A big image opens when the thumbnail is clicked.(nies-0687.jpg)
Strain number NIES-687  
Phylum Chlorophyta  
Class Chlorophyceae  
Scientific name Graesiella emersonii (Shihira & Krauss) Nozaki et al.  
Synonym Chlorella emersonii Shihira & Krauss; Chlorella fusca Shihira & Krauss var. vacuolata Shihira & Krauss; Graesiella vacuolata (Shihira & Krauss) Kalina & Puncochárová  
Former name Chlorella fusca Shihira et Krauss var. vacuolata Shihira et Krauss (in IAM)  
Common name Green alga  
Locality (Date of collection) Pennsylvania, USA (1923-**-**)  
Latitude / Longitude  
Habitat (Isolation source)  
History < Katagiri, Masayuki < CCAP  
Isolator (Date of isolation) Emerson, R. (1923-**-**)  
Identified by Nozaki, Hisayoshi et al. (Reidentify)  
State of strain Cryopreservation; Unialgal; Clonal; Axenic[2018 May]  
Culture condition
(Preculture condition)
Medium:  C (agar)  
Temperature:  20 (25) C
Light intensity:  4-10 (14-16) µmol photons/m2/sec, L/D cycle:  10L:14D
Duration:  3 M (21 D)  
Gene information  
Cell size (min - max) - 8 μm  
Organization Unicellular 
Characteristics Starch production (Miyachi et al. 1986) ; Authentic strain of Chlorella fusca var. vacuolata Shihira & Krauss (Shihira & R.W.Krauss 1965)  
Other strain no. Other collection strain no. : CCAP 211/8B; IAM C-104
Other strain no. : C-104  
Remarks Cryopreserved; Axenic 
Movie  
Reference
Mori, F., Erata, M., Watanabe, M. M. 2002 Cryopreservation of cyanobacteria and green algae in the NIES-Collection. Microbiol. Cult. Coll., 18, 45-55.
Keywords: cryopreservation; cyanobacteria; green algae; FDA staining method; NIES-Collection
Strain(s): 262932343538455156666874757778799597100105106107108109110111112120127128129130131132133134135137139144156158159162163164166167168171177186189192193197202204209210211212214215216217224226230231232242243244248259263287288290294295299300302303305306308309310312313329337338340341342349351359361362375378379380382384385390394396398419426427429430431433434436438440446448450451452456478479481503505506507509510523524527529530531532536538539540542546565570573575578579580581584592593594595596628630635638639640641642643644645647648649650652653655657658659660661662663664667672685686687688689694717718719722723726727729 

Nozaki, H., Katagiri, M., Nakagawa, M., Aizawa, K., Watanabe, M. M. 1995 Taxonomic re-examination of the two strains labeled Chlorella in the Microbial Culture Collection at the National Institute for Environmental Studies (NIES-Collection). Microbiol. Cult. Coll., 11, 11-18.
Keywords: Chlorella; Graesiella emersonii comb. nov.; green algae; morphology; taxonomy
Strain(s): 226686687688689 

Kessler, E. & Huss, V. A. R. 1992 Comparative physiology and biochemistry and taxonomic assignment of the Chlorella (Chlorophyceae) strains of the Culture Collection of the University of Texas at Austin. J. Phycol., 28, 550-553.
Keywords: chemotaxonomy; Chlorella; Chlorophyta; UTEX culture collection; utilization for research and biotechnology
Strain(s): 6866872150216021632169 
DOI: 10.1111/j.0022-3646.1992.00550.x

Maruyama, I., Ando, Y., Maeda, T., Hirayama, K. 1989 Uptake of vitamin B12 by various strains of unicellular algae Chlorella. Nippon Suisan Gakkaishi, 55, 1785-1790.
Strain(s): 22668721572169 

McKay, R. M. & Gibbs, S. P. 1989 Immunocytochemical localization of ribulose 1,5-bisphosphate carboxylase/oxygenase in light-limited and light-saturated cells of Chlorella pyrenoidosa. Protoplasma, 149, 31-37.
Keywords: pyrenoid; ribulose 1,5-bisphosphate carboxylase/oxygenase; Chlorella pyrenoidosa; immunocytochemistry
Strain(s): 687 

Komor, E., Cho, B.-H., Kraus, M. 1988 The occurrence of the glucose-inducible transport systems for glucose, proline, and arginine in different species of Chlorella. Botanica Acta, 101, 321-326.
Keywords: Amino acid transport; induction by glucose; Chlorella; classification
Strain(s): 6872150 
DOI: 10.1111/j.1438-8677.1988.tb00051.x

Gekeler, W., Grill, E., Winnacker, E.-L., Zenk, M. H. 1988 Algae sequester heavy metals via synthesis of phytochelatin complexes. Arch. Mikrobiol., 150, 197-202.
Strain(s): 687 
DOI: 10.1007/BF00425162

Miyachi, S., Tsuzuki, M., Maruyama, I., Ganter, M., Miyachi, S. 1986 Effects of CO2 concentration during growth on the intracellular structure of Chlorella and Scenedesmus (Chlorophyta). J. Phycol., 22, 313-319.
Keywords: Chlorella; CO2 concentration; electron microscopy; pyrenoid starch; Scenedesmus
Strain(s): 687215721602280 

Miyachi, S. & Miyachi, S. 1985 Ammonia induces starch degradation in Chlorella cells. Plant Cell Physiol., 26, 245-252.
Keywords: ammonia effect; Chlorella; dark CO2 fixation; starch degradation; sucrose formation
Strain(s): 68721572160 
DOI: 10.1093/oxfordjournals.pcp.a076903

Tsuzuki, M., Shimamoto, T., Yang, S. Y., Miyachi, S. 1984 Diversity in intracellular locality, nature, and function of carbonic anhydrase in verious plants. Ann. NY Acad. Sci., 429, 238-240.
Strain(s): 6872160216121622280 
DOI: 10.1111/j.1749-6632.1984.tb12341.x

Miyachi, S., Tsuzuki, M., Avramova, S. T. 1983 Utilization modes of inorganic carbon for photosynthesis in various species of Chlorella. Plant Cell Physiol., 24, 441-451.
Keywords: bicarbonate fixation; carbonic anhydrase; Chlorella; photosynthetic CO2-fixation
Strain(s): 687209321572160 

Hatano, S., Kabata, K., Sadakane, H. 1981 Transition of lipid synthesis from chloroplasts to a cytoplasmic system during hardening in Chlorella ellipsoidea. Plant Physiol., 67, 216-220.
Strain(s): 687 
PubMed: 16661649
DOI: 10.1104/pp.67.2.216

Maruyama, K. 1977 Classification of Chlorella strain by infrared absorption spectra of cell samples. Bot. Mag. Tokyo, 90, 67-77.
Strain(s): 2266856872163 
DOI: 10.1007/BF02489470

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