1 |
杨劲松,姚荣江,王相平,等.中国盐渍土研究:历程、现状与展望[J].土壤学报,2022,59(1):10-27.
|
|
YANG J S, YAO R J, WANG X P,et al.Research on salt-affected soils in China:history,status quo and prospect[J].Acta Pedologica Sinica,2022,59(1):10-27.
|
2 |
李晓院,解莉楠.盐胁迫下植物Na+调节机制的研究进展[J].生物技术通报,2019,35(7):148-155.
|
|
LI X Y, XIE L N.Research progress in Na+ regulation mechanism of plants under salt stress[J].Biotechnology Bulletin,2019,35(7):148-155.
|
3 |
李焕勇,杨秀艳,唐晓倩,等.植物响应盐胁迫组学研究进展[J].西北植物学报,2016,36(12):2548-2557.
|
|
LI H Y, YANG X Y, TANG X Q,et al.Omics research progress of plants under salt stress[J].Acta Botanica Boreali-Occidentalia Sinica,2016,36(12):2548-2557.
|
4 |
方文培,张泽荣.中国植物志:第52卷:第2分册[M].北京:科学出版社,1983:94.
|
|
FANG W P, ZHANG Z R.Flora of China:Vol.52:Series 2[M].Beijing:Scinece Press,1983:94.
|
5 |
贾永正,张子晗,俞方圆,等.盐胁迫对紫薇种子萌发特性的影响[J].种子,2016,35(10):87-91.
|
|
JIA Y Z, ZHANG Z H, YU F Y,et al.Effects of salt stress on germination characteristics of Lagerstroemia indica seeds[J].Seed,2016,35(10):87-91.
|
6 |
邱国金,胡卫霞,孙其松,等.盐胁迫对紫薇3个新品种的生长与生理特性的影响[J].西部林业科学,2017,46(4):50-55.
|
|
QIU G J, HU W X, SUN Q S,et al.Salt stress effect on the growth and physiological characteristics of three new varieties of Lagerstroemia indica [J].Journal of West China Forestry Science,2017,46(4):50-55.
|
7 |
邱国金,于敏,胡卫霞,等.盐胁迫对天鹅绒紫薇生长与生理生化特性的影响[J].江苏农业科学,2018,46(6):123-126.
|
|
QIU G J, YU M, HU W X,et al.Salt stress effect on the growth and physiological-biochemical characteristics of Lagerstroemia indica ‘Pink Velour’[J].Jiangsu Agricultural Sciences,2018,46(6):123-126.
|
8 |
FIEHN O.Metabolomics-the link between genotypes and phenotypes[J].Plant Molecular Biology,2002,48(2):155-171.
|
9 |
YE T T, SHI H T, WANG Y P,et al.Contrasting proteomic and metabolomic responses of bermudagrass to drought and salt stresses[J].Frontiers in Plant Science,2016,7:1694-1709.
|
10 |
高龙飞,贾斌,张卫华,等.盐胁迫下蓝莓叶片生理特性与代谢组学分析[J].植物生理学报,2022,58(1):155-164.
|
|
GAO L F, JIA B, ZHANG W H,et al.Physiological characteristics and metabonomics analysis of blueberry leaves under salt stress[J].Plant Physiology Journal,2022,58(1):155-164.
|
11 |
闫海冰,张慧芳,冯帆,等.2种白刺对盐胁迫的代谢响应机制[J].林业科学,2021,57(1):20-29.
|
|
YAN H B, ZHANG H F, FENG F,et al.Metabolic response mechanism of two Nitraria species to salt stress[J].Scientia Silvae Sinicae,2021,57(1):20-29.
|
12 |
付海奇,刘晓,宋姝,等.次生代谢物调控植物抵抗盐碱胁迫的机制[J].植物生理学报,2023,59(4):727-740.
|
|
FU H Q, LIU X, SONG S,et al.Mechanisms of secondary metabolites regulating plant resistance to salinity and alkali stress[J].Plant Physiology Journal,2023,59(4):727-740.
|
13 |
LLANES A, BERTAZZA G, PALACIO G,et al.Different sodium salts cause different solute accumulation in the halophyte Prosopis strombulifera [J].Plant Biology,2013,15(s1):118-125.
|
14 |
李娜娜,刘同歌,黄志慧,等.草本资源植物菥蓂对盐胁迫下生理生态及次生代谢产物响应[J].草业学报,2022,31(11):181-190.
|
|
LI N N, LIU T G, HUANG Z H,et al.Physiological ecological and secondary metabolic responses of the herbaceous resource plant Thlaspi arvense to salt stress[J].Acta Prataculturae Sinica,2022,31(11):181-190.
