Grain yield stability of black soybean lines across three agroecosystems in West Java, Indonesia

Author:

Wijaya Acep Atma12,Maulana Haris1,Susanto Gatut Wahyu Anggoro3,Sumardi Dadang4,Amien Suseno1,Ruswandi Dedi1,Karuniawan Agung1

Affiliation:

1. Department of Agronomy, Faculty of Agriculture, Universitas Padjadjaran , Bandung , Indonesia

2. Study Program of Agrotechnology, Faculty of Agriculture, Universitas Majalengka , Majalengka , Indonesia

3. National Research and Innovation Agency , Research Organization for Agriculture and Food , Indonesia

4. School of Life Sciences and Technology , Institut Teknologi Bandung , Indonesia

Abstract

Abstract Black soybean (Glycine soja (L.) Merril) is one of the potential agricultural commodities in Indonesia. The multilocation trial is the primary requirement for variety release before farmers can widely use the new varieties. Various stability measurements on grain yields will provide more accurate information in selecting superior lines. The aims of the study were to: (i) identify the effect of genotype by environment interactions (G×E) on black soybean grain yields; (ii) select the black soybean lines with stable and high grain yields in different agroecosystems; and (iii) determine the best representative environment for testing black soybean lines. The field trials used an augmented design that was applied in three blocks for each location. The research was conducted in West Java, Indonesia, specifically in Sumedang, Indramayu, and Majalengka. The three locations are traditionally soybean production areas in West Java. The results showed that G×E significantly affected grain yields, with a contribution of 38.35%. Based on the results of stability testing using parametric, non-parametric, and genotype plus genotype by environments (GGE) biplot measurements, the G13, G22, G25, and G26 lines were considered the most stable and produced the highest yields in the three agroecosystems. In addition, Sumedang is the most representative location for testing black soybeans in Indonesia. Therefore, the four lines can be proposed as new superior lines for black soybeans with high yields and stability in three environments. Information about the relationship between the yield stability parameters can be used for the most accessible parameter selection.

Publisher

Walter de Gruyter GmbH

Subject

General Agricultural and Biological Sciences

Reference51 articles.

1. Li Y, Du M, Zhang Q, Wang G, Hashemi M, Liu X. Greater differences exist in seed protein, oil, total soluble sugar and sucrose content of vegetable soybean genotypes (Glycine max (L.) Merrill) in Northeast China. Aust J Crop Sci. 2012;6:1681–6.

2. Chatterjee C, Gleddie S, Xiao C-W. Soybean bioactive peptides and their functional properties. Nutrients. 2018;10:1–16. 10.3390/nu10091211.

3. He F, Chen J. Consumption of soybean, soy foods, soy isoflavones and breast cancer incidence: Differences between Chinese women and women in Western countries and possible mechanisms. Food Sci Hum Wellness. 2013;2:146–61. 10.1016/j.fshw.2013.08.002.

4. Sumardi D, Pancoro A, Yulia E, Musfiroh I, Prasetiyono J, Karuniawan A, et al. Potential of local black soybean as a source of the isoflavones daidzein and genistein. Int Food Res J. 2017;24:2140–5.

5. Indonesian Legumes and Tuber Crops Research Institute. Hasil utama penelitian tanaman aneka kacang dan umbi. Malang, Indonesia; 2020.

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