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Effect of Ultrafine Bubbles in Nutrient Solutions on the Growth of Different Lettuce Varieties

Effect of Ultrafine Bubbles in Nutrient Solutions on the Growth of Different Lettuce Varieties

Effect of Ultrafine Bubbles in Nutrient Solutions on the Growth of Different Lettuce
Varieties Cultivated in a Controlled Plant Factory Environment 
 

https://www.jstage.jst.go.jp/article/ecb/63/1/63_21/_pdf/-char/en

 The growth of different lettuce varieties in response to the application 

of ultrafine bubbles (UFB) was investigated inside
a plant factory with artificial light (PFAL). Six different types of lettuce

 (greenwave, frilly, green leaf, butterhead, romaine,
and lamb lettuce) were cultivated under UFB and control treatments using

 a deep flow technique (DFT) hydroponic system.
As a result, the effect of UFB treatment was found to vary depending on

 the type of lettuce cultivar. UFB treatment was found
to promote growth in greenwave, frilly, and romaine lettuce but not in 

green leaf, butterhead, or lamb lettuce. Compared to
the control treatment, the temperature of the nutrient solution and the 

dissolved oxygen (DO) concentration were higher by
1.61 degC and 59.5% in the UFB treatment, respectively. These findings suggest

 that an increased temperature and a high DO
content during UFB generation are factors that enhance lettuce growth. Taken

 together, these results indicate that the
application of UFB in the DFT hydroponic culture system can significantly promote

 lettuce growth in PFAL .

The promotional effects of UFB treatment in nutrient
solutions were found to be dependent on the variety of
lettuce. Among the six varieties of lettuce used in this
study, UFB treatment was observed to promote the growth
of Greenwave, Frilly, and Romaine lettuce in PFAL. The
attributes of UFB treatment, including a slight increase in
temperature and an elevation in DO levels in the nutrient
solution, were presumed to contribute to the promotional
effect of UFB. However, a comprehensive explanation of
the variation in growth response among lettuce plant varieties

 to UFB application remains unclear. In addition, a previous study 

suggested that the concentration of UFB in solution dictates whether

 it has a promoting or suppressing effect on crop growth, depending

 on the crop species (Iijima et al., 2022). Therefore, it is suggested that

 not only the attribute of UFB treatment but also the differences in
endogenous ROS thresholds and growth regulator synthesis among

 crop species are likely influenced by the presence of UFB in nutrient solutions.

 Consequently, these variations contribute to the differing growth responses of
various lettuce species to UFB application in nutrient solutions. Further experiments

 will be necessary to determine the optimum  UFB application for different crop

 species to achieve better growth and to elucidate how UFB accelerates lettuce 

growth, which are crucial for optimizing the application of UFB in PFAL 
 

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2-7-1 Shiranui-machi, Omuta-city, Fukuoka 836-0843 JAPAN+81-944-55-3335nakashima.sales@nakashimabussan.co.jp
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2-7-1 Shiranui-machi, Omuta-city, Fukuoka 836-0843 JAPAN+81-944-55-3335nakashima.sales@nakashimabussan.co.jp
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