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12 期 林欣琪等: γ ̄氨基丁酸(GABA)种子引发缓解辣椒盐胁迫的效果及生理生化的变化 2 3 4 9
et al.ꎬ 2018)ꎬ但本研究结果表明ꎬGABA 种子引发 BHANUPRAKASH Kꎬ YOGEESHA HSꎬ 2016. Seed priming
处理提高辣椒植株的耐盐性可能与 Na / K 的选择 for abiotic stress tolerance: an overview [J]. Abiotic Stress
+
+
Physiol Hortic Crops: 103 - 117. DOI: 10.1007/ 978 - 81 -
性吸收或转运无关ꎮ 322-2725-0_6.
灰色关联法作为综合评价方法被广泛用于作 BRADFORD MMꎬ 1976. A rapid and sensitive method for the
物抗性研究( 高安静等ꎬ2021)ꎮ 由于 GABA 对植 quantitation of microgram quantities of protein utilizing the
principle of protein ̄dye binding [ J ]. Anal Biochemꎬ
物的生理活动影响比较复杂ꎬ本研究根据灰色关 72(1/ 2): 248-254.
联度法对 GABA 种子引发处理影响辣椒植株耐盐 BRUGNOLI Eꎬ LAUTERI Mꎬ 1991. Effects of salinity on
stomatal conductanceꎬ photosynthetic capacityꎬ and carbon
性的机制进行了分析ꎬ发现 GABA 引发处理主要
isotope discrimination of salt ̄tolerant ( Gossypium hirsutum
通过提高抗氧化酶 POD、CAT 的活性和渗透调节 L.) and salt ̄sensitive ( Phaseolus vulgaris L.) C non ̄
3
halophytes [J]. Plant Physiolꎬ 95(2): 628-635.
物质含量等途径来减缓盐胁迫的伤害ꎮ
CHEN XFꎬ ZHANG RDꎬ XING YFꎬ et al.ꎬ 2021. The efficacy
综上所述ꎬ6.0 μmolL GABA 种子引发处理
 ̄1
of different seed priming agents for promoting sorghum
可有效促进辣椒植株在盐胁迫下的生长ꎬ可作为 germination under salt stress [ J ]. PLoS ONEꎬ
生产用种子处理方法ꎮ GABA 种子引发处理提高 16(1): e0245505.
CHENG BZꎬ LI Zꎬ LIANG LLꎬ et al.ꎬ 2018. The γ ̄
辣椒植株耐盐性的作用机制可能包括:促进植株 aminobutyric acid ( GABA) alleviates salt stress damage
的生理代谢ꎬ提高可溶性糖、可溶性蛋白及渗透调 during seeds germination of white clover associated with
+ +
节物质脯氨酸的含量ꎬ增强植株的抗氧化能力ꎬ降 Na / K transportationꎬ dehydrins accumulationꎬ and stress ̄
related genes expression in white clover [J]. Int J Mol Sciꎬ
低活性氧水平和膜脂过氧化损伤ꎬ维持光合作用 19(9): 2520.
系统的正常运行ꎮ CUARTERO Jꎬ BOLARIN MCꎬ ASINS MJꎬ et al.ꎬ 2006.
Increasing salt tolerance in the tomato [ J]. J Exp Botꎬ
57(5): 1045-1058.
DENG Yꎬ XU LJꎬ ZENG Xꎬ et al.ꎬ 2010. New perspective of
参考文献: GABA as an inhibitor of formation of advanced lipoxidation
end ̄products: it’ s interaction with malondiadehyde [ J].
ABDEL LATEF AAHꎬ HE CXꎬ 2014. Does inoculation with J Biomed Nanotechnolꎬ 6(4): 318-324.
Glomus mosseae improve salt tolerance in pepper plants? ELBADRI AMꎬ BATOOL Mꎬ WANG CYꎬ et al.ꎬ 2021.
