1 |
RIZWAN M,ALI S, IBRAHIM M,et al.Mechanisms of silicon-mediated alleviation of drought and salt stress in plants: a review[J].Environmental Science and Pollution Research,2015,22(20):15416-15431.
|
2 |
KLEINWÄCHTER M, SELMAR D.New insights explain that drought stress enhances the quality of spice and medicinal plants:potential applications[J].Agronomy for Sustainable Development,2015,35(1):121-131.
|
3 |
WANG L S, LI W L, MA L,et al.Salt stress changes chemical composition in Limonium bicolor(Bag.) Kuntze,a medicinal halophytic plant[J].Industrial Crops and Products,2016,84:248-253.
|
4 |
FAHAD S, HUSSAIN S, MATLOOB A,et al.Phytohormones and plant responses to salinity stress:a review[J].Plant Growth Regulation,2015,75:391-404.
|
5 |
LIU P, YIN L N, WANG S W,et al.Enhanced root hydraulic conductance by aquaporin regulation accounts for silicon alleviated salt-induced osmotic stress in Sorghum bicolor L[J].Environmental and Experimental Botany,2015,111:42-51.
|
6 |
柳福智,杨军.外源蔗糖对盐胁迫条件下甘草幼苗生长及有效成分含量的影响[J].中国中药杂志,2015, 40(22):4384-4388.
|
|
LIU F Z, YANG J.Effect of exogenous sucrose on growth and active ingredient content of licorice seedlings under salt stress conditions[J].China Journal of Chinese Materia Medica,2015,40(22):4384-4388.
|
7 |
ZHANG B, ZHENG L P, WANG J W.Nitric oxide elicitation for secondary metabolite production in cultured plant cells[J].Applied Microbiology and Biotechnology,2012,93(2):455-466.
|
8 |
ROMERO-RODRÍGUEZ A, RUIZ-VILLAFÁN B, TIERRAFRÍA V H,et al.Carbon catabolite regulation of secondary metabolite formation and morphological differentiation in Streptomyces coelicolor [J].Applied Biochemistry and Biotechnology,2016,180(6):1152-1166.
|
9 |
SCOGINGS P F, HJÄLTÉN J, SKARPE C,et al.Nutrient and secondary metabolite concentrations in a savanna are independently affected by large herbivores and shoot growth rate[J].Plant Ecology,2014,215(1):73-82.
|
10 |
秦嗣军,吕德国,李志霞,等.水分胁迫对东北山樱幼苗呼吸等生理代谢的影响[J].中国农业科学,2011,44(1):201-209.
|
|
QIN S J, LÜ D G, LI Z X,et al.Effects of water stress on respiration and other physiological metabolisms of Cerasus sachalinensis Kom. seedlings[J].Scientia Agricultura Sinica,2011,44(1):201-209.
|
11 |
ZHONG M, YUAN Y H, SHU S,et al.Effects of exogenous putrescine on glycolysis and Krebs cycle metabolism in cucumber leaves subjected to salt stress[J].Plant Growth Regulation,2016,79(3):319-330.
|
12 |
张占田,陈海宁,樊兆博,等.硅对植物生长发育的影响及应用研究[J].烟台果树,2023(4):28-30.
|
|
ZHANG Z T, CHEN H N, FAN Z B,et al.Research on the effects and applications of silicon on plant growth and development[J].Yantai Fruits,2023(4):28-30.
|
13 |
何静,朱婷,黄雪玲,等.硅提高植物抗旱性的生理机制研究进展[J].热带亚热带植物学报,2022,30(6):813-822.
|
|
HE J, ZHU T, HUANG X L,et al.Research progress on physiological mechanism of silicon on enhancing plant drought resistance[J].Journal of Tropical and Subtropical Botany,2022,30(6):813-822.
|
14 |
MAJUMDAR A, UPADHYAY M K, KUMAR J S,et al.Ultra-structure alteration via enhanced silicon uptake in arsenic stressed rice cultivars under intermittent irrigation practices in Bengal delta basin[J].Ecotoxicology and Environmental Safety,2019,180:770-779.
