Literature DB >> 11541575

Biomass accumulation in hydroponically grown sweetpotato in a controlled environment: a preliminary study.

J Hill1, D Douglas, P David, D Mortley, A Trotman, C Bonsi.   

Abstract

In the development of a plant growth model, the assumptions made and the general equations representing an understanding of plant growth are gradually refined as more information is acquired through experimentation. One such experiment that contributed to sweetpotato model development consisted of measuring biomass accumulation of sweetpotato grown in hydroponic culture in a plant growth chamber. Plants were started from fifteen centimeter long 'TU-82-155' sweetpotato vine cuttings spaced 25 cm apart in each of 18 rectangular growing channels (0.15 by 0.15 by 1.2m) in a system designed to use the nutrient film technique (NFT). Each channel contained four plants. The 3.5m by 5.2m plant growth chamber environmental parameters included an 18h photoperiod, 500 micromoles m-2 s-1 of photosynthetic photon flux (PPF), and a diurnal light/dark temperature of 28 degrees C/22 degrees C. The relative humidity was 80 +/- 5% and the CO2 partial pressure was ambient (350 ppm). The nutrient solution contained in 30L reservoirs was a modified half Hoagland's solution with a 1:2.4 N:K ratio and a pH of 6.2. Solution replenishment occurred when the electrical conductivity (EC) level dropped below 1050. Plants were harvested at 15 days after planting (DAP) and weekly thereafter until day 134. By 57 DAP, stems and fibrous roots had acquired 90% of their total dry biomass, while leaves had reached 84% of their maximum dry biomass. Beginning at 64 DAP dry biomass accumulation in the storage roots dominated the increase in dry biomass for the plants. Dry weight of storage roots at 120 DAP was 165 g/plant or 1.1 kg/m2. Resulting growth curves were consistent with the physiological processes occurring in the plant. Results from this study will be incorporated in a plant growth model for use in conjunction with controlled life support systems for long-term manned space missions.

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Year:  1996        PMID: 11541575     DOI: 10.17660/actahortic.1996.440.5

Source DB:  PubMed          Journal:  Acta Hortic        ISSN: 0567-7572


  3 in total

1.  SRD1 is involved in the auxin-mediated initial thickening growth of storage root by enhancing proliferation of metaxylem and cambium cells in sweetpotato (Ipomoea batatas).

Authors:  Seol Ah Noh; Haeng-Soon Lee; Eun Joo Huh; Gyung Hye Huh; Kyung-Hee Paek; Jeong Sheop Shin; Jung Myung Bae
Journal:  J Exp Bot       Date:  2010-02-11       Impact factor: 6.992

2.  Temporal patterns of gene expression associated with tuberous root formation and development in sweetpotato (Ipomoea batatas).

Authors:  Zhangying Wang; Boping Fang; Xinliang Chen; Minghuan Liao; Jingyi Chen; Xiongjian Zhang; Lifei Huang; Zhongxia Luo; Zhufang Yao; Yujun Li
Journal:  BMC Plant Biol       Date:  2015-07-16       Impact factor: 4.215

3.  Down-regulation of the IbEXP1 gene enhanced storage root development in sweetpotato.

Authors:  Seol Ah Noh; Haeng-Soon Lee; Youn-Sung Kim; Kyung-Hee Paek; Jeong Sheop Shin; Jung Myung Bae
Journal:  J Exp Bot       Date:  2012-09-03       Impact factor: 6.992

  3 in total

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