Sufficient Light Intensity Is Required for the Drought Responses in Sweet Basil (Ocimum basilicum L.)

Agronomy Pub Date : 2024-09-15 DOI:10.3390/agronomy14092101
Gyeongmin Lee, Jongyun Kim
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Abstract

Various environmental factors not only affect plant growth and physiological responses individually but also interact with each other. To examine the impact of light intensity on the drought responses of sweet basil, plants were subjected to maintenance of two substrate volumetric water contents (VWC) using a sensor-based automated irrigation system under two distinct light intensities. The VWC threshold was set to either a dry (0.2 m3·m−3) or sufficiently wet condition (0.6 m3·m−3) under low (170 μmol·m−2·s−1) or high light intensities (500 μmol·m−2·s−1). The growth and physiological responses of sweet basil (Ocimum basilicum L.) were observed over 21 days in the four treatment groups, where the combination of two environmental factors was analyzed. Under high light intensity, sweet basil showed lower Fv/Fm and quantum yield of PSII, compared to that under low light intensity, regardless of drought treatment. Fourteen days after drought treatment under high light intensity, stomatal conductance and the photosynthetic rate significantly reduced. Whereas plants under low light intensity showed similar stomatal conductance and photosynthetic rates regardless of drought treatment. Assessment of shoot and root dry weights revealed that plant growth decline caused by drought was more pronounced under high light intensity than under low light intensity. Thus, sweet basil showed significant declines in growth and physiological responses owing to drought only under high light intensity; no significant changes were observed under low light intensity.
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甜罗勒(Ocimum basilicum L.)的干旱反应需要足够的光照强度
各种环境因素不仅会单独影响植物的生长和生理反应,还会相互影响。为了研究光照强度对甜罗勒干旱反应的影响,在两种不同的光照强度下,使用基于传感器的自动灌溉系统对植物进行了两种基质体积含水量(VWC)的维持试验。在低光照强度(170 μmol-m-2-s-1)或高光照强度(500 μmol-m-2-s-1)条件下,将 VWC 临界值设定为干燥(0.2 m3-m-3)或充分湿润(0.6 m3-m-3)。在四个处理组中,对甜罗勒(Ocimum basilicum L.)的生长和生理反应进行了 21 天的观察,并对两种环境因素的组合进行了分析。在高光照强度下,与低光照强度下相比,无论干旱处理与否,甜罗勒都表现出较低的 Fv/Fm 和 PSII 的量子产率。高光照强度下干旱处理 14 天后,气孔导度和光合速率显著降低。而在低光照强度下,无论干旱处理与否,植物的气孔导度和光合速率都相似。对嫩枝和根部干重的评估表明,干旱导致的植株生长衰退在高光照强度下比低光照强度下更为明显。因此,只有在高光照强度下,甜罗勒的生长和生理反应才会因干旱而显著下降;在低光照强度下,则没有观察到显著变化。
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