Melatonin Treatment Improves Postharvest Preservation and Resistance of Guava Fruit (Psidium guajava L.)
暂无分享,去创建一个
Tiantian Xiong | Xueping Li | Wei-xin Chen | Xiaoyang Zhu | Silin Fan | Zunyang Song | Meiyan Yang | Jiahui Cai | Qinqin Tan | Qiumei Lei
[1] Xianzhe Zheng,et al. Melatonin: Biosynthesis, content, and function in horticultural plants and potential application , 2021 .
[2] Ioannis Ganopoulos,et al. Pre- and Post-harvest Melatonin Application Boosted Phenolic Compounds Accumulation and Altered Respiratory Characters in Sweet Cherry Fruit , 2021, Frontiers in Nutrition.
[3] L. Zakaria. Diversity of Colletotrichum Species Associated with Anthracnose Disease in Tropical Fruit Crops—A Review , 2021, Agriculture.
[4] Taotao Li,et al. Insights into the roles of melatonin in maintaining quality and extending shelf life of postharvest fruits , 2021 .
[5] X. Duan,et al. Inhibition of downy blight and enhancement of resistance in litchi fruit by postharvest application of melatonin. , 2021, Food chemistry.
[6] Bao-hua Li,et al. Improving the biocontrol efficacy of Meyerozyma guilliermondii Y-1 with melatonin against postharvest gray mold in apple fruit , 2021 .
[7] Muhammad Imran Khan,et al. Postharvest ascorbic acid application maintained physiological and antioxidant responses of Guava (Psidium guajava L.) at ambient storage , 2020 .
[8] Lei Wang,et al. Role of exogenous melatonin involved in phenolic metabolism of Zizyphus jujuba fruit. , 2020, Food chemistry.
[9] R. Reiter,et al. Melatonin as an inducer of arecoline and their coordinated roles in anti-oxidative activity and immune responses. , 2020, Food & function.
[10] Soubhagya Kumar Sahu,et al. Nitric oxide application for postharvest quality retention of guava fruits , 2020, Acta Physiologiae Plantarum.
[11] Qiong Lin,et al. Melatonin treatment reduces ethylene production and maintains fruit quality in apple during postharvest storage. , 2020, Food chemistry.
[12] Lei Wang,et al. Role of exogenous melatonin in table grapes: First evidence on contribution to the phenolics-oriented response. , 2020, Food chemistry.
[13] D. Huber,et al. Delay of ripening and softening in ‘Guifei’ mango fruit by postharvest application of melatonin , 2020 .
[14] Su-Yan Wang,et al. Melatonin in fruit production and postharvest preservation: A review. , 2020, Food chemistry.
[15] Lei Wang,et al. Exogenous Melatonin and Abscisic Acid Expedite the Flavonoids Biosynthesis in Grape Berry of Vitis vinifera cv. Kyoho , 2019, Molecules.
[16] J. Golding,et al. Postharvest melatonin treatment reduces chilling injury in sapota fruit. , 2019, Journal of the science of food and agriculture.
[17] W. Liu,et al. Effects of melatonin treatment on the enzymatic browning and nutritional quality of fresh-cut pear fruit. , 2019, Food chemistry.
[18] Lingfei Xu,et al. Effects of Melatonin Treatment of Postharvest Pear Fruit on Aromatic Volatile Biosynthesis , 2019, Molecules.
[19] Y. Bi,et al. Melatonin treatment inhibits gray mold and induces disease resistance in cherry tomato fruit during postharvest , 2019, Postharvest Biology and Technology.
[20] E. Bal. Physicochemical changes in ‘Santa Rosa’ plum fruit treated with melatonin during cold storage , 2019, Journal of Food Measurement and Characterization.
[21] Xueping Li,et al. Transcriptomic analysis reveals key factors in fruit ripening and rubbery texture caused by 1-MCP in papaya , 2019, BMC Plant Biology.
[22] Yulin Cheng,et al. Melatonin decreases resistance to postharvest green mold on citrus fruit by scavenging defense-related reactive oxygen species , 2019, Postharvest Biology and Technology.
[23] Hong Zhu,et al. Comparative transcriptomic and metabolic analysis reveals the effect of melatonin on delaying anthracnose incidence upon postharvest banana fruit peel , 2019, BMC Plant Biology.
[24] Shujuan Zhang,et al. Melatonin Induces Disease Resistance to Botrytis cinerea in Tomato Fruit by Activating Jasmonic Acid Signaling Pathway. , 2019, Journal of agricultural and food chemistry.
[25] S. Munné-Bosch,et al. Melatonin as an inhibitor of sweet cherries ripening in orchard trees. , 2019, Plant physiology and biochemistry : PPB.
[26] Xiaodong Zheng,et al. Apple tree flowering is mediated by low level of melatonin under the regulation of seasonal light signal , 2019, Journal of pineal research.
