Baiyin Bateer, Tagawa Kotaro, Yamada Mina, Wang Xinyan, Yamada Satoshi, Shao Yang, An Ping, Yamamoto Sadahiro, Ibaraki Yasuomi
United Graduate School of Agricultural Sciences, Tottori University, Tottori 680-8550, Japan.
Faculty of Agriculture, Tottori University, Tottori 680-8553, Japan.
Plants (Basel). 2021 Sep 5;10(9):1840. doi: 10.3390/plants10091840.
Crop production under hydroponic environments has many advantages, yet the effects of solution flow rate on plant growth remain unclear. We conducted a hydroponic cultivation study using different flow rates under light-emitting diode lighting to investigate plant growth, nutrient uptake, and root morphology under different flow rates. Swiss chard plants were grown hydroponically under four nutrient solution flow rates (2 L/min, 4 L/min, 6 L/min, and 8 L/min). After 21 days, harvested plants were analyzed for root and shoot fresh weight, root and shoot dry weight, root morphology, and root cellulose and hemicellulose content. We found that suitable flow rates, acting as a eustress, gave the roots appropriate mechanical stimulation to promote root growth, absorb more nutrients, and increase overall plant growth. Conversely, excess flow rates acted as a distress that caused the roots to become compact and inhibited root surface area and root growth. Excess flow rate thereby resulted in a lower root surface area that translated to reduced nutrient ion absorption and poorer plant growth compared with plans cultured under a suitable flow rate. Our results indicate that regulating flow rate can regulate plant thigmomorphogenesis and nutrient uptake, ultimately affecting hydroponic crop quality.
水培环境下的作物生产有许多优点,但溶液流速对植物生长的影响仍不明确。我们在发光二极管照明下使用不同流速进行了水培栽培研究,以调查不同流速下的植物生长、养分吸收和根系形态。瑞士甜菜植株在四种营养液流速(2升/分钟、4升/分钟、6升/分钟和8升/分钟)下进行水培生长。21天后,对收获的植株进行根系和地上部鲜重、根系和地上部干重、根系形态以及根系纤维素和半纤维素含量的分析。我们发现,合适的流速作为一种适度应激,能给根系适当的机械刺激,促进根系生长,吸收更多养分,并增加植株整体生长。相反,过高的流速则成为一种逆境胁迫,导致根系变得致密,抑制根表面积和根系生长。因此,过高的流速导致根表面积降低,与在合适流速下培养的植株相比,养分离子吸收减少,植株生长较差。我们的结果表明,调节流速可以调节植物的形态建成和养分吸收,最终影响水培作物的品质。