Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Exploring optimal soil moisture for seedling tomatoes using thermal infrared imaging and chlorophyll fluorescence techniques

作者:Haolin Yang, Lin Wang, Xiaolei Zhang, Yinyan Shi, Yao Wu, Ye Jiang, Xiaochan Wang · 发表于:Scientia Horticulturae · 年份:2024 · DOI:10.1016/j.scienta.2024.113846 · 被引用次数:10 · 研究领域:Leaf Properties and Growth Measurement、Greenhouse Technology and Climate Control、Spectroscopy and Chemometric Analyses

• Effects of various soil moisture contents was investigated on tomato seedlings. • Dynamically characterize and visualize the changes in plant canopy temperature when leaves suffer from water stress. • Characterized the morphological and physiological changes of tomato seedlings. • Provided a theoretical basis for mitigating heat-induced damage. Understanding the distribution of plant moisture during the seedling stage of greenhouse crops is challenge in developing scientific irrigation strategies and proposing effective cooling methods. This study investigated the effects of different soil moisture contents [W1: 25–35 % (severe drought), W2: 35–45 % (mild drought), W3: 45–55 % (suitable moisture), and W4: 55–65 % (excess moisture)] on tomato seedlings under summer greenhouse thermic extremes. Furthermore, thermal infrared imaging and chlorophyll fluorescence multi-dimensional digital image sensors were used to determine differences in tomato seedling morphology and plant physiology. The increase in canopy area under W1 and W4 soil moisture content was smaller than that of W2 and W3, and the canopy area of the W1 group decreased as the high temperature condition continued. The average canopy temperature of each treatment generally increased first, and then plateaued. From high to low, average temperatures were 28.15℃ in W1, 27.73℃ in W4, 26.67℃ in W2, and 25.72℃ in W3. The canopy temperature gradually decreased from the middle to the edge of the leaf (stem temperature > leaf...