Mycorrhizal Mediation of Soil: Fertility, Structure, and Carbon Storage
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2017
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Beschreibung: | 509 Seiten Illustrationen |
ISBN: | 9780128043127 |
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adam_text | MYCORRHIZAL
MEDIATION OF
SOIL
FERTILITY, STRUCTURE, AND
CARBON STORAGE
Edited By
NANCY COLLINS JOHNSON
CATHERINE GEHRING
JAN JANSA
ELSEVIER
AMSTERDAM • BOSTON • HEIDELBERG • LONDON
NEW YORK • OXFORD • PARIS • SAN DIEGO
SAN FRANCISCO • SINGAPORE • SYDNEY • TOKYO
Contents
List of Contributors xi
Preface xiii
1 Mycorrhizas: At the Interface of
Biological, Soil, and Earth Sciences
N C JOHNSON AND J JANSA
1 1 Successful Coexistence of Plants and
Fungi 1
1 2 Mycorrhizal Research: Past, Present, and
Future 2
1 3 Goals and Objectives 5
References 5
I
MYCORRHIZAL
MEDIATION OF SOIL
DEVELOPMENT
2 Mycorrhizal Symbioses and
Pedogenesis Throughout Earth s
History
J R LEAKE AND D J READ
2 1 The Importance of Reciprocal Effects of
Plant-Mycorrhiza-Soil Interactions in the
Evolution and Assembly of Terrestrial
Ecosystems 9
2 2 Plants and Mycorrhizas as Agents of
Pedogenesis: Coupling Plant Photosynthate
Energy to the Actions of Fungal Mycelial
Networks 11
2 3 Evolutionary Origins of Plants and
Mycorrhizas 14
2 4 Coevolution of Plants, Mycorrhizas, and
Photosynthate-Driven Weathering and
Pedogenesis 21
2 5 Feedback Between Plant-Driven Pedogenesis,
Global Biogeochemical Cycles, and the
Evolution of Plants and Mycorrhizal
Functioning 25
2 6 Conclusions 26
Acknowledgments 27
References 28
Role of Mycorrhizal Symbiosis in
Mineral Weathering and Nutrient Mining
from Soil Parent Material
M M SMITS AND H WALLANDER
3 1 Introduction 35
3 2 Mechanisms of Mineral Weathering 36
3 3 Fungal Weathering in the Laboratory 37
3 4 From Laboratory to Field 39
3 5 Conclusions and Future Research
Directions 43
References 43
4 Mycorrhizal Interactions With
Climate, Soil Parent Material, and
Topography
N C JOHNSON, R M MILLER AND GWT WILSON
4 1 Introduction 47
4-2 Mycorrhizal Interactions With Climate 48
4-3 Mycorrhizal Interactions With Parent
Material 55
4 4 Mycorrhizal Interactions With Topography 59
4-5 Conclusions 61
References 61
5 Mycorrhizas Across Successional
Gradients
F P TESTE AND I A DICKIE
5 1 Succession 67
5 2 Succession in Mycorrhizal Fungal
Communities 69
vi CONTENTS
5 3 Habitat Drivers 70
5 4 Plant Drivers 74
5 5 Fungal Drivers 76
5 6 Interacting Drivers 78
References 83
MYCORRHIZAL MEDIATION
OF SOIL FERTILITY
NANCY COLLINS JOHNSON
6 Introduction: Perspectives on
Mycorrhizas and Soil Fertility
L K ABBOTT AND N C JOHNSON
6 1 Introduction 93
6 2 Contributions of Mycorrhizal Fungi to Soil
Fertility 95
6 3 Soil Fertility Influences Mycorrhizal
Fungi 97
6 4 Principles for Management of Mycorrhizal Fungi
for Soil Fertility 100
6 5 Looking Forward 101
References 101
7 Fungal and Plant Tools for the Uptake
of Nutrients in Arbuscular Mycorrhizas:
A Molecular View
M GIOVANNETTI, V VOLPE, A SALVIOLI
AND P BONFANTE
7 1 Introduction 107
7 2 Nitrogen Nutrition Within Arbuscular
Mycorrhizas 109
7 3 Phosphate Transport in Arbuscular Mycorrhizal
Symbiosis 112
7 4 Sulfur Metabolism and Arbuscular Mycorrhizal
Symbiosis 115
7 5 From Root to Shoot and Back: Evidence for a
Systemic Signaling and Gene Regulation in
Mycorrhizal Plants 117
7 6 Perspectives and Conclusions 121
Acknowledgments 121
References 122
8 Accessibility of Inorganic and Organic
Nutrients for Mycorrhizas
A HODGE