[27] Lingfei Xu,et al. Melatonin Inhibits Ethylene Synthesis via Nitric Oxide Regulation To Delay Postharvest Senescence in Pears. , 2019, Journal of agricultural and food chemistry.
[28] M. B. Arnao,et al. Melatonin: A New Plant Hormone and/or a Plant Master Regulator? , 2019, Trends in plant science.
[29] H. Mishra,et al. Post-harvest shelf-life of banana and guava: Mechanisms of common degradation problems and emerging counteracting strategies , 2018, Innovative Food Science & Emerging Technologies.
[30] E. Mercado-Silva,et al. Chilling injury is associated with changes in microsomal membrane lipids in guava fruit (Psidium guajava L.) and the use of controlled atmospheres reduce these effects , 2018, Scientia Horticulturae.
[31] Lili Xu,et al. Melatonin promotes ripening of grape berry via increasing the levels of ABA, H2O2, and particularly ethylene , 2018, Horticulture Research.
[32] L. Freschi,et al. Nitro-oxidative metabolism during fruit ripening , 2018, Journal of experimental botany.
[33] Wei Chen,et al. Role of Melatonin in Cell-Wall Disassembly and Chilling Tolerance in Cold-Stored Peach Fruit. , 2018, Journal of agricultural and food chemistry.
[34] A. A. Lo’ay,et al. Influence of edible coatings chitosan/PVP blending with salicylic acid on biochemical fruit skin browning incidence and shelf life of guava fruits cv. ‘Banati’ , 2018 .
[35] Changhong Liu,et al. Effects of melatonin treatment on the postharvest quality of strawberry fruit , 2018 .
[36] E. L. de Souza,et al. Control of anthracnose caused by Colletotrichum species in guava, mango and papaya using synergistic combinations of chitosan and Cymbopogon citratus (D.C. ex Nees) Stapf. essential oil. , 2018, International journal of food microbiology.
[37] R. Datla,et al. Melatonin Attenuates Potato Late Blight by Disrupting Cell Growth, Stress Tolerance, Fungicide Susceptibility and Homeostasis of Gene Expression in Phytophthora infestans , 2017, Front. Plant Sci..
[38] R. Reiter,et al. Natural Variation in Banana Varieties Highlights the Role of Melatonin in Postharvest Ripening and Quality. , 2017, Journal of agricultural and food chemistry.
[39] Lili Xu,et al. Melatonin Enhances Phenolics Accumulation Partially via Ethylene Signaling and Resulted in High Antioxidant Capacity in Grape Berries , 2017, Front. Plant Sci..
[40] Morteza Soleimani Aghdam,et al. Melatonin treatment attenuates postharvest decay and maintains nutritional quality of strawberry fruits (Fragaria×anannasa cv. Selva) by enhancing GABA shunt activity. , 2017, Food chemistry.
[41] B. Zhao,et al. Proteomic analysis reveals a role of melatonin in promoting cucumber seed germination under high salinity by regulating energy production , 2017, Scientific Reports.
[42] W. Cao,et al. Melatonin treatment delays postharvest senescence and regulates reactive oxygen species metabolism in peach fruit , 2016 .
[43] Weidong Huang,et al. Effect of Cultivar, Temperature, and Environmental Conditions on the Dynamic Change of Melatonin in Mulberry Fruit Development and Wine Fermentation. , 2016, Journal of food science.
[44] L. Ananthanarayan,et al. Postharvest shelf-life extension of pink guavas (Psidium guajava L.) using HPMC-based edible surface coatings , 2016, Journal of Food Science and Technology.
[45] Haijun Zhang,et al. Melatonin promotes ripening and improves quality of tomato fruit during postharvest life , 2014, Journal of experimental botany.
[46] Wang-jin Lu,et al. Isolation and characterization of ethylene response factor family genes during development, ethylene regulation and stress treatments in papaya fruit. , 2013, Plant physiology and biochemistry : PPB.
[47] M. Nair,et al. Nutritional and nutraceutical comparison of Jamaican Psidium cattleianum (strawberry guava) and Psidium guajava (common guava) fruits. , 2012, Food chemistry.
[48] S. Singh,et al. Guava (Psidium guajava L.) , 2011 .
[49] S. Singh,et al. Response of climacteric-type guava (Psidium guajava L.) to postharvest treatment with 1-MCP , 2008 .
[50] Daryl C. Joyce,et al. Advances in understanding of enzymatic browning in harvested litchi fruit , 2004 .
[51] G. González-Aguilar,et al. Methyl jasmonate treatments reduce chilling injury and activate the defense response of guava fruits. , 2004, Biochemical and biophysical research communications.
[52] R. Pandey,et al. Effect of environmental conditions and inoculum density on infection of guava fruits by Colletotrichum glososporioides , 2004, Mycopathologia.
[53] N. Peres,et al. Effect of the postharvest treatment with calcium chloride by the temperature differential method on the control of Colletotrichum gloeosporioides in guavas 'Branca de Kumagaii'. , 2000 .