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by ascorbate ̄specific peroxidase in spinach chloroplasts Sciꎬ 151(1): 59-66.
[J]. Plant Cell Physiolꎬ 22(5): 867-880. 王立浩ꎬ 马艳青ꎬ 张宝玺ꎬ 2019. 我国辣椒品种市场需求与
NEWKIRK GMꎬ WU HHꎬ SANTANA Iꎬ et al.ꎬ 2018. Catalytic 育种趋势 [J]. 中国蔬菜ꎬ (8): 1-4.
scavenging of plant reactive oxygen species in vivo by anionic WANG SYꎬ JIAO HJꎬ FAUST Mꎬ 1991. Changes in ascorbateꎬ
cerium oxide nanoparticles [ J ]. J Visualized Expꎬ glutathioneꎬ and related enzyme activities during
138: e58373. thidiazuroninduced bud break of apple [J]. Physiol Plantꎬ
NOOR Rꎬ YASMIN Hꎬ ILYAS Nꎬ et al.ꎬ 2022. Comparative 82(2): 231-236.
analysis of iron oxide nanoparticles synthesized from ginger XIAO ZLꎬ 2022. Effects of salt stress on growthꎬ physiological
(Zingiber officinale) and cumin seeds (Cuminum cyminum) characteristicsꎬ yield and quality of processed pepper
to induce resistance in wheat against drought stress [ J]. [D]. Urumqi: Xinjiang Agricultural University: 7-34. [肖
Chemosphereꎬ 292: 133201. 中林ꎬ 2022. 盐胁迫对加工辣椒生长、生理特性、产量及品
NOUMAN Wꎬ AZIZ Uꎬ 2022. Seed priming improves salinity 质的影响 [D]. 乌鲁木齐: 新疆农业大学: 7-34.]
tolerance in Calotropis procera ( Aiton ) by increasing YAN SPꎬ CHONG PFꎬ ZHAO Mꎬ 2022. Effect of salt stress on
photosynthetic pigmentsꎬ antioxidant activitiesꎬ and phenolic the photosynthetic characteristics and endogenous hormonesꎬ
acids [J]. Biolꎬ 77: 609-626. and: A comprehensive evaluation of salt tolerance in
PRAKASH Vꎬ PERALTA ̄VIDEA Jꎬ TRIPATHI DKꎬ et al.ꎬ Reaumuria soongorica seedlings [ J]. Plant Signal Behavꎬ
2021. Recent insights into the impactꎬ fate and transport of 17(1): 2031782.
cerium oxide nanoparticles in the plant ̄soil continuum YANG Hꎬ DAI LJꎬ WEI YXꎬ et al.ꎬ 2020. Melatonin enhances
[J]. Ecotoxicol Environ Safetyꎬ 221: 112403. salt stress tolerance in rubber tree ( Hevea brasiliensis )
RAFFAELLA Bꎬ WALTER Cꎬ ANDREA Gꎬ et al.ꎬ 2022. A seedlings [J]. Ind Crops Prodꎬ 145(C): 111990.
stressful life: how plants cope with multiple biotic and YIN FMꎬ ZHANG SYꎬ CAO BLꎬ et al.ꎬ 2021. Low pH
abiotic adverse factors [J]. Plant Stressꎬ 5: 10095. alleviated salinity stress of ginger seedlings by enhancing
RAWASHDEH RYꎬ HARB AMꎬ AIHASAN AMꎬ 2020. photosynthesisꎬ fluorescenceꎬ and mineral element contents
Biological interaction levels of Zinc oxide nanoparticlesꎻ [J]. Peer Jꎬ 9: e10832.
lettuce seeds as case study [J]. Heliyonꎬ 6(5): e03983. ZHANG Lꎬ 2017. Effects of plant growth promoters on the
RONG ZYꎬ JIANG DJꎬ CAO JLꎬ et al.ꎬ 2022. Endophytic growth and stress resistance of maize [ D ]. Wuhan:
fungus Serendipita indica accelerates ascorbate ̄glutathione Huazhong Agricultural University: 3-27. [张璐ꎬ 2017. 植
cycle of white clover in response to water stress [J]. Front 物生长 促 进 剂 对 玉 米 生 长 的 影 响 及 抗 逆 效 应 研 究
Microbꎬ 13: 967851. [D]. 武汉: 华中农业大学: 3-27.]
