Molecular breeding to overcome biotic stresses in soybean: update

N Tripathi, MK Tripathi, S Tiwari, DK Payasi - Plants, 2022 - mdpi.com
Soybean (Glycine max (L.) Merr.) is an important leguminous crop and biotic stresses are a
global concern for soybean growers. In recent decades, significant development has been …

Molecular characterization and genetic diversity studies of Indian soybean (Glycine max (L.) Merr.) cultivars using SSR markers

SPJ Kumar, C Susmita, KV Sripathy, DK Agarwal… - Molecular Biology …, 2022 - Springer
Background The genetic base of soybean cultivars in India has been reported to be
extremely narrow, due to repeated use of few selected and elite genotypes as parents in the …

Genetic diversity and population structure analysis in cultivated soybean (Glycine max [L.] Merr.) using SSR and EST-SSR markers

R Rani, G Raza, MH Tung, M Rizwan, H Ashfaq… - PLoS …, 2023 - journals.plos.org
Soybean (Glycine max) is an important legume that is used to fulfill the need of protein and
oil of large number of population across the world. There are large numbers of soybean …

Physiological and molecular genetic studies on two elicitors for improving the tolerance of six Egyptian soybean cultivars to cotton leaf worm

NA Ashry, MM Ghonaim, HI Mohamed… - Plant Physiology and …, 2018 - Elsevier
Cotton leaf worm (Spodoptera littoralis) is considered one of the most destructive agricultural
pests in Egypt. Six soybean cultivars (Giza-21, Giza-22, Giza-35, Giza-82, Giza-83 and Giza …

Identification and genetic diversity analysis of high-yielding charcoal rot resistant soybean genotypes

PK Amrate, MK Shrivastava, MS Bhale, N Agrawal… - Scientific Reports, 2023 - nature.com
Charcoal rot disease caused by Macrophomina phaseolina (Tassi) Goid is one of the most
devastating diseases in soybean in India. During 2018, 226 diverse soybean genotypes …

Assessment of Genetic Diversity of Soybean (Glycine max) Genotypes Using Qualitative Traits and Microsatellite Markers

S Kachare, S Tiwari, N Tripathi, VV Thakur - Agricultural Research, 2020 - Springer
Genetic diversity among 45 genotypes of soybean (Glycine max (L.) Merr.) was assessed
based on qualitative traits and 36 microsatellite markers. Forty-five genotypes were …

Genetic inheritance and identification of germplasm sources for anthracnose resistance in soybean [Glycine max (L.) Merr.]

V Nataraj, S Maranna, G Kumawat, S Gupta… - Genetic Resources and …, 2020 - Springer
Soybean anthracnose caused by Colletotrichum truncatum (Schw.) Andrus & WD Moore is a
devastating disease in Central and Southern India. Chemical control of this disease is …

[PDF][PDF] Identification of Indian soybean (Glycine max [L.] Merr.) genotypes for drought tolerance and genetic diversity analysis using SSR markers

MK Tripathi, N Tripathi, S Tiwari, N Mishra, A Sharma… - Scientist, 2023 - researchgate.net
2Department of Plant Molecular Biology & Biotechnology, College of Agriculture, Rajmata
Vijayaraje Scindia Krishi Vishwa Vidyalaya, Gwalior, 474002, MP, India 3Directorate of …

Unlocking genetic diversity and germplasm characterization with molecular markers: Strategies for crop improvement

A Bunjkar, P Walia, SS Sandal - Journal of Advances in Biology & …, 2024 - stm.e4journal.com
Molecular markers have emerged as the most useful tools in assessment of genetic diversity
and characterizing germplasm, for crop improvement. This review paper comprehensively …

Development of improved genotypes for extra early maturity, higher yield and Mungbean Yellow Mosaic India Virus (MYMIV) resistance in soybean (Glycine max)

S Maranna, G Kumawat, V Nataraj, BS Gill… - Crop and Pasture …, 2023 - CSIRO Publishing
Context Breeding for early maturity and higher yield is the principal objective in genetic
improvement of Indian soybean. Yellow Mosaic Disease caused by Mungbean Yellow …