Flowering process in soybean under water deficit conditions: A review on genetic aspects

Abstract Soybean is a key crop in many countries, being used from human food to the animal industry due to its nutritional properties. Financially, the grain chain moves large sums of money into the economy of producing countries. However, like other agricultural commodities around the world, it can...

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Bibliographic Details
Main Authors: Mayla Daiane Correa Molinari, Renata Fuganti-Pagliarini, Daniel de Amorim Barbosa, Silvana Regina Rockenbach Marin, Daniel Rockenbach Marin, Elíbio Leopoldo Rech, Liliane Marcia Mertz-Henning, Alexandre Lima Nepomuceno
Format: Article
Language:English
Published: Sociedade Brasileira de Genética 2021-12-01
Series:Genetics and Molecular Biology
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Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1415-47572022000100301&tlng=en
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Summary:Abstract Soybean is a key crop in many countries, being used from human food to the animal industry due to its nutritional properties. Financially, the grain chain moves large sums of money into the economy of producing countries. However, like other agricultural commodities around the world, it can have its final yield seriously compromised by abiotic environmental stressors, like drought. As flowers imply in pods and in grains inside it to minimize damages caused by water restriction, researchers have focused on understanding flowering-process related genes and their interactions. Here a review dedicated to the soybean flowering process and gene network involved in it is presented, describing gene interactions and how genes act in this complex mechanism, also ruled by environmental triggers such as day-light and circadian cycle. The objective was to gather information and insights on the soybean flowering process, aiming to provide knowledge useful to assist in the development of drought-tolerant soybean lines, minimizing losses due to delays or anticipation of flowering and, consequently, restraining financial and productivity losses.
ISSN:1678-4685