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1.
Yi Chuan ; 38(4): 314-22, 2016 04.
Artigo em Inglês | MEDLINE | ID: mdl-27103455

RESUMO

Seed dormancy and germination are attractive topics in the fields of plant molecular biology as they are key stages during plant growth and development. Seed dormancy is intricately regulated by complex networks of phytohormones and numerous key genes, combined with diverse environmental cues. The transition from dormancy to germination is a very important biological process, and extensive studies have demonstrated that phytohormones abscisic acid (ABA) and gibberellin acid (GA) are major determinants. Consequently, the precise balance between ABA and GA can ensure that the seeds remain dormant under stress conditions and germinate at optimal times. Here we review the role of auxin in seed dormancy and germination. Auxin is one of the classic phytohormones effective during tropism growth and tissue differentiation. Recent studies, however, show that auxin possesses positive effects on seed dormancy, which suggests that auxin is the second phytohormone that induces seed dormancy, besides ABA. We will focus on the synthetic effects in detail between auxin and ABA pathways on seed dormancy and propose future research directions.


Assuntos
Germinação/fisiologia , Ácidos Indolacéticos/metabolismo , Dormência de Plantas/fisiologia , Ácido Abscísico/metabolismo , Animais , Giberelinas/metabolismo , Humanos
2.
Yi Chuan ; 38(1): 52-61, 2016 01.
Artigo em Chinês | MEDLINE | ID: mdl-26787523

RESUMO

Karrikins are a class of signaling molecules discovered in wildfire smoke, which can significantly promote seed germination in some species (such as Arabidopsis and Avena fatua). The structures of Karrikins were first elucidated in 2004. At present, six different types of Karrikins have been documented, and their biological activities vary significantly. So far, studies for Karrikins have become a hot spot in the plant molecular biology field. Recent advances demonstrate that Karrikins regulate plant photomorphogenesis and leaf differentiation effectively, in addition to the effect on seed germination. Furthermore, Karrikins share highly similar molecular structures and signaling transduction pathways with strigolactone. In this review, we summarize the history of discovery, signaling transduction pathways, physiological functions and ecological significance of Karrikins, and further discuss the future research directions.


Assuntos
Furanos/farmacologia , Plantas/efeitos dos fármacos , Transdução de Sinais/efeitos dos fármacos , Furanos/química , Germinação/efeitos dos fármacos , Plantas/genética , Plantas/metabolismo , Fumaça/análise
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