List of Contributors |
|
xi | |
Preface |
|
xiii | |
1 Domestication and Improvement of Cultivated Barley |
|
1 | (26) |
|
|
|
1 Origin and Domestication of Barley |
|
|
2 | (2) |
|
2 Distribution and Growth Habits of Wild Barley |
|
|
4 | (5) |
|
3 Environmental Adaptation of Wild Barley |
|
|
9 | (10) |
|
4 Utilization of Wild Barley in Breeding |
|
|
19 | (1) |
|
|
20 | (7) |
2 Malting Barley Quality Improvement and Germplasm Utilization |
|
27 | (14) |
|
|
|
|
27 | (1) |
|
2 Germplasm Foundation for Two-Row Malting |
|
|
28 | (1) |
|
3 Screening for Malting Quality |
|
|
28 | (6) |
|
4 Integration of Markers into Screening for Malting Quality |
|
|
34 | (1) |
|
5 Scald Resistance Marker Development and Utilization |
|
|
34 | (2) |
|
6 Utilization of Some Barley Germplasm |
|
|
36 | (1) |
|
7 Germplasm and the Future |
|
|
37 | (2) |
|
|
39 | (2) |
3 Food Barley Quality Improvement and Germplasm Utilization |
|
41 | (34) |
|
|
|
|
|
|
1 A Brief History of Barley Foods |
|
|
42 | (1) |
|
2 The Renaissance of Barley Foods in Western Culture |
|
|
43 | (1) |
|
3 The Oregon State University Case Study |
|
|
44 | (6) |
|
4 Products: A Decision to Embrace a Whole-Grain Rather Than an "Extractive" Model |
|
|
50 | (1) |
|
|
51 | (5) |
|
|
56 | (4) |
|
|
60 | (6) |
|
|
66 | (1) |
|
|
66 | (9) |
4 Exploration and Utilization of Salt-Tolerant Barley Germplasm |
|
75 | (40) |
|
|
|
|
76 | (1) |
|
2 Physiologic Responses of Barley to Salt Stress |
|
|
77 | (8) |
|
3 Methodologies for Studying Mechanisms of Salt Tolerance in Barley |
|
|
85 | (12) |
|
4 Exploration and Utilization of Salt-Tolerant Barley Germplasm |
|
|
97 | (9) |
|
|
106 | (9) |
5 Exploration and Utilization of Drought-Tolerant Barley Germplasm |
|
115 | (38) |
|
|
|
|
|
|
116 | (1) |
|
2 Drought Tolerance Assessment |
|
|
116 | (4) |
|
3 Physiological Bases for Drought Tolerance in Barley |
|
|
120 | (6) |
|
4 Genetics and Mechanisms of Drought Stress Tolerance in Barley |
|
|
126 | (7) |
|
5 Exploration and Utilization of Drought-Tolerant Barley Germplasm |
|
|
133 | (9) |
|
|
142 | (11) |
6 Exploration and Utilization of Waterlogging-Tolerant Barley Germplasm |
|
153 | (28) |
|
|
|
|
|
|
154 | (1) |
|
2 Adverse Effects of Waterlogging or Submergence Stress |
|
|
154 | (3) |
|
3 Morphological Strategies for Low-Oxygen Environment |
|
|
157 | (3) |
|
|
160 | (4) |
|
5 Metabolism and Signalling Network in Response to Waterlogging and Submergence |
|
|
164 | (1) |
|
6 Exploration and Utilization of Barley Genetic Germplasm with High Waterlogging Tolerance |
|
|
165 | (6) |
|
|
171 | (10) |
7 Exploration and Utilization of Aluminum-Tolerant Barley Germplasm |
|
181 | (28) |
|
|
|
|
182 | (1) |
|
2 Physiological Responses of Barley to Aluminum Stress |
|
|
183 | (3) |
|
3 Mechanisms and Genetics of Al Toxicity Tolerance in Barley |
|
|
186 | (9) |
|
4 Exploration and Utilization of Aluminum-Tolerant Barley Germplasm |
|
|
195 | (5) |
|
|
200 | (9) |
8 Frost Tolerance and Genetic Improvement in Barley |
|
209 | (14) |
|
|
|
|
209 | (2) |
|
|
211 | (1) |
|
|
211 | (2) |
|
|
213 | (1) |
|
5 Genotypic Variation for Frost Tolerance in Barley |
|
|
214 | (4) |
|
6 Genetic Factors Associated with Frost Tolerance in Barley |
|
|
218 | (2) |
|
|
220 | (1) |
|
|
220 | (3) |
9 Exploration and Utilization of Genetic Diversity Exotic Germplasm for Barley Improvement |
|
223 | (18) |
|
|
|
1 Overview of Barley Origin |
|
|
224 | (1) |
|
2 Genetic Diversity in Barley |
|
|
224 | (1) |
|
|
225 | (3) |
|
4 Yield-Limiting Factors in Barley |
|
|
228 | (1) |
|
5 Exotic Barley Germplasm for Improvement |
|
|
229 | (5) |
|
6 Exploring Barley Genetic Resources |
|
|
234 | (3) |
|
7 What Limits Use of Exotic Barley Germplasm in Breeding Programs? |
|
|
237 | (1) |
|
|
238 | (1) |
|
|
238 | (3) |
10 Improvement of Yield and Adaptation by Manipulating Phenology Genes |
|
241 | (24) |
|
|
|
|
|
|
242 | (1) |
|
2 Barley Development and Physiological Determinants of Yield |
|
|
242 | (4) |
|
3 Control of Barley Development |
|
|
246 | (4) |
|
4 Phenology and Adaptation: Matching Crop Phenology to Growing Conditions in Australia |
|
|
250 | (4) |
|
5 Manipulating Developmental Phases for Further Yield Improvement |
|
|
254 | (5) |
|
|
259 | (1) |
|
|
259 | (6) |
11 Next-Generation Sequencing Technology: Implications for Barley Genetics and Breeding |
|
265 | (16) |
|
|
|
|
|
266 | (1) |
|
2 Barley Genome Sequencing Projects |
|
|
266 | (3) |
|
3 Next-Generation Sequencing Technology |
|
|
269 | (1) |
|
4 Next-Generation Sequencing Applications |
|
|
270 | (6) |
|
|
276 | (1) |
|
|
277 | (4) |
Subject Index |
|
281 | |