|
15 |
ABROL E, VYAS D, KOUL S.Metabolic shift from secondary metabolite production to induction of anti-oxidative enzymes during NaCl stress in Swertia chirata Buch.Ham.[J].Acta Physiologiae Plantarum,2012,34(2):541-546.
|
16 |
孟元发.外源硅对苜蓿盐胁迫的缓解效应及调控机 理[D].呼和浩特:内蒙古大学,2021.
|
|
MENG Y F.Alleviation effects and mechanisms of exogenous silicon on salt stress-induced damage in alfalfa[D].Hohhot:Inner Mongolia University,2021.
|
17 |
酆如.外源硅对水分胁迫下番茄碳氮代谢的影响[D].杨凌:西北农林科技大学,2017.
|
|
FENG R.Effect of exogenous silicon on carbon and nitrogen metabolism in tomato under simulated drought stress[D].Yangling:Northwest A&F University,2017.
|
18 |
张新慧,郎多勇,白长财,等.外源硅对不同程度盐胁迫下甘草种子萌发和幼苗生长发育的影响[J].中草药,2014,45(14):2075-2079.
|
|
ZHANG X H, LANG D Y, BAI C C,et al.Effects of silicon addition on seed germination and seedling growth of Glvarrhiza uralensis under salt stress[J].Chinese Traditional and Herbal Drugs,2014,45(14):2075-2079.
|
19 |
李英浩.外源硅提高燕麦秆锈病抗性的生理及分子调控机制研究[D].呼和浩特:内蒙古农业大学,2023.
|
|
LI Y H.Study on the physiological and molecular regulation mechanism of exogenous silicon-improving resistance of oat to stem rust[D].Hohhot:Inner Mongolia Agricultural University,2023.
|
20 |
段元杰,孟富宣,杨玉皎,等.PEG模拟干旱对鲜食木薯华南9号幼苗生长的影响[J].湖北农业科学,2020,59(4):42-44.
|
|
DUAN Y J, MENG F X, YANG Y J,et al.Effects of PEG simulated drought on the growth of fresh-eating Manihot esculenta Crantz SC9 seedlings[J].Hubei Agricultural Sciences,2020,59(4):42-44.
|
21 |
陈彦宏.基于碳代谢研究干旱对党参多糖积累的调控机制[D].兰州:甘肃中医药大学,2024.
|
|
CHEN Y H.Study on the regulation mechanism of drought on polysaccharide accumulation of Codonopsis pilosula based on carbon metabolism[D].Lanzhou:Gansu University of Chinese Medicine,2024.
|
22 |
栗锦鹏.干旱胁迫下党参药效物质积累的生理机制研究[D].兰州:甘肃中医药大学,2023.
|
|
LI J P.Research on physiological mechanism of the accumulation of the effective substances of Codonopsis pilosula under drought stress[D].Lanzhou:Gansu University of Chinese Medicine,2023.
|
23 |
孙晓琛.基于转录组测序分析干旱胁迫下党参多糖合成机制[D].兰州:甘肃中医药大学,2022.
|
|
SUN X C.Analysis of polysaccharide biosynthesis of Codonopsis pilosula under drought stress based on transcriptome sequencing[D].Lanzhou:Gansu University of Chinese Medicine,2022.
|
24 |
周一平,张玉革,马望,等.氮添加和干旱对呼伦贝尔草原5种植物性状的影响[J].生态环境学报,2020, 29(1):41-48.
|
|
ZHOU Y P, ZHANG Y G, MA W,et al.Effects of nitrogen addition and water reduction on the traits of five plants in Hulunbeir Grassland[J].Ecology and Environmental Sciences,2020,29(1):41-48.
|
25 |
杨紫薇.拟南芥AtSUC4与AtPsaL的叶绿体定位机制的研究[D].广州:华南农业大学,2017.
|
|
YANG Z W.Subcellular localization mechanism of AtSUC4 and AtPsaL in Arabidopsis thaliana chloroplast[D].Guangzhou:South China Agricultural University,2017.
|
26 |
罗洁.叶面喷施纳米硅对干旱胁迫下黄瓜幼苗生长及生理的影响[J].农业技术与装备,2023(9):12-15.
