By Rex L. Lowe (auth.), R. Jan Stevenson, Yangdong Pan, J. Patrick Kociolek, John C. Kingston (eds.)
Advances in Algal Biology: A Commemoration of the paintings of Rex Lowe was written by way of scholars and associates of Rex Lowe to recognize his esteemed occupation that incorporated unparalleled contributions to investigate and instructing. Papers within the publication conceal quite a few issues in algal ecology, concentrating on benthic algal ecology in freshwater ecosystems. The reports supply an strange mix of small-scale experiments and large-scale nearby surveys that bridge either uncomplicated and utilized ecology. Ecologists, limnologists, phycologists, and environmental scientists will locate helpful contributions to the advance and alertness of algal study.
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Extra resources for Advances in Algal Biology: A Commemoration of the Work of Rex Lowe
Bold, H. C. & M. J. Wynne, 1978. Introduction to the Algae. Prentice-Hall, Englewood Cliﬀs, New Jersey, 706 pp. , V. R. Flechtner & J. R. Johansen, 2001. Is the 16S–23S rRNA internal transcribed spacer region a good tool for use in molecular systematics and population genetics? A case study in cyanobacteria. Molecular Biology and Evolution 18: 1057–1069. , J. R. Johansen & V. R. Flechtner, 2002. Phylogeney and genetic variance in terrestrial Microcoleus (Cyanophyceae) species based on sequence analysis of the 16S rRNA gene and associated 16S–23S ITS region.
2 9 9 41 Navicula gregaria Donk. ) Ku¨tz. Navicula lateropunctata Wallace Navicula luzonensis Hustedt Navicula menisculus Schum. Navicula minima Grunow Navicula mutica Ku¨tzing Navicula mutica var. stigma Patr. Navicula notha Wallace Navicula paratunkae Peters. Navicula paucivisitata Patr. ) Grun. Navicula contenta var. biceps (Arnott) V. H. Navicula cryptocephala Ku¨tzing Navicula cryptocephala var. exilis Grunow Navicula cryptocephala var. ) Rabh. Navicula decussis Østr. Taxon Table 5. (Continued) 44 Navicula tripunctata (O.
National). Because of this limitation, existing metrics often do not work as well as we would like. Few large-scale studies have been designed to provide this autecological information. The objective of this study was to gain a better understanding of diatom ecology, especially in those areas necessary to make advances in use of diatoms as water quality indicators. We addressed several questions. How do diatom assemblages vary among study sites in the eastern United States? Which water chemistry characteristics have greatest inﬂuence on diatom assemblage composition overall, and how does their importance vary with spatial scale and geographic region?