Results 21 to 30 of about 14,231 (111)

Data_Sheet_3_Tandem integration of circular plasmid contributes significantly to the expanded mitochondrial genomes of the green-tide forming alga Ulva meridionalis (Ulvophyceae, Chlorophyta).PDF

open access: yes, 2022
Comparative mitogenomics of Ulva species have revealed remarkable variations in genome size due to the integration of exogenous DNA fragments, the proliferation of group I/II introns, and the change of repeat sequences.
Hongshu Wang (12247898)   +2 more
core   +1 more source

Ecophysiological studies of three South African Ulva species from integrated seaweed [PDF]

open access: yes, 2011
Includes bibliographical references (leaves 210-273).In South Africa, Ulva cultivation is of paramount importance to the marine aquaculture industry. Three local Ulva species (Ulva lactuca Linnaeus, Ulva rigida C. Agardh and Ulva capensis Areschoug) were
Shuuluka, Diina
core   +1 more source

Data_Sheet_5_Tandem integration of circular plasmid contributes significantly to the expanded mitochondrial genomes of the green-tide forming alga Ulva meridionalis (Ulvophyceae, Chlorophyta).PDF

open access: yes, 2022
Comparative mitogenomics of Ulva species have revealed remarkable variations in genome size due to the integration of exogenous DNA fragments, the proliferation of group I/II introns, and the change of repeat sequences.
Hongshu Wang (12247898)   +2 more
core   +1 more source

Data_Sheet_2_Tandem integration of circular plasmid contributes significantly to the expanded mitochondrial genomes of the green-tide forming alga Ulva meridionalis (Ulvophyceae, Chlorophyta).PDF

open access: yes, 2022
Comparative mitogenomics of Ulva species have revealed remarkable variations in genome size due to the integration of exogenous DNA fragments, the proliferation of group I/II introns, and the change of repeat sequences.
Hongshu Wang (12247898)   +2 more
core   +1 more source

Data_Sheet_7_Tandem integration of circular plasmid contributes significantly to the expanded mitochondrial genomes of the green-tide forming alga Ulva meridionalis (Ulvophyceae, Chlorophyta).PDF

open access: yes, 2022
Comparative mitogenomics of Ulva species have revealed remarkable variations in genome size due to the integration of exogenous DNA fragments, the proliferation of group I/II introns, and the change of repeat sequences.
Hongshu Wang (12247898)   +2 more
core   +1 more source

Ulva meridionalis R. Horimoto & S. Shimada 2011

open access: yes
Published as part of Ng, Yu Fei & Huang, Danwei, 2024, Species diversity and phylogeny of the green macroalga Ulva (Ulvophyceae, Chlorophyta) in Singapore, pp.
Ng, Yu Fei, Huang, Danwei
openaire   +2 more sources

Sellnickochthonius meridionalis

open access: yes, 2021
Sellnickochthonius meridionalis (Bernini, 1973) Brachychochthonius meridionalis Bernini 1973, p. 364, figs 4, 5, pl. 1, fig. 1. Brachychochthonius meridionalis Moritz 1976b, p. 301, fig. 23. Sellnickochthonius meridionalis Weigmann 2006, p.
Fusco, Tommaso   +5 more
core   +1 more source

The use of ULVA as a feed supplement in the development of an artificial diet and feeding regimes to produce export quality roe from the sea urchin Tripneustes gratilla (Linnaeus) [PDF]

open access: yes, 2013
Includes bibliographical references.Tripneustes gratilla is a fast growing, shallow water echinoid, which occurs across the Indo-Pacific, with its south-western limit in warm, temperate waters of South Africa. The success of T.
Cyrus, Mark Digby
core   +1 more source

Meltdown in Algae Town: Implications of Warming Oceans on San Juan Island Ulva

open access: yes, 2021
The green alga, Ulva spp., represents a widely distributed and ecologically influential genus of macroalgae that occurs in subtidal and intertidal habitats worldwide. A majority of Ulva spp.
Calumpiano, Frau   +4 more
core  

Parholaspis meridionalis Ishikawa 1980

open access: yes, 2021
108. Parholaspis meridionalis Ishikawa, 1980 Parholaspis meridionalis Ishikawa, 1980b: 168. Parholaspis meridionalis.— Ishikawa, 1980c: 184; Ishikawa, 1982: 96; Ishikawa, 1987b: 91; Ishikawa, 2005: 487; Karg & Schorlemmer, 2009: 60.
Halliday, Bruce   +1 more
core   +1 more source

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