|
|
LUO J.Effects on the seedling growth and physiology of cucumber under drought stress by spraying nano-silicon on leaf surface[J].Agricultural Technology & Equipment,2023(9):12-15.
|
27 |
李艳梅,廖上强,张琳,等.喷施钙硅对设施春茬番茄根系生长、NPK吸收及产量和水分利用的影响[J].干旱地区农业研究,2021,39(1):143-147.
|
|
LI Y M, LIAO S Q, ZHANG L,et al.Effects of calcium and silicon on the root growth,NPK uptake,yield and water use efficiency of spring-grown tomatoes[J].Agricultural Research in the Arid Areas,2021,39(1):143-147.
|
28 |
郑世英,郑晓彤,耿建芬,等.硅对干旱胁迫下野生大豆幼苗生长和生理特性的影响[J].大豆科学,2018,37(2):263-267.
|
|
ZHENG S Y, ZHENG X T, GENG J F,et al.Effects of silicon on growth and physiological characteristics of wild soybean seedlings under drought stress[J].Soybean Science,2018,37(2):263-267.
|
29 |
尹莲,孙玉东,罗德旭,等.高温胁迫对大白菜类胡萝卜素的影响[J].江西农业学报,2024,36(1):42-48.
|
|
YIN L, SUN Y D, LUO D X,et al.Effect of high temperature stress on carotenoids of Chinese cabbage[J].Acta Agriculturae Jiangxi,2024,36(1):42-48.
|
30 |
李爽.外源硅对干旱胁迫下大叶女贞光合作用及叶绿素荧光特性的影响[J].江苏农业科学,2019,47(22):174-178.
|
|
LI S.Effects of exogenous silicon on photosynthesis and fluorescence characteristics of Ligustrun lucidum under drought stress[J].Jiangsu Agricultural Sciences,2019,47(22):174-178.
|
31 |
曹守波.党参多糖合成相关基因筛选及Cp1-SST真核表达载体构建[D].太原:山西医科大学,2020.
|
|
CAO S B.Screening of genes related to Codonopsis radix polysaccharide synthesis and construction of eukaryotic expression vector of Cp1-SST[D].Taiyuan:Shanxi Medical University,2020.
|
32 |
张冉.水稻次生细胞壁超微结构与木质纤维高效酶解机制的研究[D].武汉:华中农业大学,2020.
|
|
ZHANG R.Characterization of secondary cell wall ultrastructure that determines lignocellulose enzymatic digestibility in rice[D].Wuhan:Huazhong Agricultural University,2020.
|
33 |
徐美蓉,李晓蓉,丁文姣,等.甘肃不同区域党参多糖含量的提取方法与生物活性研究[J].甘肃农业科技,2021,52(11):4-11.
|
|
XU M R, LI X R, DING W J,et al.Extraction method and biological activity of polysaccharides from Codonopsis pilosula in different regions of Gansu[J].Gansu Agricultural Science and Technology,2021,52(11):4-11.
|
34 |
武子璇,王欣,张永超,等.硅对盐胁迫下藜麦幼苗生长及抗氧化酶活性的影响[J].现代农业科技,2024(11):1-6.
|
|
WU Z X, WANG X, ZHANG Y C,et al.Effect of silica on growth and antioxidant enzyme activity of quinoa under salt stress[J].Modern Agricultural Science and Technology,2024(11):1-6
|
35 |
蒙彦宇,王健,李云,等.烟嘧磺隆对甜玉米糖酵解和三羧酸循环途径中关键物质的影响[J].江苏农业科学,2022,50(21):115-121.
|
|
MENG Y Y, WANG J, LI Y,et al.Influence of nicosulfuron on glycolysis and TCA pathway related substances in sweet maize[J].Jiangsu Agricultural Sciences,2022, 50(21):115-121.
|
36 |
王小丫,张仲兴,高彦龙,等.盐碱胁迫下苹果矮化砧木M9-T337对外源柠檬酸(CA)的响应[J].果树学报,2024,41(2):252-265.
|
|
WANG X Y, ZHANG Z X, GAO Y L,et al.Response of apple dwarfing rootstocks M9-T337 to exogenous citric acid(CA) under saline and alkaline stresses[J].Journal of Fruit Science,2024,41(2):252-265.
|