomato transplant survival and growth. 'Cherokee Purple' was used as the scion and 'RST-04-106-T' was used as the rootstock. The whole plot factor was heat [propagation mats set at 80 degrees F (heat) or no propagation mat (no heat)] and the subplot factor was light exclusion (0, 4, or 6 days of dark). The highest survival rate among treatments was 97% in 0 days of dark with no heat treatment; survival decreased to 84% in 4 and 6 days of dark with no heat treatments. The plant survival rate was 96% with 0 days of dark and heat treatment; however, the survival rates were 63% and 45% for the 4- and 6-day dark treatments, respectively. The scion stem diameter was largest for transplants grown in 0 days of dark, but there was no difference in stem diameter due to heat treatments. There were no differences among scion or rootstock biomasses due to heat or light treatments. These results demonstrate that propagation mats set at 80 degrees F to regulate the substrate temperature were detrimental to grafted transplant survival under extended periods of light exclusion. However, this finding creates the basis to explore lower levels of substrate temperature modification. Our work also indicates that light exclusion may not be necessary for healing grafted tomato plants regardless of root-zone temperature treatments. Future work should examine the interactions of various substrate and air temperatures under full light conditions and their effects on grafted tomato transplant survival and growth. This work contributes to the ongoing research of how to optimize low-input healing methods that may be readily adopted by small-scale tomato growers.
机译:番茄(Solanum lycopersicum)嫁接在美国各地得到了广泛应用,但小规模种植者面临着创造最佳嫁接后愈合条件的挑战。通常建议在保持高湿度的同时遮光2至4天,以修复嫁接番茄移植;然而,研究正在探索这种做法的替代方案。本研究调查了嫁接番茄移植的低输入愈合方法,特别关注光照,并在7天愈合过程中使用繁殖热垫调节基质和愈合室空气温度。我们假设,4天的避光和繁殖热垫的使用将提高嫁接番茄的存活和生长“切诺基紫”用作接穗,“RST-04-106-T”用作砧木。整个绘图因子为热[繁殖垫设置为80华氏度(热)或无繁殖垫(无热)],子绘图因子为光排除(0、4或6天黑暗)。在没有热处理的黑暗环境中,各处理的最高存活率为97%;在没有热处理的情况下,黑暗4天和6天的存活率下降到84%。暗处理和热处理0天的植株成活率为96%;然而,4天和6天黑暗处理的存活率分别为63%和45%。在0天黑暗中生长的移植植株的接穗茎直径最大,但由于热处理,茎直径没有差异。由于热处理或光处理,接穗或砧木生物量没有差异。这些结果表明,设置在80华氏度的繁殖垫来调节基质温度,在长时间的光排斥下不利于嫁接移植存活。然而,这一发现为探索较低水平的衬底温度改性奠定了基础。我们的研究还表明,无论根区温度如何处理,光排斥对嫁接番茄植株的愈合可能不是必需的。未来的工作应该研究各种基质和空气温度在全光照条件下的相互作用,以及它们对嫁接番茄移植存活和生长的影响。这项工作有助于正在进行的关于如何优化小规模番茄种植者容易采用的低投入愈合方法的研究。

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