John Beardall
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Explore the profile of John Beardall including associated specialties, affiliations and a list of published articles.
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114
Citations
1602
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Recent Articles
1.
Wu F, Zhou Y, Beardall J, Raven J, Peng B, Xu L, et al.
New Phytol
. 2024 Nov;
245(4):1608-1624.
PMID: 39611545
Marine microalgae demonstrate a notable capacity to adapt to high CO and warming in the context of global change. However, the dynamics of their evolutionary processes under simultaneous high CO₂...
2.
Liang X, Raven J, Beardall J, Overmans S, Xia J, Jin P
Mar Environ Res
. 2024 Nov;
204:106853.
PMID: 39577375
Trade-offs play vital roles in evolutionary theory, linking organism performance to changing environments in the context of global change. Marine microalgae, as one of the most important groups of primary...
3.
Fu Q, Huang R, Li F, Beardall J, Hutchins D, Liu J, et al.
Plant Cell Environ
. 2024 Nov;
48(3):1829-1841.
PMID: 39494748
The marine microalga Emiliania huxleyi is widely distributed in the surface oceans and is prone to infection by coccolithoviruses that can terminate its blooms. However, little is known about how...
4.
Wong K, Megat Mazhar Khair M, Song A, Masarudin M, Loh J, Chong C, et al.
Fish Shellfish Immunol
. 2024 Apr;
149:109572.
PMID: 38636739
Streptococcosis outbreaks caused by Streptococcus agalactiae infection in tilapia aquaculture have been consistently reported and associated with high mortality and morbidity leading to significant economic losses. Existing vaccine candidates against...
5.
Britton D, Layton C, Mundy C, Brewer E, Gaitan-Espitia J, Beardall J, et al.
Proc Biol Sci
. 2024 Jan;
291(2015):20232253.
PMID: 38228502
Kelp forests are threatened by ocean warming, yet effects of co-occurring drivers such as CO are rarely considered when predicting their performance in the future. In Australia, the kelp forms...
6.
Ge J, Jin P, Xie S, Beardall J, Feng Y, Guo C, et al.
Environ Pollut
. 2023 Dec;
342:123127.
PMID: 38072023
Micro- and nanoplastics (MNPs) have been found to occur intensively in aquatic environments, along with other conventional pollutants (Po) such as heavy metals, pesticides, pharmaceuticals, etc. However, our understanding of...
7.
Feng Y, Xiong Y, Hall-Spencer J, Liu K, Beardall J, Gao K, et al.
Glob Chang Biol
. 2023 Nov;
30(1):e17018.
PMID: 37937464
Blooms of microalgal red tides and macroalgae (e.g., green and golden tides caused by Ulva and Sargassum) have caused widespread problems around China in recent years, but there is uncertainty...
8.
Cao L, Bi D, Fan W, Xu J, Beardall J, Gao K, et al.
Photochem Photobiol
. 2023 Aug;
100(2):491-498.
PMID: 37528525
Under global change scenarios, the sea surface temperature is increasing steadily along with other changes to oceanic environments. Consequently, marine diatoms are influenced by multiple ocean global change drivers. We...
9.
Ross F, Boyd P, Filbee-Dexter K, Watanabe K, Ortega A, Krause-Jensen D, et al.
Sci Total Environ
. 2023 May;
885:163699.
PMID: 37149169
Seaweed (macroalgae) has attracted attention globally given its potential for climate change mitigation. A topical and contentious question is: Can seaweeds' contribution to climate change mitigation be enhanced at globally...
10.
Wan J, Zhou Y, Beardall J, Raven J, Lin J, Huang J, et al.
J Exp Bot
. 2023 Apr;
74(14):4259-4276.
PMID: 37100754
Genetic changes together with epigenetic modifications such as DNA methylation have been demonstrated to regulate many biological processes and thereby govern the response of organisms to environmental changes. However, how...