8 1 Introduction 129
8 2 Movement of Phosphate and Nitrate Ions to
Roots 131
8 3 Inorganic Phosphorus and Nitrogen Acquisition
by Arbuscular Mycorrhizal Fungi 131
8 4 Inorganic Phosphorus and Nitrogen Acquisition
by Ectomycorrhizal Fungi 133
8 5 Arbuscular Mycorrhizal Fungi and Organic
Nutrient Forms 135
8 6 Ectomycorrhizal Fungi and Organic Nutrient
Forms 138
8 7 Conclusions 143
Acknowledgments 144
References 144
9 Mycorrhizas as Nutrient and Energy
Pumps of Soil Food Webs: Multitrophic
Interactions and Feedbacks
P M ANTUNES AND A KOYAMA
9 1 Introduction 149
9 2 Mycorrhizas and Saprotrophs 153
9 3 Mycorrhizas and Herbivores 156
9 4 Mycorrhizas and Fungivores 157
9 5 Mycorrhizas and Bacterivores 160
9 6 Mycorrhizas and Higher Trophic Levels 161
9 7 The Way Forward 162
Acknowledgments 163
References 163
10 Implications of Past, Current, and
Future Agricultural Practices for
Mycorrhiza-Mediated Nutrient Flux
C HAMEL AND C PLENCHETTE
10 1 Introduction 175
10 2 Agriculture in the Past 175
10 ^ Modern Agriculture 177
10 4 Agriculture in the Future 179
10 5 Conclusion 182
References 182
CONTENTS vii
11 Integrating Ectomycorrhizas Into
Sustainable Management of Temperate
Forests
M D JONES
11 1 Introduction 187
11 2 Harvesting Systems 188
11 3 Stand Reestablishment 195
11 4 Seedling Production 198
11 5 Stand Management 200
11 6 Conclusions 202
Acknowledgment 203
References 203
12 Mycorrhizal Mediation of Soil Fertility
Amidst Nitrogen Eutrophication and
^ Climate Change
M F ALLEN AND E B ALLEN
12 1 Introduction 213
12 2 Mechanisms of Mycorrhizal Nutrition and
Stoichiometry 214
12 3 Nutrient Uptake and Mycorrhizal Fungi:
the Basics 215
12 4 Mycorrhizas and Global Change 221
12 5 Mycorrhizas and Nitrogen Deposition 224
12 6 What is Needed? A Stoichiometric
Challenge 226
Acknowledgments 227
References 227
III
MYCORRHIZAL MEDIATION
OF SOIL STRUCTURE AND
SOIL-PLANT WATER
RELATIONS
CATHERINE GEHR1NG
13 Introduction: Mycorrhizas and Soil
Structure, Moisture, and Salinity
C A GEHRING
13 1 Introduction 235
13 2 Soil Structure 235
13 3 Soil Salinity 236
13 4 Soil Moisture 238
References 239
14- Mycorrhizas and Soil Aggregation
A LEHMANN, E E LE1FHEIT AND M C RILL1G
14 1 Introduction: Soil Aggregation, Its Component
Processes, and Significance of Soil
Structure 241
142 Evidence for Involvement of Different Types of
Mycorrhizas in Soil Aggregation 242
14 ; Mechanisms of Soil Aggregation 245
14 4 Relative Importance of Mycorrhizas 251
14 ; Avenues and Needs for Future
Research 254
References 255
1 Arbuscular Mycorrhizal Fungi and Soil
Salinity
M MIRANSARI
I51 Introduction 263
I52 Arbuscular Mycorrhizal Fungi and Salt
Stress 265
I5: Salinity in Combination with Drought and
Warming 268
154 Studies of Salinity Responses of Indigenous
Arbuscular Mycorrhizal Fungi 269
1; Plant Root Properties, Mycorrhizal Fungi and
Salinity Stress 270
1= (• Signaling, Mycorrhizal Fungi, and Salinity
Stress 270
1: ~t Tripartite Interactions and Salinity
Stress 271
1; !- Agronomical Consequences of Using
Mycorrhizal Fungi in Saline Fields 273
1 l Conclusions and Future Perspectives 273
References 274
16 Mycorrhizas, Drought, and Host-Plant
Mortality
C A GEHRING, R L SWATY AND RJ1 ECKERT
U 1 Introduction 279
l Mycorrhizas, Plants, and Drought 280
I ( Drought-Related Host Mortality and
Consequences for Mycorrhizas 286
Acknowledgments 293
References 294
viii CONTENTS
17 Soil Water Retention and Availability
as Influenced by Mycorrhizal Symbiosis:
Consequences for Individual Plants,
Communities, and Ecosystems
