王欣, 李强, 曹清河, 等. 中国甘薯产业和种业发展现状与未来展望[J]. 中国农业科学, 2021, 54(3): 483-492.
|
HUANG T T, ZHOU D N, JIN Z Y, et al. Effect of Debranching and Heat-moisture Treatments on Structural Characteristics and Digestibility of Sweetpotato Starch [J]. Food Chemistry, 2015, 187: 218-224. doi: 10.1016/j.foodchem.2015.04.050
|
季蕾蕾, 孙红男, 木泰华. 12种甘薯淀粉产品的理化和卫生指标分析[J]. 食品科技, 2019, 44(3): 245-251, 255. doi: 10.13684/j.cnki.spkj.2019.03.044
|
王璐璐, 黄雨, 傅玉凡, 等. 甘薯淀粉相关性状变异性的分析[J]. 西南大学学报(自然科学版), 2022, 44(2): 39-47. doi: 10.13718/j.cnki.xdzk.2022.02.005
|
李静, 傅玉凡, 黄雨, 等. 10个叶菜型甘薯品种茎尖性状的分析与评价[J]. 西南大学学报(自然科学版), 2022, 44(4): 45-53. doi: 10.13718/j.cnki.xdzk.2022.04.006
|
AMOANIMAA-DEDE H, SU C T, YEBOAH A, et al. Flesh Color Diversity of Sweetpotato: an Overview of the Composition, Functions, Biosynthesis, and Gene Regulation of the Major Pigments [J]. Phyton, 2020, 89(4): 805-833. doi: 10.32604/phyton.2020.011979
|
MARCEL M R, CHACHA J S, OFOEDU C E. Nutritional Evaluation of Complementary Porridge Formulated from Orange-fleshed Sweetpotato, Amaranth Grain, Pumpkin Seed, and Soybean Flours [J]. Food Science & Nutrition, 2022, 10(2): 536-553.
|
WU X F, YAO H L, CAO X M, et al. Production of Vinegar from Purple Sweetpotato in a Liquid Fermentation Process and Investigation of Its Antioxidant Activity [J]. 3 Biotech, 2017, 7(5): 308. doi: 10.1007/s13205-017-0939-7
|
LAVERIANO-SANTOS E P, LÓPEZ-YERENA A, JAIME-RODRÍGUEZ C, et al. Sweetpotato is not Simply an Abundant Food Crop: a Comprehensive Review of Its Phytochemical Constituents, Biological Activities, and the Effects of Processing [J]. Antioxidants, 2022, 11(9): 1648. doi: 10.3390/antiox11091648
|
ZHANG Q, YAO Y B, LI Y H, et al. Causes and Changes of Drought in China: Research Progress and Prospects [J]. Journal of Meteorological Research, 2020, 34(3): 460-481. doi: 10.1007/s13351-020-9829-8
|
杨艳颖, 毛克彪, 韩秀珍, 等. 1949-2016年中国旱灾规律及其对粮食产量的影响[J]. 中国农业信息, 2018, 30(5): 76-90.
|
马代夫, 刘庆昌, 张立明. 中国甘薯[M]. 南京: 江苏凤凰科学技术出版社, 2021.
|
SHENG M F, XIA H Q, DING H Z, et al. Long-term Soil Drought Limits Starch Accumulation by Altering Sucrose Transport and Starch Synthesis in Sweet Potato Tuberous Root [J]. International Journal of Molecular Sciences, 2023, 24(3): 30-53.
|
张海燕, 汪宝卿, 冯向阳, 等. 不同时期干旱胁迫对甘薯生长和渗透调节能力的影响[J]. 作物学报, 2020, 46(11): 1760-1770.
|
康影. 甘薯病虫害绿色防控技术[J]. 现代农业科技, 2019(3): 101, 104.
|
傅玉凡, 杨新笋, 王庆美, 等. 高温干旱[M] //李强, 马代夫. 甘薯防灾减灾技术. 南京: 江苏凤凰科学技术出版社, 2022.
|
曹清河, 李雪华, 戴习彬, 等. PEG-6000模拟干旱胁迫对甘薯近缘野生种Ipomoea trifida (Kunth) G. Don幼苗生理生化指标的影响[J]. 西南农业学报, 2016, 29(11): 2536-2541.
|
AYAZ M, AHMAD R, SHAHZAD M, et al. Drought Stress Stunt Tomato Plant Growth and Up-regulate Expression of SlAREB, SlNCED3, and SlERF024 Genes [J]. Scientia Horticulturae, 2015, 195: 48-55. doi: 10.1016/j.scienta.2015.08.025
|
CUI G B, ZHAO Y F, ZHANG J L, et al. Proteomic Analysis of the Similarities and Differences of Soil Drought and Polyethylene Glycol Stress Responses in Wheat (Triticum aestivum L. ) [J]. Plant Molecular Biology, 2019, 100(4-5): 391-410. doi: 10.1007/s11103-019-00866-2
|
MA L J, WANG L L, MEI Y X, et al. Cross Adaptation Tolerance in Rice Seedlings Exposed to PEG Induced Salinity and Drought Stress [J]. International Journal of Agriculture and Biology, 2016, 18(3): 535-541. doi: 10.17957/IJAB/15.0122
|
王宁, 袁美丽, 陈浩, 等. 干旱胁迫及复水对入侵植物节节麦幼苗生长及生理特性的影响[J]. 草业学报, 2019, 28(1): 70-78.
