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From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory

From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

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Page 1: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

From Woods Hole to the Deep Sea:

Living in a Microbial World

Julie A. Huber

Marine Biological Laboratory

Page 2: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

From Woods Hole to the Deep Sea:

Living in a Microbial World

Julie A. Huber

Marine Biological Laboratory

• We live on Planet Microbe

• Rocks + Water = Energy

• We need to think DEEP

Page 3: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live
Page 4: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live
Page 5: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

How did life spread across the planet?

How did life diversify?

How do life and its environment co-evolve?

What does the future of life look like?

Page 6: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Planet Microbe

Page 7: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

BACTERIA

EUKARYA ARCHAEA

P.

ferr

ophil

us

•No true nucleus

•Single chromosome

•No membrane-bound organelles

•Divide by binary fission

Dave Remsen, MBL

Page 8: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Universal

Tree of Life

BACTERIA

EUKARYA

ARCHAEA

Modified from Norman Pace

EUKARYA

You Are

Here

ARCHAEA

Page 9: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Baker and Dick Microbe 2013

Page 10: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Though they be small, they are mighty! -Shakespeare (sort of)

• Microbes are EVERYWHERE (inc. in/on you!)

• A petagram (~ 1015 g) of carbon in marine microbes

• All the people on Earth together weigh about 4x1013 grams

• Microbes were the only form of life for most of our

biological history (~3.5 Billion Years)

• Microbes mediate biogeochemical cycles (carbon,

oxygen, nitrogen, etc) that shape Earth’s habitability

Planet Microbe

Page 11: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Marine Food Webs

Worden et al. 2015

Page 12: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Breitbart 2012

Marine Food Webs

Classic food chain

Primary Producers

Dissolved organic matter

Grazers

Heterotrophic Prokaryotes

Viruses

Breitbart 2012

Phag

e by M

PI

Copepod by Hopcroft/UAF/CoML

Str

iper

by P

hil

ip C

oll

a

Page 13: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Breitbart 2012

Page 14: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Breitbart 2012

Marine Food Webs

Classic food chain

Primary Producers

Dissolved organic matter

Grazers

Heterotrophic Prokaryotes

Viruses

Breitbart 2012

Phag

e by M

PI

Copepod by Hopcroft/UAF/CoML

Str

iper

by P

hil

ip C

oll

a

Page 15: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Marine Food Webs

Classic food chain

Primary Producers

Dissolved organic matter

Grazers

Heterotrophic Prokaryotes

Viruses

Chemical Energy Breitbart 2012 Methanogen by Maryland Astrobiology Consortium U

W/D

eb K

elle

y

Page 16: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Rocks + Water = Energy

(R)evolutionary Crosstalk between

Earth & Life

Page 17: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Rocks + Water = Energy

Basalt

Dikes

Gabbro

Peridotite

WHOI

Page 18: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

H2S

Fe

Rocks + Water = Energy

+ H2O

Mafic

Basalt

Dikes

Gabbro

Peridotite

WHOI

WHOI

Page 19: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

H2

CH4

C2-C5

Ultramafic

Rocks + Water = Energy

+ H2O

Basalt

Dikes

Gabbro

Peridotite

Tim Shank

Page 20: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Nature: 459 , June 2009

Page 21: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live
Page 22: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live
Page 23: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Zhang et al. 2014 Frontiers in Microbio

Epsilonproteobacteria

Gastric ulcer, cancer

Food-borne diarrhea

Marine & Terrestrial

Sulfidic Systems

Vent Endemic: Most Ancient

Page 24: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Deep-Sea Hydrothermal Vents: Potential Hot Spots for

Natural Products Discovery?

Thornburg, Zabriskie and McPhail

J. Nat. Prod., 2010, 73, pp 489–499

Page 25: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live
Page 26: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

www.mineweb.com

Page 27: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

lbl.gov

Page 28: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Multi-Disciplinary Science

• Evolutionary Biology

• Geochemistry

• Geology

• Microbiology

• Modeling

• Natural Resources

• Oceanography

• Astrobiology

• Biochemistry

• Biogeography

• Climate

• Ecology

• Energy

• Engineering

Page 29: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

From Woods Hole to the Deep Sea:

Living in a Microbial World

Julie A. Huber

Marine Biological Laboratory

• We live on Planet Microbe

• Rocks + Water = Energy

• We need to think DEEP

Page 30: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Most Marine Ecosystems are Important & Understudied

Understanding them Demands

Multi-Disciplinary BIG Science

Microbes, Viruses, Resources, Carbon, etc.

Page 31: From Woods Hole to the Deep Sea: Living in a Microbial World · From Woods Hole to the Deep Sea: Living in a Microbial World Julie A. Huber Marine Biological Laboratory •We live

Thanks!

[email protected]