Research Article

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11/07/2014
Aphid resistance; Bulked segregant analysis; P746; R_P746; Simple sequence repeat marker; Soybean

Soybean aphid (SA: Aphis glycines Matsumura) is one of the most serious pests of soybean [Glycine max (L.) Merr.] worldwide. A single dominant gene was found to control SA resistance in soybean line P746, which exhibits antibiosis resistance. This study aimed to define the location of the SA resistance gene in P746. A F2:3 mapping population, including 312 ... more

L. Xiao; Y.P. Zhong; B. Wang; T.L. Wu
08/15/2014
AtAREB1ΔQT; Biolistics; Drought tolerance; Soybean; Transcription factor; Water use efficiency

Abscisic acid-responsive element binding protein (AREB1) is a basic domain/leucine zipper transcription factor that binds to the abscisic acid (ABA)-responsive element motif in the promoter region of ABA-inducible genes. Because AREB1 is not sufficient to direct the expression of downstream genes under non-stress conditions, an activated form of AREB1 (AREB1ΔQT) was created. Several ... more

J.P. Leite; E.G.G. Barbosa; S.R.R. Marin; J.P. Marinho; J.F.C. Carvalho; R.F. Pagliarini; A.S. Cruz; M.C.N. Oliveira; J.R.B. Farias; N. Neumaier; F.C.M. Guimarães; T. Yoshida; N. Kanamori; Y. Fujita; K. Nakashima; K.Y. Shinozaki; J.A. Desidério; A.L. Nepomuceno
02/13/2014
DDRT; Gene cloning; Glycine max; Heterosis; Soybean

Here, we compare the molecular mechanism of soybean heterosis through the differential expression of basic cloning. Specifically, we cloned 22 differentially expressed cDNA fragments from hybrid combinations of Jilin 38 x EXP (which had obvious yield advantages) and their parents. In addition, we compared the homology of these fragments and predicted their functions. Cloning ... more

J. Zhang; D. Yao; P. Wang; S.Y. Guan; J. Ma; Y.P. Fu
07/04/2014
Genetic analysis; Insect herbivory rates; Major gene plus polygene; Soybean

In order to investigate the genetic characteristics of soybean Leguminivora glycinivorella resistance and to improve soybean resistance insectivorous breeding efficiency by applying the multi-generation joint analysis method of the major gene plus polygene model, 5 pedigrees and generations (P1, F1, P2, F2, and F2:3) were used as the materials to perform the soybean L. ... more

J. Zhang; D. Yao; J. Ma; Y.P. Fu; J. Qu; P.W. Wang
05/23/2014
quantitative trait locus; Quantitative trait locus-environment interaction; Seed length; Seed width; Soybean

Seed length and seed width are an important factor to the soybean yield. So the quantitative trait loci (QTL) location for seed length and seed width could assistant the breeding of soybean. In this study, the QTL underlying seed length and seed width were studied. A recombinant inbred line population of soybeans derived from a cross between the American semi-draft cultivars Charleston ... more

J.Y. Che; J.J. Ding; C.Y. Liu; D.W. Xin; H.W. Jiang; G.H. Hu; Q.S. Chen
02/25/2014
Feed; Genetically modified organism; Maize; PCR; Soybean

Despite the controversy about genetically modified (GM) plants, they are still incrementally cultivated. In recent years, many food and feed products produced by genetic engineering technology have appeared on store shelves. Controlling the production and legal presentation of GM crops are very important for the environment and human health, especially in terms of long-term consumption. ... more

S. Meriç; Ö. Çakır; N. Turgut-Kara; Ş. Arı
03/20/2015
Chalcone isomerase; Leguminosae; Positive selection; Protein structure; Soybean

Isoflavonoids and the related synthesis enzyme, chalcone isomerase 1 (CHI1), are unique in the Leguminosae, with diverse biological functions. Among the Leguminosae, the soybean is an important oil, protein crop, and model plant. In this study, we aimed to detect the generation pattern of Leguminosae CHI1. Genome-wide sequence analysis of CHI in 3 Leguminosae and 3 other ... more

R.K. Wang; S.F. Zhan; T.J. Zhao; X.L. Zhou; C.E. Wang
02/13/2015
CPP gene family; CXC domain; Expression analysis; Phylogenetic tree; Soybean

Cysteine-rich polycomb-like protein (CPP-like) genes are a group of transcription factors with highly conserved cysteine-rich domains and are widely distributed in animals and plants, but do not present in yeast. Previous studies have shown that members of this family play important roles in the development of reproductive tissue and in the control of cell division in plants. In ... more

L. Zhang; H.K. Zhao; Y.M. Wang; C.P. Yuan; Y.Y. Zhang; H.Y. Li; X.F. Yan; Q.Y. Li; Y.S. Dong
01/30/2015
cDNA library; Soybean; Soybean regeneration; Suppression subtractive hybridization (SSH)

The development of a genetic transformation system is needed to address the problem of the low efficiency associated with soybean regeneration. To contribute to the enhancement of the soybean regenerative capacity, we explored the developmental mechanisms of soybean regeneration at the molecular level using a suppression subtractive hybridization cDNA library constructed from ... more

J. Sun; J. Li; M. Liu; B.B. Zhang; D.M. Li; M. Wang; C. Zhang; W.B. Li; A.Y. Su; X.X. Wu

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