Rahman Md Hafizur, Azad Md Obyedul Kalam, Islam Md Jahirul, Rana Md Soyel, Li Kui-Hua, Lim Young Seok
Department of Bio-Health Convergence, Kangwon National University, Chuncheon 24341, Korea.
Physiology and Sugar Chemistry Division, Bangladesh Sugar Crop Research Institute, Ishurdi, Pabna 6620, Bangladesh.
Plants (Basel). 2021 Feb 4;10(2):297. doi: 10.3390/plants10020297.
Plant production in a plant factory is an innovative and smart idea to grow food anytime, anywhere, regardless of the outer environment. However, potato pre-basic seed tuber (PBST) production in a plant factory is a comparatively new initiative. Therefore, the aim of this study was to optimize the artificial LED light spectrum to produce PBST in a plant factory. Two potato varieties such as Golden king (V48) and Chungang (V41) were grown in soil substrate under different combination of artificial LED light combinations (such as red+blue+far-red, red+blue+white, blue+far-red, blue+white, red+far-red, and red+white) maintaining photosynthetic photon flux density (PPFD) of 100 mol ms, temperature 23/15 °C (day/night), and relative humidity 70%. The study revealed that, overall, potato plant growth (viz.; plant height, node number, leaf number, leaf length and width, fresh and dry weight) was enhanced by the red+far red light for both potato varieties. The total seed tuber number per plant was higher in red+blue+white light for V48, and red+far-red for V41. The fresh tuber weight was the highest in the red+blue+far-red light for V48 and red+blue+white for V41. The highest accumulated photosynthetic pigment (total Chlorophyll, Chlorophyll a, b and Carotenoid) was observed in red+blue+white light for both varieties. The total carbohydrate content and total sucrose content were higher in red+blue+far red and red +far red light treatment for V48 and V41, respectively. Finally, considering all factors, it is concluded that the red+blue+white light combination is deemed to be appropriate for the potato PBST production in plant factory conditions.
植物工厂中的植物生产是一种创新且智能的理念,无论外部环境如何,都能随时随地种植食物。然而,在植物工厂中生产马铃薯预基础种薯(PBST)是一项相对较新的举措。因此,本研究的目的是优化人工LED光谱,以便在植物工厂中生产PBST。选用两个马铃薯品种,即金冠(V48)和春港(V41),种植于土壤基质中,采用不同组合的人工LED光(如红+蓝+远红、红+蓝+白、蓝+远红、蓝+白、红+远红和红+白),保持光合光子通量密度(PPFD)为100 μmol m⁻² s⁻¹、温度23/15 °C(昼/夜)以及相对湿度70%。研究表明,总体而言,对于两个马铃薯品种,红+远红光均能促进马铃薯植株生长(即株高、节数、叶片数、叶长和叶宽、鲜重和干重)。V48在红+蓝+白光下每株的种薯总数较高,V41在红+远红光下每株的种薯总数较高。V48在红+蓝+远红光下鲜薯重量最高,V41在红+蓝+白光下鲜薯重量最高。两个品种在红+蓝+白光下光合色素(总叶绿素、叶绿素a、b和类胡萝卜素)的积累量均最高。V48在红+蓝+远红光处理下总碳水化合物含量较高,V41在红+远红光处理下总蔗糖含量较高。最后,综合考虑所有因素得出结论,红+蓝+白光组合被认为适合在植物工厂条件下生产马铃薯PBST。