Bulletin of Botanical Research ›› 2023, Vol. 43 ›› Issue (3): 388-395.doi: 10.7525/j.issn.1673-5102.2023.03.008
• Physiology and Ecology • Previous Articles Next Articles
Chenjing SHEN1, Wenbo WU1, Luran GENG1, Fulong WANG2, Pengzhou ZHAO2, Jinhui SONG2, Yaguang ZHAN1,3, Jing YIN1,3()
Received:
2022-10-03
Online:
2023-05-20
Published:
2023-05-11
Contact:
Jing YIN
E-mail:yinjing20135@163.com
About author:
SHEN Chenjing(1995—),female,master candidate,major in plant secondary metabolism regulation.
Supported by:
CLC Number:
Chenjing SHEN, Wenbo WU, Luran GENG, Fulong WANG, Pengzhou ZHAO, Jinhui SONG, Yaguang ZHAN, Jing YIN. Regulatory Effects of Salicylic Acid,Nano-zinc Oxide and Growth-promoting Fungi YZ13-1 on the Resistance to Drought Stress of Fraxinus mandshurica[J]. Bulletin of Botanical Research, 2023, 43(3): 388-395.
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URL: https://bbr.nefu.edu.cn/EN/10.7525/j.issn.1673-5102.2023.03.008
1 | 梁楠松.水曲柳FmTCP2和FmTCP15参与叶发育与干旱耐受性的功能分析[D].哈尔滨:东北林业大学,2021. |
LIANG N S.The function of FmTCP2 and FmTCP15 in leaf development and drought tolerance in Fraxinus mandshurica Rupr.[D].Harbin:Northeast Forestry University,2021. | |
2 | 黄文功.亚麻和水曲柳对低钾或磷耐受性及基因表达调控研究[D].哈尔滨:东北林业大学,2020. |
HUANG W G.Study on tolerance of Linum usttatissimum and Fraxinus mandshurica to low potassium or phosphorus and regulation of gene expression[D].Harbin:Northeast Forestry University,2020. | |
3 | ZIA R, NAWAZ M S, SIDDIQUE M J,et al.Plant survival under drought stress:implications,adaptive responses,and integrated rhizosphere management strategy for stress mitigation[J].Microbiological Research,2021,242:126626. |
4 | 魏斌,李毅,苏世平.外源脯氨酸对自然干旱下白刺叶片气孔的影响[J].植物研究,2022,42(3):492-501. |
WEI B, LI Y, SU S P.The effect of exogenous proline on the stomata of Nitraria tangutorum leaves under natural drought[J].Bulletin of Botanical Research,2022,42(3):492-501. | |
5 | 卫星,王政权,张国珍,等.水曲柳苗木不同根序对干旱胁迫的生理生化反应[J].林业科学,2009,45(6):16-21. |
WEI X, WANG Z Q, ZHENG G Z,et al.Physiological and biochemical responses of different order roots in Fraxinus mandshurica seedlings to drought stress[J].Scientia Silvae Sinicae,2009,45(6):16-21. | |
6 | DE BRITTO S, JOSHI S M, JOGAIAH S.Trehalose:a mycogenic cell wall elicitor elicit resistance against leaf spot disease of broccoli and acts as a plant growth regulator[J].Biotechnology Reports,2021,32:e00690. |
7 | 耿贵,李任任,吕春华,等.外源调节物质对盐胁迫下植物生长调控研究进展[J].中国农学通报,2020,36(24):85-90. |
GENG G, LI R R, LÜ C H,et al.Exogenous regulator substances regulate plant growth under salt stress:a review[J].Chinese Agricultural Science Bulletin,2020,36(24):85-90. | |
8 | 齐敏杰,梁娥,张来.诱导子在药用植物毛状根生产次生代谢产物中的作用机理与应用[J].生物学杂志,2020,37(5):99-102. |
JI M J, LIAN E, ZHANG L.Mechanism and application of elicitors in the production of secondary metabolites from hairy roots of medicinal plants[J].Journal of Biology,2020,37(5):99-102. | |
9 | TAYYAB N,NAZ R, YASMIN H,et al.Combined seed and foliar pre-treatments with exogenous methyl jasmonate and salicylic acid mitigate drought-induced stress in maize[J].PLoS One,2020,15(5):e0232269. |
10 | TORUN H.Time-course analysis of salicylic acid effects on ROS regulation and antioxidant defense in roots of hulled and hulless barley under combined stress of drought,heat and salinity[J].Physiologia Plantarum,2019,165(2):169-182. |
11 | 马乐元.水杨酸对小冠花种子萌发和幼苗抗旱性的调控作用及其生理机制研究[D].兰州:甘肃农业大学,2017. |
MA L Y.Study on modulation effects and the physiological mechanism of salicylic acid on seed germination and seedling drought resistance of Coronilla varia [D].Lanzhou:Gansu Agricultural University,2017. | |
12 | REDDY PULLAGURALA V L, ADISA I O, RAWAT S,et al.Finding the conditions for the beneficial use of ZnO nanoparticles towards plants-a review[J].Environmental Pollution,2018,241:1175-1181. |
13 | RIZWAN M,ALI S,ALI B,et al.Zinc and iron oxide nanoparticles improved the plant growth and reduced the oxidative stress and cadmium concentration in wheat[J].Chemosphere,2019,214:269-277. |
14 | 孙露莹.纳米氧化锌诱导褪黑素信号调控玉米抗旱性的生理机制[D].长春:中国科学院大学(中国科学院东北地理与农业生态研究所),2020. |
SUN L Y.Induction of drought tolerance by ZnO nanoparticles via regulating melatonin signaling and its mechanism[D].Changchun:University of Chinese Academy of Sciences,2020. | |