J I QUEREJETA
17 1 Introduction 299
17 2 Influence of Vegetation on Soil Hydraulic
Properties 300
17 3 Mycorrhizal Fungal Influence on Soil
Hydraulic Properties: Review of Published
Evidence 301
17 4 Mycorrhizal Fungal Role in Hydraulic
Redistribution and Hydraulic Connectivity in
the Vadose Zone 307
17 5 Mycorrhizal Fungal Role in Reducing Soil
Erosion 308
17 6 Consequences for Individual Plants,
Communities, and Ecosystems, and
Implications for Terrestrial Ecosystems
Response to Global Change 309
17 7 Knowledge Gaps, Research Needs, and Future
Research Directions 310
References 312
18 Mycorrhizal Networks and Forest
Resilience to Drought
B J PICKLES AND S W SIMARD
18 1 Introduction 319
18 2 Forest Resilience 320
18 3 The Role of Mycorrhizas in Water
Uptake 320
18 4 Mycorrhizal Networks and Their Role in
Hydraulic Redistribution and Drought
Responses 323
18 5 Rooting Depth 327
18 6 The Role of Drought in Global Forest
Decline 328
18 7 Climate Change Projections for Drought
Effects on Forests and the Domino
Effect 329
18 8 Incorporating Mycorrhizal Networks in Forest
Management 330
18 9 Knowledge Gaps and Future Research
Directions 331
18 10 Conclusions 3 33
References 334
IV
MYCORRHIZAL MEDIATION
OF ECOSYSTEM CARBON
FLUXES AND SOIL CARBON
STORAGE
JAN J ANSA
19 Introduction: Mycorrhizas and the
Carbon Cycle
J JANSA AND k K TRESEDER
19 1 The Carbon Cycle 343
19 2 The Key Role of the SOM in Soil
Processes 344
19 3 Position of Mycorrhizal Fungi Within the Soil
Food Webs 344
19 4 Mycorrhizal Symbiosis and the Soil C
Cycling 346
19 5 Functional Diversity in Mycorrhizal Symbioses
with Respect to C Cycling 347
19 6 Open Questions, Experimental
Challenges 349
Acknowledgment 351
References 351
20 Carbon and Energy Sources of
Mycorrhizal Fungi: Obligate Symbionts
or Latent Saprotrophs?
T W KUYPER
20 1 Introduction 357
20 2 Two Concepts of Saprotrophy 359
20 3 Phylogenetic Evidence 361
20 4 Enzymatic Evidence 361
20 5 Carbon Signatures 363
20 6 Ectomycorrhizal Fungi Involved 364
20 7 Nonenzymatic Nutrient Mining by
Ectomycorrhizal Fungi 365
20 8 Stoichiometric Considerations 366
20 9 Modeling Studies 368
20 10 Arbuscular Mycorrhizal Fungi 369
20 11 Saprotrophic Capabilities of Ectomycorrhizal
Fungi: The Way Forward 370
Acknowledgments 371
References 371
CONTENTS ix
21 Magnitude, Dynamics, and Control of
the Carbon Flow to Mycorrhizas
K J FIELD, S J DAVIDSON, S A ALGHAMDI
AND D D CAMERON
21 1 Introduction 375
21 2 How Does the Physiology and Magnitude of
Plant-to-Fungus C Flow Depend on
Mycorrhizal Functional Group? 376
21 3 How Does C Availability (CO2 and Shading)
Influence the Carbon Flux Between Plant
and Mycorrhizal Fungal Communities? 380
21 4 To What Extent Is the Carbon Flow
between Plant and Symbiotic Fungal Partners
Regulated by Reciprocal Nutrient
Exchange? 385
21 5 Conclusions 388
Acknowledgments 388
References 389
22 Trading Carbon Between Arbuscular
Mycorrhizal Fungi and Their Hyphae-
Associated Microbes
B DR1GO AND S DONN
22 1 Mycorrhizas and Hyphae-Associated
Microbes 395
22 2 Carbon Allocation From Mycorrhizal Fungi to
the Hyphae-Associated Microbes in the
Hyphosphere 397
22 3 Involvement of the Hyphae-Associated
Microbes in Nutrient Cycling and Carbon
Transformation in the Hyphosphere 400
22 4 Dynamics of the Mycorrhizosphere Associations
Under Fluctuating Environmental
Conditions 404
22 5 Unresolved Questions on Trading Carbon and
Nutrient Between Mycorrhizas and Hyphae-
Associated Microbes 406
References 407
23 Immobilization of Carbon in
