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Mechanism of Allium Crops Bulb Enlargement in Response to Photoperiod: A Review

机译:大蒜作物鳞茎鳞茎对光周期响应的机理研究进展

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摘要

The photoperiod marks a varied set of behaviors in plants, including bulbing. Bulbing is controlled by inner signals, which can be stimulated or subdued by the ecological environment. It had been broadly stated that phytohormones control the plant development, and they are considered to play a significant part in the bulb formation. The past decade has witnessed significant progress in understanding and advancement about the photoperiodic initiation of bulbing in plants. A noticeable query is to what degree the mechanisms discovered in bulb crops are also shared by other species and what other qualities are also dependent on photoperiod. The FLOWERING LOCUS T (FT) protein has a role in flowering; however, the FT genes were afterward reported to play further functions in other biological developments (e.g., bulbing). This is predominantly applicable in photoperiodic regulation, where the FT genes seem to have experienced significant development at the practical level and play a novel part in the switch of bulb formation in Alliums. The neofunctionalization of FT homologs in the photoperiodic environments detects these proteins as a new class of primary signaling mechanisms that control the growth and organogenesis in these agronomic-related species. In the present review, we report the underlying mechanisms regulating the photoperiodic-mediated bulb enlargement in Allium species. Therefore, the present review aims to systematically review the published literature on the bulbing mechanism of Allium crops in response to photoperiod. We also provide evidence showing that the bulbing transitions are controlled by phytohormones signaling and FT-like paralogues that respond to independent environmental cues (photoperiod), and we also show that an autorelay mechanism involving FT modulates the expression of the bulbing-control gene. Although a large number of studies have been conducted, several limitations and research gaps have been identified that need to be addressed in future studies.
机译:光周期标志着植物中各种变化的行为,包括鳞茎。灯泡受内部信号控制,内部信号可能会受到生态环境的刺激或抑制。广泛地指出,植物激素控制着植物的发育,据认为它们在鳞茎的形成中起着重要的作用。在过去的十年中,在植物鳞茎的光周期引发方面的理解和进步方面取得了重大进展。一个值得关注的疑问是,鳞茎作物中发现的机制在多大程度上也被其他物种共有,还有哪些其他品质也取决于光周期。 FLOWERING LOCUS T(FT)蛋白在开花中起作用;但是,后来报道了FT基因在其他生物学发展中(例如球茎)起着进一步的作用。这主要适用于光周期调节,其中FT基因似乎在实践水平上经历了重大发展,并在葱属的鳞茎形成转换中发挥了新的作用。 FT同源物在光周期环境中的新功能化将这些蛋白质检测为一类新的主要信号传导机制,可控制这些农艺相关物种的生长和器官发生。在本综述中,我们报告了调控葱属物种中光周期介导的球茎增大的潜在机制。因此,本综述旨在系统地回顾已发表的有关葱属作物响应光周期的鳞茎形成机制的文献。我们还提供了证据,表明球茎过渡受植物激素信号和响应独立环境线索(光周期)的FT样旁系同源物控制,并且我们还表明涉及FT的自动继电器机制可调节球茎控制基因的表达。尽管已进行了大量研究,但已发现一些局限性和研究空白,需要在以后的研究中加以解决。

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