|
15 |
邢芳芳,高明夫,周传志,等.氨基酸与植物抗逆性关系的研究进展[J].黑龙江农业科学,2018,41(3):150-155.
|
|
XING F F, GAO M F, ZHOU C Z,et al.Advances in the relationship between amino acid and plant stress resistance[J].Heilongjiang Agricultural Sciences,2018,41(3):150-155.
|
16 |
燕辉,彭晓邦,薛建杰.NaCl胁迫对花棒叶片光合特性及游离氨基酸代谢的影响[J].应用生态学报,2012,23(7):1790-1796.
|
|
YAN H, PENG X B, XUE J J.Effects of NaCl stress on leaf photosynthesis characteristics and free amino acid metabolism of Heyedysarum scoparium [J].Chinese Journal of Applied Ecology,2012,23(7):1790-1796.
|
17 |
RICHTER J A, ERBAN A, KOPKA J,et al.Metabolic contribution to salt stress in two maize hybrids with contrasting resistance[J].Plant Science,2015,233:107-115.
|
18 |
LI X N, HAN S J, WANG G Y,et al.The fungus Aspergillus aculeatus enhances salt-stress tolerance,metabolite accumulation,and improves forage quality in perennial ryegrass[J].Frontiers in Microbiology,2017,8:1664.
|
19 |
刘文献,刘志鹏,谢文刚,等.脂肪酸及其衍生物对植物逆境胁迫的响应[J].草业科学,2014,31(8):1556-1565.
|
|
LIU W X, LIU Z P, XIE W G,et al.Responses of fatty acid and its derivatives to stress in plants[J].Pratacultural Science,2014,31(8):1556-1565.
|
20 |
YANG D S, ZHANG J, LI M X,et al.Metabolomics analysis reveals the salt-tolerant mechanism in Glycine soja [J].Journal of Plant Growth Regulation,2017,36(2):460-471.
|
21 |
蔡美杰,张恩慧,张鑫鑫,等.盐胁迫甘蓝DH幼苗添加细胞分裂素效果研究[J].东北农业大学学报,2019,50(5):19-25.
|
|
CAI M J, ZHANG E H, ZHANG X X,et al.Study on adding cytokinin to DH seedlings of cabbage under salt stress[J].Journal of Northeast Agricultural University,2019,50(5):19-25.
|
22 |
李昕儒,高宇,苗淑楠,等.油莎豆生长素受体TIR1基因家族鉴定及响应盐胁迫和外源IBA的表达分析[J].热带作物学报,2023,44(5):894-904.
|
|
LI X R, GAO Y, MIAO S N,et al.Identification of auxin receptor gene TIR1 family in Cyperus esculentus and the expression analysis in response to salt stress and exogenous IBA[J].Chinese Journal of Tropical Crops,2023,44(5):894-904.
|
23 |
张衡锋,杨绮,韦庆翠,等.盐胁迫对10个品种紫薇的影响及其耐盐性综合评价[J].东北林业大学学报,2023,51(9):34-40.
|
|
ZHANG H F, YANG Q, WEI Q C,et al.Effects of salt stress and salt tolerance on ten Lagerstroemia indica varieties[J].Journal of Northeast Forestry University,2023,51(9):34-40.
|
24 |
DIÉDHIOU C J, POPOVA O V, DIETZ K J,et al.The SNF1-type serine-threonine protein kinase SAPK4 regulates stress-responsive gene expression in rice[J].BMC Plant Biology,2008,8(1):49.
|
25 |
黄龙全,张剑韵.植物维生素B6从头合成与代谢转换研究进展[J].西北植物学报,2015,35(10):2124-2131.
|
|
HUANG L Q, ZHANG J Y.Review on the de novo synthesis and metabolic conversions of vitamin B6 in plants[J].Acta Botanica Boreali-Occidentalia Sinica,2015,35(10):2124-2131.
|
26 |
李焕勇,杨秀艳,唐晓倩,等.盐胁迫下西伯利亚白刺根代谢组学分析[J].植物生理学报,2020,56(7):1617-1626.
|
|
LI H Y, YANG X Y, TANG X Q,et al.Metabolomics analysis of Nitraria sibirica roots under salt stress[J].Plant Physiology Journal,2020,56(7):1617-1626.
|
27 |
李莎,姜凌,王崇英,等.叶酸在植物体内功能的研究进展[J].植物学报,2012,47(5):525-533.
|
|
LI S, JIANG L, WANG C Y,et al.Research advances in the functions of plant folates[J].Chinese Bulletin of Botany,2012,47(5):525-533.
|
28 |
PERIN E C, SILVA MESSIAS RDA, BOROWSKI J M,et al.ABA-dependent salt and drought stress improve strawberry fruit quality[J].Food Chemistry,2019,271:516-526.
|