Integrating linkage mapping and GWAS reveals novel genetic architecture of seed weight in soybean (<i>Glycine max</i> L.). [PDF]
Zhang C +9 more
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Exploration and genetic analyses of canopy leaf pigmentation changes in soybean (Glycine max L.): unveiling a novel phenotype. [PDF]
You HJ +6 more
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Nutritional analysis of vegetable soybean [<i>Glycine max</i> (L.) Merrill] accessions in Eastern India. [PDF]
Meghana D +15 more
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Unveiling synergistic QTLs associated with slow wilting in soybean (Glycine max [L.] Merr.). [PDF]
Kwon H, Kim MY, Yang X, Lee SH.
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Effect of different Bradyrhizobium japonicum inoculants on physiological and agronomic traits of soybean (Glycine max (L.) Merr.) associated with different expression of nodulation genes. [PDF]
Szczerba A +4 more
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Genotype x environment interaction and yield stability of soybean (Glycine max l.) genotypes in multi-environment trials (METs) in Nigeria. [PDF]
Abebe AT +8 more
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Soybean [Glycine max (L.) Merr.]
2014In this chapter we describe an Agrobacterium tumefaciens transformation method of soybean that utilizes mature half seeds and regeneration from the cotyledonary node region. This method results in fertile transformed soybean plants and transgenic seed in approximately 9 months.
Diane, Luth, Katey, Warnberg, Kan, Wang
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Recently the Joint Research centre of the European Commission evaluated the suitability of soils for soybean cultivation. The assessment takes into account various climatic indexes and physical factors, including soil depth and texture, as well as water availability.
MICELI, Fabiano, BARBIERI S.
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Transformation in Soybean (Glycine max L.)
1993Glycine max is the second largest cash crop in the USA and is the most important plant source of oil and high protein meal. The current cultivars and breeding lines of G. max, developed through classical breeding methods, are characterized as having an extremely narrow genetic base.
P. J. Moore, G. B. Collins
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