Showing results (11-20 of 108) with videos related to
Sort By:
Pageof 11
Plos One|August 8, 2013
Isolation and characterization of a conserved domain in the eremophyte H+-PPase familyYanqin Wang, Shuangxia Jin, Maojun Wang, et al.Plant Biotechnology Journal|March 19, 2015
Engineered chloroplast dsRNA silences cytochrome p450 monooxygenase, V-ATPase and chitin synthase genes in the insect gut and disrupts Helicoverpa zea larval development and pupationShuangxia Jin, Nameirakpam D Singh, Lebin Li, et al.Plos One|June 27, 2013
Release of proteins from intact chloroplasts induced by reactive oxygen species during biotic and abiotic stressKwang-Chul Kwon, Dheeraj Verma, Shuangxia Jin, et al.The Science of the Total Environment|June 3, 2024
Salinity stress alters plant-mediated interactions between above- and below-ground herbivoresQian Zhang, Qiongqiong Wang, Kris A G Wyckhuys, et al.Science China. Life Sciences|January 6, 2016
Transgenic Bt cotton driven by the green tissue-specific promoter shows strong toxicity to lepidopteran pests and lower Bt toxin accumulation in seedsQing Wang, Yi Zhu, Lin Sun, et al.TAG. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik|April 29, 2004
Production and characterization of somatic hybrids between upland cotton (Gossypium hirsutum) and wild cotton (G. klotzschianum Anderss) via electrofusionYuqiang Sun, Xianlong Zhang, Yichun Nie, et al.Plant Biotechnology Journal|March 19, 2026
Single-Cell CRISPR: An Efficient Strategy for Decoding Plant Cis-Regulatory ComplexityYuanhang Zhang, Xuanxuan Luo, Hongbin Li, et al.Plant Direct|June 10, 2022
CRISPR/Cas9-mediated saturated mutagenesis of the cotton <i>MIR482</i> family for dissecting the functionality of individual members in disease responseQian-Hao Zhu, Shuangxia Jin, Yuman Yuan, et al.Plant Biotechnology Journal|October 12, 2022
High-temperature stress in crops: male sterility, yield loss and potential remedy approachesAamir Hamid Khan, Ling Min, Yizan Ma, et al.Plos One|February 4, 2014
Overexpression of rice NAC gene SNAC1 improves drought and salt tolerance by enhancing root development and reducing transpiration rate in transgenic cottonGuanze Liu, Xuelin Li, Shuangxia Jin, et al.Pageof 11