ROSSI Lꎬ ZHANG WLꎬ LOMBARDINI Lꎬ et al.ꎬ 2016. The ZHANG TJꎬ CHEN YJꎬ LIU JZꎬ 2019. Characteristics of soil
impact of cerium oxide nanoparticles on the salt stress salinization in coastal wetlands based on canonical
responses of Brassica napus L. [ J]. Environ Pollꎬ 219: correspondence analysis [J]. Acta Ecol Sinꎬ 39(9): 3322-
28-36. 3332. [张天举ꎬ 陈永金ꎬ 刘加珍ꎬ 2019. 基于典范对应分
SARDAR Rꎬ AHMED Sꎬ SHAH AAꎬ et al.ꎬ 2022. Selenium 析的滨海湿地土壤季节性盐渍化特征 [J]. 生态学报ꎬ
nanoparticles reduced cadmium uptakeꎬ regulated nutritional 39(9): 3322-3332.]
homeostasis and antioxidative system in Coriandrum sativum ZHANG WHꎬ XIE Yꎬ WU Yꎬ et al.ꎬ 2022. Amelioration of
grown in cadmium toxic conditions [ J ]. Chemosphereꎬ salt ̄induced damage on alfalfa by exogenous application of
287(Pt 3): 132332. silicon [J]. Grassl Sciꎬ 68(1): 60-69.
SCHNEIDER Kꎬ SCHLEGEL HGꎬ 1981. Production of ZHAO LJꎬ PENG Bꎬ HERNANDEZ ̄VIEZCAS JAꎬ et al.ꎬ
superoxide radicals by soluble hydrogenase from Alcaligenes 2012. Stress response and tolerance of Zea mays to CeO
2
eutrophus H16 [J]. Biochem Jꎬ 193(1): 99-107. nanoparticles: cross talk among H O ꎬ heat shock protein and
2 2
SHA HJꎬ HU WCꎬ JIA Yꎬ et al.ꎬ 2017. Effect of exogenous lipid peroxidation [J]. ACS Nanoꎬ 6(11): 9615-9622.
salicylic acidꎬ prolineꎬ and γ ̄aminobutyric acid on yield of ZHOU XDꎬ JIA XRꎬ ZHANG ZHꎬ et al.ꎬ 2022. AgNP seed
S
rice under salt stress [J]. Acta Agron Sinꎬ 43(11): 1677- priming accelerated germination speed and altered nutritional
1688. [沙汉景ꎬ 胡文成ꎬ 贾琰ꎬ 等ꎬ 2017. 外源水杨酸、脯 profile of Chinese cabbage [ J ]. Sci Total Environꎬ
氨酸和 γ ̄氨基丁酸对盐胁迫下稻产量的影响 [J]. 作物 808: 151896.
学报ꎬ 43(11): 1677-1688.] ZOU XXꎬ HU BWꎬ XIONG Cꎬ et al.ꎬ 2022. Review
SHANG YFꎬ HASAN MKꎬ AHAMMED GJꎬ et al.ꎬ 2019. andprospects of pepper breeding for the past 60 years in
Applications of nanotechnology in plant growth and crop China [J]. Acta Hortic Sinꎬ 49(10): 2099-2118. [邹学
protection: A review [J]. Moleculesꎬ 24(14): 2558. 校ꎬ 胡博文ꎬ 熊程ꎬ 等ꎬ 2022. 中国辣椒育种 60 年回顾与
VELIKOVA Vꎬ YORDANOV Iꎬ EDREVA Aꎬ 2000. Oxidative 展望 [J]. 园艺学报ꎬ 49(10): 2099-2118.]
stress and some antioxidant systems in acid rain ̄treated bean
plants: Protective role of exogenous polyamines [J]. Plant (责任编辑 李 莉)