15 | FONTANA D C, DE PAULA S, TORRES A G,et al.Endophytic fungi:biological control and induced resistance to phytopathogens and abiotic stresses[J].Pathogens,2021,10(5):570. |
16 | 刘燕.深色有隔内生真菌调控红豆树生长及耐旱响应机理[D].贵阳:贵州大学,2020. |
LIU Y.Mechanism of dark septate endophytic fungi regulating growth and drought tolerance of Ormosia hosiei Hensl[D].Guiyang:Guizhou University,2020. | |
17 | 赵敏,郝文颖,宁心哲,等.红花尔基樟子松优良抗旱菌树组合的筛选[J].植物研究,2020,40(1):133-140. |
ZHAO M, HAO W Y, NING X Z,et al.Screening of excellent ectomycorrhizal fungi-tree for drought resistant with Pinus sylvestris var. mongolica [J].Bulletin of Botanical Research,2020,40(1):133-140. | |
18 | 李虹谕,卫星,徐庆祥.接种丛枝菌根真菌对水曲柳实生苗光合特性和叶片解剖结构的影响[J].东北林业大学学报,2019,47(10):49-54. |
LI H Y, WEI X, XU Q X.Photosynthetic functions and anatomical structure variations of Fraxinus mandshurica seedling leaf after AMF inoculation[J].Journal of Northeast Forestry University,2019,47(10):49-54. | |
19 | 郑金龙,易克贤,习金根,等.剑麻感染烟草疫霉菌后几种重要防御酶活性的变化[J].中国麻业科学,2019,41(5):210-216. |
ZHENG J L, YI K X, XI J G,et al.Several cases of sisal infection with phytophthora nicotianae changes in important defense enzyme A[J].Plant Fiber Sciences in China,2019,41(5):210-216. | |
20 | 赵英力,李冬杰,崔旭盛,等.干旱胁迫下连翘种苗对外源茉莉酸甲酯的生理生化响应[J].中药材,2020,43(8):1830-1834. |
ZHAO Y L, LI D J, CUI X S,et al.Physiological and biochemical responses of forsythia seedlings to exogenous methyl jasmonate under drought stress[J].Journal of Chinese Medicinal Materials,2020,43(8):1830-1834. | |
21 | 李可鑫,赵微,徐林琳,等.温度胁迫对白桦丛生苗次生产物合成及抗逆酶积累的影响[J].北京林业大学学报,2021,43(7):31-39. |
LI K X, ZHAO W, XU L L,et al.Effects of temperature stress on production of secondary metabolites and accumulation of defensive enzymes in multiple shoots of Betula platyphylla [J].Journal of Beijing Forestry University,2021,43(7):31-39. | |
22 | NADARAJAH K K.ROS homeostasis in abiotic stress tolerance in plants[J].International Journal of Molecular Sciences,2020,21(15):5208. |
23 | ULLAH C, TSAI C J, UNSICKER S B,et al.Salicylic acid activates poplar defense against the biotrophic rust fungus Melampsora larici-populina via increased biosynthesis of catechin and proanthocyanidins[J].New phytologist,2019,221(2):960-975. |
24 | 邓凯,汶紫叶,李立,等.外源水杨酸对北柴胡幼苗抗旱性的影响[J].延安大学学报(自然科学版),2018,37(1):80-83. |
DENG K, WEN Z Y, LI L,et al.Effects of salicylic acid on drought resistance of Bupleurum Chinense DC.seedlings[J].Journal of Yan’an University (Natural Science Edition),2018,37(1):80-83. | |
25 | 及利,韩姣,王芳,等.干旱胁迫对不同土壤基质下核桃楸幼苗的生理特性的影响[J].植物研究,2019,39(5):722-732. |
JI L, HAN J, WANG F,et al.Effects of drought stress on photosynthetic and physiological characteristics of Juglans mandshurica seedlings in different soil substrates[J].Bulletin of Botanical Research,2019,39(5):722-732. | |
26 | 李聪聪,李乃光,吴正锋.高温干旱复合胁迫对花生幼苗生理指标的影响[J].中国油料作物学报,2021,43(5):906-913. |
LI C C, LI N G, WU Z F.Effects of high temperature drought combined stress on physiological indexes of different peanut varieties[J].Chinese Journal of Oil Crop Sciences,2021,43(5):906-913. | |
27 | DONG N Q, LIN H X.Contribution of phenylpropanoid metabolism to plant development and plant-environment interactions[J].Journal of Integrative Plant Biology,2021,63(1):180-209. |
28 | QIN Y, LI Q, AN Q J,et al.A phenylalanine ammonia lyase from Fritillaria unibracteata promotes drought tolerance by regulating lignin biosynthesis and SA signaling pathway[J].International Journal of Biological Macromolecules,2022,213:574-588. |
29 | EL-BADRI A M A, BATOOL M, MOHAMED I A A,et al.Modulation of salinity impact on early seedling stage via nano-priming application of zinc oxide on rapeseed (Brassica napus L.)[J].Plant Physiology and Biochemistry,2021,166:376-392. |
30 | RIPA F A, CAO W D, TONG S,et al.Assessment of plant growth promoting and abiotic stress tolerance properties of wheat endophytic fungi[J].Biomed Research International,2019:6105865. |
31 | ZHOU X R, DAI L, XU G F,et al.A strain of Phoma species improves drought tolerance of Pinus tabulaeformis [J].Scientific Reports,2021,11(1):7637. |
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