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    题名 作者 年代 出处 被引量
1Photoautotrophic Growth and Net Photosynthetic Rate of Sweet Potato Plantlets In Vitro as Affected by the Number of Air Exchanges of the Vessel and Type of Supporting Material显示文摘To produce high-quality sweet potato plantlets rapidly at low production costs, single nodal leafy cuttings of sweet potato (Ipomoea batatas (L.) Lam.) plantlets were cultured in vitro for 14 days on sugar- and phytohormone-free Murashige and Skoog (MS) liquid medium, at a photosynthetic photon flux (PPF) of 200 μmol·m?2·s?1 and a CO2 concentration (v/v) of 1.8×10?3. A factorial experiment was conducted with two levels of the number of air exchanges of the vessel (NAE), 8.7-12.2 h?1 and >12.2 h?1, and two types of supporting material, vermiculite and Florialite (a porous material). The control treatment consisted of a pho-tomixotrophic culture using a sugar- and NAA-containing agar MS medium with an NAE of 2.4 h?1. PPF and CO2 concentrations were the same as the photoautotrophic treatments. In comparison with the control treatment, the photoautotrophic treatments with NAE of 8.7-12.2 h?1 (MF treatment) and ≥12.2 h?1 (HF treatment) were, respectively, 2.2 and 2.8 times in dry weight, and 3.7 and 4.2 times in net photosynthetic rate, when Florialite was used. The survival percentages of the plantlets in the field were, respectively, 86% and 97% in the MF and HF treatments, and 35% and 46% higher than that in the control treatment. The plantlets cultured with Florialite showed greater growth, compared with those cultured with vermiculite. Photoautotrophic micropropagation system with high NAE and the use of porous supporting material can produce high-quality plantlets and make it possible to reduce production costs.肖玉兰 Kozai Toyoki 2006Tsinghua Science and Technology2006,11,4:3
2Evaluation Method for Offshore Wind Energy Resources Using Scatterometer and Weibull Parameters显示文摘Katsutoshi Kozai Teruo Ohsawa Rinya Takahashi Yuko Takeyama 2012Journal of Energy and Power Engineering2012,6,11:2
3Towards sustainable plant factories with artificial lighting (PFALs) for achieving SDGs显示文摘The challenges and opportunities for developing sustainable plant factories with artificial lighting(PFALs)are discussed.After examining the production cost and productivity of existing PFALs in Japan,the possibility of introducing a relatively new concept and methodology for considerably improving productivity are discussed in relation to environmental controllability and resource use efficiencies.The fundamental and potential characteristics of ideal or next-generation PFALs(n-PFALs)are then discussed with some suggestions for actualizing n-PFALs.Finally,perspectives of the n-PFALs and technologies to be integrated into the n-PFALs are presented in relation to the Sustainable Development Goals(SDGs)to be achieved by 2030.Toyoki Kozai 2019International Journal of Agricultural and Biological Engineering2019,12,5:2
4Estimating the air exchange rate using water vapour as a tracer gas in a semi-closed growth chamber显示文摘Ming Li Toyoki Kozai Genhua Niu Michiko Takagaki 2012Biosystems Engineering2012,,1:2
5Manipulation of photoperiod and light intensity in low-temperature storage of egg- plant plug seedings 显示文摘Kubota C Seiyama S Kozai T 2002Scientia Horticulturae2002,94,:1
6Effect of the sideward lighting on the growth and morphology of potato plantlets in vitro显示文摘Makio hayashi Toyoki Kozai Manabu Ochial 1994Journal of Shita1994,5,2:1
7On the determination of the overall heat transmission coefficient and soil heat flux for a fog cooled,naturally ventilated greenhouse:Analysis of radiation and convection heat transfer显示文摘Ahmed M Abdel-Ghany Yoyoki Kozai 2006Energy Conversion and Management2006,47,:1
8Growth and Net Photosynthetic Rate of SolanumTuberosum in vitro under Forced Ventilation显示文摘Kubota C Kozai T 1992HortScienee1992,27,:1
9Growth suppression and quality preservation of eggplant plug seedlings by low temperature storage under dim light显示文摘Kozai T Kubota C Sakami K 1996Environ Control in Biol1996,34,:1
10Cooling Efficiency of Fogging Systems for Greenhouses 显示文摘Abdel - Ghany A M Kozai T 2006Biosystems Enginneering2006,94,1:1
11Sucrose and light effects on in vitro cultures of potato, chokecherry and saskatoon berry during low temperature storage 显示文摘Pruski K Kozai T Lewis T 2000Plant Cell Tissue and Organ Culture2000,63,:1
12Number of air exchanges,sucrose concenteation, photosynthetic photon flux,and differences in photoperiod and dark period temperatures affect growth of glutinosa plantlets in vitro显示文摘Cui Yongyi Eun-Joo Hahn Toyoki Kozai 2000Plant Cell Tissue and Organ Culture2000,62,:1
13Effects of CO2 enrichment and supporting materialin vitro on photoautotrophic growth ofEucalyptus plantletsin vitro andex vitro显示文摘C. Kirdmanee Y. Kitaya T. Kozai In Vitro Cellular & Developmental Biology - Plant0,,:1
14Effects of ciitrate,NTA,and EDTA on the reduction of U(VI)by Shewanella putrefaciens显示文摘SUZUKI Y TANAKA K KOZAI N 2010Geomicrobiology Journal2010,27,3:1
15Enhancing Fog Evaporation Rate using an Upward Air Stream to improve Green- house Cooling Performance 显示文摘Toida H Kozai T Ohyama K 2006Biosystems Enginneering2006,93,2:1
16Simulation of the time of CO2 concentration in the culture vessel and net photosynthetic rate of Cymbidium plantlets显示文摘Niu G Kozai T Kitaya Y 1996Transactions of the ASAE1996,39,4:1
17Superelective clay for radium uptake 显示文摘 Naofumi Kozai William J Paulus 2001Nature2001,410,:1
18Influence of preodnisolone-induced ost Eoporosis on bone mass and bone quality of the mandible in rats显示文摘Kozai Y Kawamata R Sakurai T 2009Dento Maxillofac Radiol2009,38,1:1
19Statin prevents tissue factor expression in human endothelial cells:role of Rho/Rho-kinase and Akt pathways显示文摘Eto M Kozai T Cosentino F 2002Circulation2002,105,:1
20Environmental control for the large-scale production of plants through in vitro techniques显示文摘Kozai T Kubota C Jeong B R 1997Plant Cell Tissue and Organ Culture1997,51,:1
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