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苗期供液模式对植物工厂水培生菜生长的影响

Effects of irrigation mode on the growth of hydroponic lettuce in plant factory

  • 摘要: 为筑牢幼苗基础,加快定植后植物生长速度,提升资源利用效率,该研究以壮苗培育为目标,开展不同苗期供液模式研究。试验设置深层供液(deep liquid, DL)和雾培供液(aeroponic, AE)2种苗期供液模式处理,以常用浅层供液为对照(low liquid, CK),对比3种苗期供液模式对生菜育苗效果及定植后生长的影响。结果表明:DL处理下幼苗茎粗、叶面积、叶片数、地上部鲜质量、地下部鲜质量、地上部干质量、总根长、根系表面积、根系体积、分支数和壮苗指数均为最高。其中,DL处理叶面积较CK和AE处理分别提高41.7%和23.7%,地上部鲜质量较CK和AE处理均显著提高40.0%,壮苗指数较CK和AE处理分别显著增长143.3%和51.5%(P<0.05)。AE处理根系平均直径较CK显著提高16.7%,根系活力较DL处理显著提高54.4%(P<0.05)。各处理下的幼苗定植28 d后,DL处理幼苗的生长优势得以延续,其地上部鲜质量较CK和AE处理分别显著提高55.1%和42.9%,根系表面积、根系体积和根尖数较CK分别显著提高24.4%、40.7%和58.0%(P<0.05)。相关性分析表明,除根系平均直径外,其余各根系形态指标均与定植28 d后地上部鲜质量呈高度正相关。其中,总根长、根系表面积、根系体积和分支数均与地上部鲜质量呈极显著正相关(P<0.01),根尖数与地上部鲜质量呈显著正相关(P<0.05)。综上所述,深层供液育苗能够大幅促进幼苗根系生物量积累并提升壮苗指数,提高植株定值后地上部鲜质量及资源利用效率,为提高植物工厂经济效益奠定了基础。

     

    Abstract: High-quality seedlings can greatly contribute to optimal plant growth, crop yield, and the overall efficiency of plant production. The ever-increasing demand has often required for high-quality seedlings in recent years, with the rapid development of the plant factories. Among them, the roots are the most significant organ of the seedlings to uptake nutrients and water. More extensive root biomass accumulation has been widely characterized by strong seedlings. Taking the accumulation of root biomass as the main objective, this evaluation criteria can be expected to be selected for the strong seedlings. This research aims to clarify the effects of the irrigation mode on strong seedling cultivation and growth after transplanting of hydroponic lettuce in LED plant factories. Two irrigation modes (deep liquid (DL) and aeroponic (AE)) were set for seedlings. DL mode was used to maintain a nutrient solution depth of 90 mm to support root growth. AE mode set the height of root growth space at 198 mm and sprayed nutrient solution for 15 s every 10 min. The most commonly used low liquid was taken as the control group (CK), with only a 20mm depth of nutrient solution for root growth. A comparison was made to explore the effects of the irrigation mode on the lettuce growth during seedling after transplanting. The results showed that the depth of the nutrient solution around lettuce roots significantly enhanced the seedling root biomass accumulation and shoot fresh weight. Specifically, the DL shared the highest diameter of the seedling stem, leaf area, true leaf number, shoot fresh weight, root fresh weight, shoot dry weight, total root length, root surface area, root volume, forks, and seedling index. Furthermore, the DL mode significantly improved the leaf area by 41.7% and 23.7%, and the root fresh weight by 50.0% and 36.4%, respectively (P<0.05), compared with the CK and AE. Shoot fresh weight of the DL mode was significantly promoted by 40.0% (P<0.05). The DL mode significantly improved the total root length by 34.9% and 60.4%, and the root surface area by 42.6% and 45.7%, respectively. Additionally, the DL shared the highest root morphology, except for the root average diameter and root tips. The root average diameter of the AE was significantly improved by 16.7% (P<0.05), compared with the CK. There was no significant difference from the DL. In the seedling index, the DL shared the highest value with increases of 143.3% and 51.5%, compared with the CK and AE, respectively. The root activity of AE was significantly increased by 54.4%, compared with the DL. The largest canopy of the DL was found with a growth advantage 28 days after transplanting. The shoot fresh weight significantly increased by 55.1% and 42.9%, respectively, compared with the CK and AE (P<0.05). Furthermore, the root surface area, root volume, and root tips also significantly increased by 24.4%, 40.7%, and 58.0%, compared with the CK (P<0.05). The correlation analysis showed that the shoot fresh weight 28 days after transplanting was highly positively correlated with the seedling root morphology, except for the root average diameter. Specifically, the total root length, root surface area, root volume, and forks were extremely significantly correlated with the shoot fresh weight (P<0.01), while the root tips were significantly positively correlated with the shoot fresh weight (P<0.05). In summary, the deep liquid significantly promoted strong seedling cultivation for the shoot fresh weight. A suitable irrigation mode can be expected to serve as the lettuce production for the economic benefits in the production of plant factories. Furthermore, the aeroponic also showed potential for strong seedling cultivation. It is necessary to develop special devices for seedling cultivation in sustainable agriculture.

     

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