[J]. J Plant Growth Regulꎬ 33(3): 644-653. Selenium and zinc oxide nanoparticles modulate the
ABDEL LATEF AAHꎬ MOSTOFA MGꎬ RAHMAN Mꎬ et al.ꎬ molecular and morpho ̄physiological processes during seed
2019. Extracts from yeast and carrot roots enhance maize germination of Brassica napus under salt stress [ J ].
performance under seawater ̄induced salt stress by altering Ecotoxicol Environ Safꎬ 225: 112695.
physio ̄biochemical characteristics of stressed plants [ J]. FLOWERS TJꎬ COLMER TDꎬ 2015. Plant salt tolerance:
J Plant Growth Regulꎬ 38(3): 966-979. adaptations in halophytes [J]. Ann Botꎬ 115(3): 327-331.
ADHIKARI Bꎬ OLORUNWA OJꎬ BARICKMAN TCꎬ 2022. GAMMOUDI Nꎬ KARMOUS Iꎬ ZERRIA Kꎬ et al.ꎬ 2020.
Seed priming enhances seed germination and morphological Efficiency of pepper seed invigoration through hydrogen
traits of Lactuca sativa L. under salt stress [J]. Seedꎬ 1(2): peroxide priming to improve in vitro salt and drought stress
74-86. tolerance [J]. Hortic Environ Biotechnolꎬ 61(4): 703-714.
AFZAL Iꎬ RAUF Sꎬ BASRA Sꎬ et al.ꎬ 2008. Halopriming GAO AJꎬ LIU TTꎬ ZHOU MLꎬ et al.ꎬ 2021. Effects of
improves vigorꎬ metabolism of reserves and ionic contents in exogenous melatonin on growth and physiological
wheat seedlings under salt stress [J]. Plant Soil Environꎬ characteristics of tartary buckwheat seedlings under drought
54(9): 382-388. stress [J]. J S Agricꎬ 52(11): 3003-3012. [高安静ꎬ 刘婷
AKASHI Kꎬ NISHIMURA Nꎬ ISHIDA Yꎬ et al.ꎬ 2004. Potent 婷ꎬ 周美亮ꎬ 等ꎬ 2021. 外源褪黑素对干旱胁迫下苦荞幼
hydroxyl radical ̄scavenging activity of drought ̄induced type ̄ 苗生长及生理特性的影响 [J]. 南方农业学报ꎬ 52(11):
2 metallothionein in wild watermelon [J]. Biochem Biophys 3003-3012.]
Res Communꎬ 323(1): 72-78. GARG AKꎬ KIM JKꎬ OWENS TGꎬ et al.ꎬ 2002. Trehalose
BAI MYꎬ LÜ SSꎬ XIA XYꎬ 2022. Effects of γ ̄aminobutyric accumulation in rice plants confers high tolerance levels to
acid on the growth and related physiological characteristics of different abiotic stresses [ J]. Proc Natl Acad Sci USAꎬ
Vaccinium plantlets in vitro [J]. Plant Physiol Jꎬ 58(3): 99(25): 15898-15903.
577-586. [白明月ꎬ 吕爽爽ꎬ 夏秀英ꎬ 2022. γ ̄氨基丁酸对 HU HRꎬ DU Lꎬ ZHANG RHꎬ et al.ꎬ 2022. Research progress
越橘试管苗生长及相关生理代谢的影响 [J]. 植物生理 in the adaptation of hot pepper ( Capsicum annuum L.) to
学报ꎬ 58(3): 577-586.] abiotic stress [J]. Biotechnol Bullꎬ 38(12):1-15. [胡华
BAO SDꎬ 2000. Soil agrochemical analysis [ M]. 3rd ed. 冉ꎬ 杜磊ꎬ 张芮豪ꎬ 等ꎬ 2022. 辣椒适应非生物胁迫的研
Beijing: China Agricultural Press. [鲍士旦ꎬ 2000. 土壤农 究进展 [J]. 生物技术通报ꎬ 38(12): 1-15.]
化分析 [M]. 第三版. 北京: 中国农业出版社.] JIA Yꎬ ZHAO HWꎬ WANG JGꎬ et al.ꎬ 2014. Research progress

