abiess calocedrus decurrens pittermann et al.(2010)

11
10 100 0.01 0.1 1 10 100 K s ( kg s -1 m -1 MPa -1 ) D h ( m) A n gio spe rm stem s A n gio spe rm roots G ym nosperm stem s G ym nosperm ro ots r 2 = 0 .5 7 P < 0.0001 y = 0.00032x 2.24 y = 0.0005x 2.618 r 2 = 0 .5 6 P < 0.0001

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Page 1: Abiess Calocedrus decurrens Pittermann et al.(2010)

10 1000.01

0.1

1

10

100

Ks (

kg

s-1 m

-1 M

Pa

-1)

Dh (m)

Angiosperm stems Angiosperm roots Gymnosperm stems Gymnosperm roots

r2 = 0.57P < 0.0001

y = 0.00032x2.24

y = 0.0005x2.618

r2 = 0.56P < 0.0001

Page 2: Abiess Calocedrus decurrens Pittermann et al.(2010)

Abiess

Page 3: Abiess Calocedrus decurrens Pittermann et al.(2010)

Calocedrus decurrens

Pittermann et al.(2010)

Page 4: Abiess Calocedrus decurrens Pittermann et al.(2010)

Cupressus forbessii

Glyptostrobus pensilisPittermann et al. (2010) Plant Physiol.

Page 5: Abiess Calocedrus decurrens Pittermann et al.(2010)

5The significance of xylem hydraulic plasticity for reconstructing past environments: Kippel, May 15th – 17th 2012

Page 6: Abiess Calocedrus decurrens Pittermann et al.(2010)

6The significance of xylem hydraulic plasticity for reconstructing past environments: Kippel, May 15th – 17th 2012

Jansen et al. (2012) PC&E

Page 7: Abiess Calocedrus decurrens Pittermann et al.(2010)

Larch vs SpruceDry vs Wet

Page 8: Abiess Calocedrus decurrens Pittermann et al.(2010)

Results: pits

150 200 250 300 350 400

1015

2025

3035

Area margo [micron]A

rea

aper

ture

[m

icro

n]

SpruceLarch

torus vs margo aperture vs torus aperture vs margo

50 100 150

1015

2025

3035

Area torus [micron]

Are

a ap

ertu

re [

mic

ron]

SpruceLarch

150 200 250 300 350 400

5010

015

0

Area margo [micron]

Are

a to

rus

[mic

ron]

SpruceLarch

Page 9: Abiess Calocedrus decurrens Pittermann et al.(2010)

Results: pits

9

Aperture Torus

Area margo [micron2]

Den

sity

0.000

0.002

0.004

0.006

0.008

0.010

100 200 300 400

Larix

100 200 300 400

Spruce

DW

Area aperture [micron2]

Den

sity

0.00

0.02

0.04

0.06

0.08

10 20 30 40

Larix

10 20 30 40

Spruce

DW

Area torus [micron2]

Den

sity

0.00

0.01

0.02

0.03

50 100 150 200

Larix

50 100 150 200

Spruce

DW

Margo

(Amargo-Atorus)/Atorus [micron2]

Den

sity

0.0

0.5

1.0

1.5

1 2 3 4

Larix

1 2 3 4

Spruce

DW

(Atorus-Aaperture)/Aaperture [micron2]

Den

sity

0.0

0.1

0.2

0.3

0.4

0.5

0 2 4 6 8

Larix

0 2 4 6 8

Spruce

DW

Area torus over aperture

Area margo over torus

Page 10: Abiess Calocedrus decurrens Pittermann et al.(2010)

Results: tracheid

10The significance of xylem hydraulic plasticity for reconstructing past environments: Kippel, May 15 th – 17th 2012

Tra

chei

d le

ngth

[m

icro

n]

2000

3000

4000

5000

6000

D W

Tra

chei

d w

idth

[m

icro

n]

30

40

50

60

70

D W

Tra

chei

d le

ngth

[m

icro

n]

2000

3000

4000

5000

6000

1985 1986 2003 2004 2007 2008

L

1985 1986 2003 2004 2007 2008

S

Tra

chei

d w

idth

[m

icro

n]

30

40

50

60

70

1985 1986 2003 2004 2007 2008

L

1985 1986 2003 2004 2007 2008

S

Tra

chei

d le

ngth

[m

icro

n]

20003000400050006000

1985 1986 2003 2004 2007 2008

L1

1985 1986 2003 2004 2007 2008

S1

L2

20003000400050006000

S2

20003000400050006000

L3

S3

L4

20003000400050006000

S4

20003000400050006000

L5

S5

L7

20003000400050006000

S7

Tra

chei

d w

idth

[m

icro

n]

3040506070

1985 1986 2003 2004 2007 2008

L1

1985 1986 2003 2004 2007 2008

S1

L2

3040506070

S2

3040506070

L3

S3

L4

3040506070

S4

3040506070

L5

S5

L7

3040506070

S7

length width

Page 11: Abiess Calocedrus decurrens Pittermann et al.(2010)

Results: tracheid

11The significance of xylem hydraulic plasticity for reconstructing past environments: Kippel, May 15 th – 17th 2012

length width

Tracheid length [micron]

Den

sity

0e+00

2e-04

4e-04

6e-04

2000 3000 4000 5000 6000 7000

DW

Tracheid width [micron]

Den

sity

0.00

0.01

0.02

0.03

0.04

0.05

20 30 40 50 60 70

DW

Tracheid length [micron]

Den

sity

0e+00

2e-04

4e-04

6e-04

2000 3000 4000 5000 6000 7000

Larix

2000 3000 4000 5000 6000 7000

Spruce

DW

Tracheid width [micron]

Den

sity

0.00

0.02

0.04

0.06

20 30 40 50 60 70

Larix

20 30 40 50 60 70

Spruce

DW

2000 3000 4000 5000 6000

3040

5060

70

Tracheid length [micron]

Tra

chei

d w

idth

[m

icro

n]

SpruceLarch