from Hanabanilla was mainly in early
vegetative stage. In contrast, some
morphological characters which are
indicators of later growth stage such as
red-brownish trichomes and hormogonia were present in high abundance in
a previous L. robusta bloom from Hanabanilla reservoir [5].
L. robusta occurred in high densities (average of 9.0 x 106 cells mL-1, and
chlorophyll-a of 18.9 μg L-1), an almost
monospecific bloom; similar to the
previous bloom of this species in the
Hanabanilla reservoir during 2014 [5].
Environmental conditions, such as high
stability in the water column during the
dry period, were favorable for the start
of the cyanobacteria bloom although
nutrient levels were below the detection limit (N-NO2- <0,005 mg L-1, N-NO3<0,01461 mg L-1, N-NH4+ <0,01 mg L-1,
P-PO43- <0,05 mg L-1).
Despite L. robusta not being a toxic
species and there was no apparent
damage in the reservoir during this
event, blooms of this cyanobacteria
could cause environmental problems in
the future.
Acknowledgements
Fig. 3. Light micrographs of Limnoraphis robusta trichomes. A. Vegetative trichomes, arrow indicate
the presence of a mucilaginous sheath. B. Trichome with hormogonia. Scale bars = 20 um.
References
1. Carmichael WW 1992. Appl Bacteriology
72: 445-479
2. Carmichael WW & IR Falconer1993. Academic Press, New York, p. 187-209
3. Huisman J et al 2018. Nat Rev Microbiol
16: 471-483
4. Paerl HW & J Huisman 2008. Science
320: 5758
5. Comas A et al 2017. An Biol 39: 1-6
6. Komárek J et al 2013. Fottea 13: 39-52
Authors
Aimee Valle-Pombrol, Augusto ComasGonzález, Angel R. Moreira-González,
Minerva Sánchez-Llull & Yanelis Cubela
Rodríguez, Centro de Estudios Ambientales
de Cienfuegos (CEAC), Carretera a Castillo de
Jagua, Km 1.5, AP.5, Ciudad Nuclear 59350,
Cienfuegos, Cuba
Email corresponding author:
aimeevallepombrol@gmail.com
This study was funded by the Ministry of Science, Technology and Environment of Cuba (CITMA), and by the
IWECO project (GEF/PNUD program).
IOCARIBE HAB-ANCA launches the HAB
Virtual Course in 360 virtual reality
This course is an immersive and interactive hands-on laboratory and sampling experience to learn about HABs.
The App is a support for laboratory
practices that encourages user autonomy, allowing them to learn at their own
pace and anywhere.
The user only needs a mobile device
and internet access to download the
content. The App can be used in online
and offline mode.
The course is designed in three
learning paths: (1) Summary and Context; (2) Sampling and (3) Microscopic
16
observation. Additionally, it includes
the calculation of an aerobic mortality
risk indicator IRMA. This index developed to forecast the mass mortality of
fish due to anoxia in a tropical coastal
lagoon, corresponds to a eutrophication
index, and is based on the concentration
of three variables: dissolved inorganic
phosphorus, chlorophyll and dissolved
oxygen.
This HAB 360 course is a development led by IOCARIBE HAB ANCA, in
alliance with the National University of
Colombia, INVEMAR and the spin-off
Nova Transmedia. It is a completely free
course, for the moment only in Spanish.
It can be downloaded from Google Play:
Florecimientos Algales Nocivos FAN.
Authors
José Ernesto Mancera-Pineda. Vicechair of
the IOC-IOCARIBE WG ANCA. Universidad
Nacional de Colombia. Bogotá, Avenida El
Dorado No. 44a 40.
Edgar Arteaga. Scientific researcher. INVEMAR.
Julian Franco-Angulo. Scientific researcher.
INVEMAR.
Luis Felipe Santos. Universidad Nacional de
Colombia
Email corresponding author:
jemancerap@unal.edu.co
HARMFUL ALGAE NEWS NO. 70 / 20221
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age basin and is a major source of European winter vegetable production. But the transferred water resources, clearly insufficient to sustain such production, had to be complemented with aquifers that had suffered previous overexploitation and became brackish. These brackish aquifers needed treating
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