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Crop Physiology & Ecology

Pod Dehiscence in Soybean : Assessing Methods and Varietal Difference

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Pages 373-382 | Received 03 Feb 2006, Accepted 09 May 2006, Published online: 03 Dec 2015

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Khuliso M Nevhudzholi, Eastonce T Gwata & Godwin RA Mchau. (2020) A genetic study of pod shattering resistance in F2 soybean (Glycine max) germplasm. South African Journal of Plant and Soil 37:2, pages 174-176.
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Jutamas Romkaew, Yuichi Nagaya, Masakazu Goto, Kanya Suzuki & Teruhisa Umezaki. (2008) Pod Dehiscence in Relation to Chemical Components of Pod Shell in Soybean. Plant Production Science 11:3, pages 278-282.
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Jutamas Romkaew, Teruhisa Umezaki, Kenya Suzuki & Yuichi Nagaya. (2007) Pod Dehiscence in Relation to Pod Position and Moisture Content in Soybean. Plant Production Science 10:3, pages 292-296.
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Articles from other publishers (12)

Ana M. Santos, Ana M. González, Juan De Dios Alche & Marta Santalla. (2023) Microscopical Analysis of Autofluorescence as a Complementary and Useful Method to Assess Differences in Anatomy and Structural Distribution Underlying Evolutive Variation in Loss of Seed Dispersal in Common Bean. Plants 12:11, pages 2212.
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Jinfeng Liu, Yuzhe Zhang, Yushi Jiang, Hongji Sun, Ruijie Duan, Jing Qu, Dan Yao, Siyan Liu & Shuyan Guan. (2022) Formation Mechanism and Occurrence Law of Pod Shattering in Soybean: A Review. Phyton 91:7, pages 1327-1340.
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Ayda Krisnawati, Titik Sundari & M. Muchlish Adie. Variation in pod shattering resistance among black soybean genotypes associated with agronomic traits. Variation in pod shattering resistance among black soybean genotypes associated with agronomic traits.
Ayda Krisnawati, Andy Soegianto, Budi Waluyo & Kuswanto Kuswanto. (2020) The pod shattering resistance of soybean lines based on the shattering incidence and severity. Czech Journal of Genetics and Plant Breeding 56:3, pages 111-122.
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A Krisnawati, M M Adie & Y Baliadi. (2020) Evaluation of several soybean genotypes for pod shattering resistance. IOP Conference Series: Earth and Environmental Science 484:1, pages 012030.
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Xiang Kang, Jingjing Cai, Yexin Chen, Yuchuan Yan, Songtao Yang, Reqing He, Dong Wang & Youlin Zhu. (2019) Pod-shattering characteristics differences between two groups of soybeans are associated with specific changes in gene expression. Functional & Integrative Genomics 20:2, pages 201-210.
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Bingjie Tu, Changkai Liu, Xue Wang, Yansheng Li, Qiuying Zhang, Xiaobing Liu & Stephen J. Herbert. (2019) Greater Anatomical Differences of Pod Ventral Suture in Shatter-Susceptible and Shatter-Resistant Soybean Cultivars. Crop Science 59:6, pages 2784-2793.
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Jianan Han, Dezhi Han, Yong Guo, Hongrui Yan, Zhongyan Wei, Yu Tian & Lijuan Qiu. (2019) QTL mapping pod dehiscence resistance in soybean (Glycine max L. Merr.) using specific-locus amplified fragment sequencing. Theoretical and Applied Genetics 132:8, pages 2253-2272.
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Hideyuki FunatsukiMakita HajikaTetsuya YamadaMasaya Suzuki, Seiji Hagihara, Yoshinori Tanaka, Shohei Fujita, Masao Ishimoto & Kaien Fujino. (2012) Mapping and use of QTLs controlling pod dehiscence in soybean. Breeding Science 61:5, pages 554-558.
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Masaya Suzuki, Kaien Fujino, Yumi Nakamoto, Masao Ishimoto & Hideyuki Funatsuki. (2009) Fine mapping and development of DNA markers for the qPDH1 locus associated with pod dehiscence in soybean. Molecular Breeding 25:3, pages 407-418.
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Tetsuya YamadaHideyuki FunatsukiSeiji HagiharaShohei FujitaYoshinori TanakaHiroyuki TsujiMasao IshimotoKaien Fujino & Makita Hajika. (2009) A major QTL, qPDH1, is commonly involved in shattering resistance of soybean cultivars. Breeding Science 59:4, pages 435-440.
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Hideyuki FunatsukiMakita HajikaSeiji HagiharaTetsuya YamadaYoshinori TanakaHiroyuki TsujiMasao IshimotoKaien Fujino. (2008) Confirmation of the location and the effects of a major QTL controlling pod dehiscence, qPDH1, in soybean. Breeding Science 58:1, pages 63-69.
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