Autonomous self‐pollination provides reproductive assurance, whereas insect pollination enhances yield in sesame under tropical field conditions

Abstract Sesame ( Sesamum indicum L.) exhibits a mixed mating system, in which both self‐ and cross‐pollination can occur. In tropical environments, the contribution of pollinators may enhance fertilization efficiency and increase crop yield. This study aimed to evaluate the role of pollinators in sesame production and its degree of pollinator dependence. Two experiments were carried out in Cruz das Almas, Bahia, Brazil. In the first, open‐pollinated plants were compared with pollinator‐excluded plants (cages) to assess grain yield, yield components and seed quality. In the second, pollination requirements were investigated using five treatments: open pollination, pollinator exclusion (paper bags), wind‐mediated pollination (cages), geitonogamous pollination and hand cross‐pollination. Open‐pollinated plants produced a greater number of fruits and seeds per fruit, resulting in greater grain yield. In contrast, seed mass, number of branches and physiological seed quality were not affected by pollination treatments. Seedling dry biomass was greater in the presence of pollinators. Overall, grain yield was 28.6% greater under open pollination, corresponding to a pollinator dependence of 22%. Controlled pollination treatments showed that self‐pollination provides reproductive assurance under pollinator limitation, whereas insect pollination enhances reproductive performance. Sesame exhibited a mixed mating system, with self‐pollination and insect‐mediated pollination acting complementarily. This balance helps ensure stable production, while pollinators play an important role in maximizing yield under tropical agricultural conditions.

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Publication Details

Journal
Annals of Applied Biology
Published
2026-10-05
DOI
https://doi.org/10.1111/aab.70159
Primary Topic
Plant and animal studies
Type
article
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article

Autonomous self‐pollination provides reproductive assurance, whereas insect pollination enhances yield in sesame under tropical field conditions

Carlos Alfredo Lopes de Carvalho, Émerson Dechechi Chambó, Josué Pinheiro Machado, Wesley Lopes Vilela et al.
Annals of Applied Biology
Plant and animal studies
article

Autonomous self‐pollination provides reproductive assurance, whereas insect pollination enhances yield in sesame under tropical field conditions

Carlos Alfredo Lopes de Carvalho, Émerson Dechechi Chambó, Josué Pinheiro Machado, Wesley Lopes Vilela, Raissa Castro Nunes, Tatiane Oliveira Santos
article en

Abstract

Abstract Sesame ( Sesamum indicum L.) exhibits a mixed mating system, in which both self‐ and cross‐pollination can occur. In tropical environments, the contribution of pollinators may enhance fertilization efficiency and increase crop yield. This study aimed to evaluate the role of pollinators in sesame production and its degree of pollinator dependence. Two experiments were carried out in Cruz das Almas, Bahia, Brazil. In the first, open‐pollinated plants were compared with pollinator‐excluded plants (cages) to assess grain yield, yield components and seed quality. In the second, pollination requirements were investigated using five treatments: open pollination, pollinator exclusion (paper bags), wind‐mediated pollination (cages), geitonogamous pollination and hand cross‐pollination. Open‐pollinated plants produced a greater number of fruits and seeds per fruit, resulting in greater grain yield. In contrast, seed mass, number of branches and physiological seed quality were not affected by pollination treatments. Seedling dry biomass was greater in the presence of pollinators. Overall, grain yield was 28.6% greater under open pollination, corresponding to a pollinator dependence of 22%. Controlled pollination treatments showed that self‐pollination provides reproductive assurance under pollinator limitation, whereas insect pollination enhances reproductive performance. Sesame exhibited a mixed mating system, with self‐pollination and insect‐mediated pollination acting complementarily. This balance helps ensure stable production, while pollinators play an important role in maximizing yield under tropical agricultural conditions.

Annals of Applied BiologyVol. 189(3)
Universidade Federal do Recôncavo da Bahia (BR)
Openalex Percentile: Top 6%
Plant and animal studies
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