Mycorrhizal Mycelial Biomass and
Secretions
R D FINLAY AND K E CLEMMENSEN
23 1 Introduction 413
23 2 Mycelial Biomass Production and
Turnover 415
233 Secretions of Mycorrhizal Mycelia 422
234 Necromass Properties and
Decomposition 425
23 5 Incorporation Into Stable Carbon 427
23 6 Conclusions 432
Acknowledgments 434
References 434
! 4- Mycorrhizal Interactions With
Saprotrophs and Impact on Soil Carbon
Storage
E VERBRUGGEN, R PENA, C W FERNANDEZ
AND J L SOONG
M l Introduction 441
24 2 Mycorrhizal Fungi As a Source of C in
Soil 444
24 3 Competition for Nutrients and
Habitat 449
24 -1 Interactions Among Mycorrhizal Fungi, Soil
Fauna, and Soil Organic Carbon 452
24 5 Conclusion 453
Acknowledgments 454
References 454
211 Biochar—Arbuscular M ycorrhiza
Interaction in Temperate Soils
R T KOIDE
25 1 Introduction 461
25 2 Biochar and Mycorrhizas 463
25BiocharInfluencesMycorrhizal(Colonization
via Its Effects on Soil Properties 466
25 4 Biochar Influences Plant Response to
Mycorrhizal Colonization via Its Impact on the
Level of Plant Stress 469
25 Conclusions471
Acknowledgments 472
References 472
26 Integrating Mycorrhizas Into Global
Scale Models: A Journey Toward
Relevance in the Earth s Climate
System
E R BRZOSTEK, K T REBEL, K R SMITH AND R P PHILLIPS
26 1 Introduction 479
26 2 Existing Model Frameworks 481
X CONTENTS
26 3 Critical Mycorrhizal Functions for Terrestrial 26 6 Conclusion
Biosphere Models 487 References
26 4 Mycorrhizal Fungi as Trait Integrators 491
26 5 Challenges Moving Forward 493 Index 501
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spelling | Johnson, Nancy Collins Verfasser aut Mycorrhizal Mediation of Soil Fertility, Structure, and Carbon Storage Mycorrhizal Mediation of Soil Saint Louis Elsevier 2017 509 Seiten Illustrationen txt rdacontent n rdamedia nc rdacarrier Bodenmikrobiologie (DE-588)4659394-9 gnd rswk-swf Mykorrhiza (DE-588)4040983-1 gnd rswk-swf Bodenmikrobiologie (DE-588)4659394-9 s Mykorrhiza (DE-588)4040983-1 s DE-188 Gehring, Catherine Verfasser aut Jansa, Jan Sonstige oth HEBIS Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029451918&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Johnson, Nancy Collins Gehring, Catherine Mycorrhizal Mediation of Soil Fertility, Structure, and Carbon Storage Bodenmikrobiologie (DE-588)4659394-9 gnd Mykorrhiza (DE-588)4040983-1 gnd |
subject_GND | (DE-588)4659394-9 (DE-588)4040983-1 |
title | Mycorrhizal Mediation of Soil Fertility, Structure, and Carbon Storage |
title_auth | Mycorrhizal Mediation of Soil Fertility, Structure, and Carbon Storage |
title_exact_search | Mycorrhizal Mediation of Soil Fertility, Structure, and Carbon Storage |
title_full | Mycorrhizal Mediation of Soil Fertility, Structure, and Carbon Storage Mycorrhizal Mediation of Soil |
title_fullStr | Mycorrhizal Mediation of Soil Fertility, Structure, and Carbon Storage Mycorrhizal Mediation of Soil |
title_full_unstemmed | Mycorrhizal Mediation of Soil Fertility, Structure, and Carbon Storage Mycorrhizal Mediation of Soil |
title_short | Mycorrhizal Mediation of Soil |
title_sort | mycorrhizal mediation of soil fertility structure and carbon storage |
title_sub | Fertility, Structure, and Carbon Storage |
topic | Bodenmikrobiologie (DE-588)4659394-9 gnd Mykorrhiza (DE-588)4040983-1 gnd |
topic_facet | Bodenmikrobiologie Mykorrhiza |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=029451918&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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