|
薛新平, 薄伟, 王松, 等. 鸢尾种质资源抗旱性综合评价及生理机制研究[J]. 种子, 2022, 41(1): 49-55.
|
张海燕, 解备涛, 姜常松, 等. 不同抗旱性甘薯品种叶片生理性状差异及抗旱指标筛选[J]. 作物学报, 2022, 48(2): 518-528.
|
马玉慧, 张小虎, 马小乐, 等. 干旱胁迫下春小麦品种(系)萌发期抗旱性鉴定与评价[J]. 分子植物育种, 2022, 20(19): 6459-6473.
|
刘新, 刘洪庆. 植物生理学实验[M]. 北京: 高等教育出版社, 2017.
|
刘小华, 张美霞, 于春梅, 等. 考马斯亮兰法测定壳聚糖中蛋白的含量[J]. 中国交通医学杂志, 2006, 20(2): 159-160.
|
王洁, 赵路宽, 邓逸桐, 等. 光合参数用于甘薯抗旱性评价的适用性研究[J]. 江苏农业科学, 2022, 50(15): 89-94.
|
周志林, 唐君, 金平, 等. 甘薯抗旱鉴定及旱胁迫对甘薯叶片生理特性的影响[J]. 西南农业学报, 2016, 29(5): 1052-1056.
|
张明生, 谈锋, 张启堂. 快速鉴定甘薯品种抗旱性的生理指标及方法的筛选[J]. 中国农业科学, 2001, 34(3): 260-265.
|
张海燕, 解备涛, 汪宝卿, 等. 不同甘薯品种抗旱性评价及耐旱指标筛选[J]. 作物学报, 2019, 45(3): 419-430.
|
张海旺, 钟启文, 娄祥云, 等. 干旱胁迫对不同基因型菊芋生理特性的影响[J]. 植物生理学报, 2022, 58(12): 2312-2320.
|
刘丹, 邱长玉, 李标, 等. 用隶属函数法综合评价9个实用桑树品种的耐旱性[J]. 蚕学通讯, 2022, 42(4): 1-11.
|
李丰先, 罗磊, 李亚杰, 等. 基于PCA和隶属函数法分析的马铃薯创新种质抗旱性鉴定与分类[J]. 干旱区资源与环境, 2022, 36(11): 141-147.
|
何正付, 王凤立, 柏新盛. PEG6000和甘露醇模拟干旱胁迫效应比较研究[J]. 安徽农学通报, 2019, 25(10): 19, 40.
|
贾学静, 董立花, 丁春邦, 等. 干旱胁迫对金心吊兰叶片活性氧及其清除系统的影响[J]. 草业学报, 2013, 22(5): 248-255.
|
谢贤健, 兰代萍, 白景文. 三种野生岩生草本植物的抗旱性综合评价[J]. 草业学报, 2009, 18(4): 75-80.
|
BATOOL M, EL-BADRI A M, WANG Z K, et al. Rapeseed Morpho-physio-biochemical Responses to Drought Stress Induced by PEG-6000 [J]. Agronomy, 2022, 12(3): 579-599.
|
DINNENY J R. Developmental Responses to Water and Salinity in Root Systems [J]. Annual Review of Cell and Developmental Biology, 2019, 35: 239-257.
|
代崇雯, 刘亚敏, 刘玉民, 等. 3种外源物质对干旱胁迫下红椿生理特性的影响[J]. 西南大学学报(自然科学版), 2022, 44(2): 48-56.
|
VAN HEERDEN P D R, LAURIE R. Effects of Prolonged Restriction in Water Supply on Photosynthesis, Shoot Development and Storage Root Yield in Sweetpotato [J]. Physiologia Plantarum, 2008, 134(1): 99-109.
|
SHOAIB M, BANERJEE B P, HAYDEN M, et al. Roots' Drought Adaptive Traits in Crop Improvement [J]. Plants, 2022, 11(17): 2256-2276.
|
YAN S Y, WENG B S, JING L S, et al. Adaptive Pathway of Summer Maize under Drought Stress: Transformation of Root Morphology and Water Absorption Law [J]. Frontiers in Earth Science, 2022, 10: 1020553.
|
LI S P, ZHAO L, ZHANG S H, et al. Effects of Nitrogen Level and Soil Moisture on Sweetpotato Root Distribution and Soil Chemical Properties [J]. Journal of Soil Science and Plant Nutrition, 2021, 21(1): 536-546.
|
朱天亮, 杨立明. 甘薯耐旱瘠性的遗传趋势及其与性状的相关[J]. 福建农业科技, 1985(4): 25-26.
|