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1.
A callus transformation system for gene functional studies in soybean
XU Kun, ZHANG Xiao-mei, FAN Cheng-ming, CHEN Fu-lu, ZHU Jin-long, ZHANG Shi-long, CHEN Qing-shan, FU Yong-fu
Journal of Integrative Agriculture 2017, 16 (
09
): 1913-1922. DOI:
10.1016/S2095-3119(16)61621-0
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Obtaining transgenic plants is a common method for analyzing gene function. Unfortunately, stable genetic transformation is difficult to achieve, especially for plants (e.g., soybean), which are recalcitrant to genetic transformation. Transient expression systems, such as Arabidopsis protoplast, Nicotiana leaves, and onion bulb leaves are widely used for gene functional studies. A simple method for obtaining transgenic soybean callus tissues was reported recently. We extend this system with simplified culture conditions to gene functional studies, including promoter analysis, expression and subcellular localization of the target protein, and protein-protein interaction. We also evaluate the plasticity of this system with soybean varieties, different vector constructs, and various Agrobacterium strains. The results indicated that the callus transformation system is efficient and adaptable for gene functional investigation in soybean genotype-, vector-, and
Agrobacterium
strain-independent modes. We demonstrated an easy set-up and practical homologous strategy for soybean gene functional studies.
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2.
Novel 6-bp Deletion Mutation in visfatin Gene and Its Associations with Birth Weight and Bodyweight in Chinese Cattle
WANG Mou, ZHANG Ya, YU Hui, LAI Xin-sheng, ZHU Jin-long, JIAO Jin-zhen, LAN Xian-yong, LEI Chuzhao, ZHANG Liang-zhi, CHEN Hong
Journal of Integrative Agriculture 2012, 12 (
8
): 1327-1332. DOI:
10.1016/S1671-2927(00)8662
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Visfatin, like insulin, induces phosphorylation of signal transduction proteins that operatate downstream of the insulin receptor. The present study is focused on detecting deletion of visfatin gene and analyzing its effect on growth traits in six Chinese cattle breeds (Nangyang, Luxi, Qinchuan, Jiaxian Red, Grassland Red, and Chinese Holstein) using DNA sequencing, PCR-SSCP and PCR-RFLP methods. For the first time, a 6-bp deletion of visfatin was described and two alleles were revealed: W and D. The χ2-test analysis demonstrated that all breeds were in agreement with Hardy-Weinberg equilibrium (P>0.05). The associations of the novel 6-bp deletion of visfatin gene with growth traits of Nanyang cattle at 6-, 12-, 18-, and 24-mon-old were analyzed. Birth weight, 12- and 24-mon-old cattle with genotype WW had greater birth weight and average daily gain than genotype WD (P<0.01 or P<0.05). These results suggest that the deletion may influence the birth weight and bodyweight in 12 mon-old cattle.
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