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Frontiers in Plant Science|May 6, 2016
Plant-Aphid Interactions Under Elevated CO2: Some Cues from Aphid Feeding BehaviorYucheng Sun, Huijuan Guo, Feng GeThe New Phytologist|November 21, 2017
Elevated CO<sub>2</sub> increases R gene-dependent resistance of Medicago truncatula against the pea aphid by up-regulating a heat shock geneYucheng Sun, Huijuan Guo, Erliang Yuan, et al.Pest Management Science|February 1, 2018
Differential accumulation of leucine and methionine in red and green pea aphids leads to different fecundity in response to nitrogen fertilizationJing Gao, Huijuan Guo, Yucheng Sun, et al.Elife|July 31, 2020
Apoptotic neurodegeneration in whitefly promotes the spread of TYLCVShifan Wang, Huijuan Guo, Feng Ge, et al.Autophagy|April 18, 2022
Apoptosis and autophagy coordinately shape vector tolerance to arbovirus infectionShifan Wang, Huijuan Guo, Feng Ge, et al.Plant Science : an International Journal of Experimental Plant Biology|July 16, 2013
Elevated CO2 increases the abundance of the peach aphid on Arabidopsis by reducing jasmonic acid defensesYucheng Sun, Huijuan Guo, Keyan Zhu-Salzman, et al.Frontiers in Plant Science|November 25, 2016
The Contrasting Effects of Elevated CO<sub>2</sub> on TYLCV Infection of Tomato Genotypes with and without the Resistance Gene, <i>Mi-1.2</i>Huijuan Guo, Lichao Huang, Yucheng Sun, et al.Nature Communications|February 12, 2022
PEBP balances apoptosis and autophagy in whitefly upon arbovirus infectionShifan Wang, Huijuan Guo, Keyan Zhu-Salzman, et al.The New Phytologist|September 11, 2013
Elevated CO2 decreases the response of the ethylene signaling pathway in Medicago truncatula and increases the abundance of the pea aphidHuijuan Guo, Yucheng Sun, Yuefei Li, et al.Global Change Biology|January 13, 2015
Plant stomatal closure improves aphid feeding under elevated CO<sub>2</sub>Yucheng Sun, Huijuan Guo, Liang Yuan, et al.Pageof 91