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Effect of Blue Light on Endogenous Isopentenyladenine and Endoreduplication during Photomorphogenesis and De-Etiolation of Tomato (Solanum lycopersicum L.) Seedlings

机译:蓝光对光形态建成过程中内源异戊烯和核内复制和番茄的去黄化(番茄L.)幼苗的影响

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摘要

Light is one of the most important factor influencing plant growth and development all through their life cycle. One of the well-known light-regulated processes is de-etiolation, i.e. the switch from skotomorphogenesis to photomorphogenesis. The hormones cytokinins (CKs) play an important role during the establishment of photomorphogenesis as exogenous CKs induced photomorphogenesis of dark-grown seedlings. Most of the studies are conducted on the plant model Arabidopsis, but no or few information are available for important crop species, such as tomato (Solanum lycopersicum L.). In our study, we analyzed for the first time the endogenous CKs content in tomato hypocotyls during skotomorphogenesis, photomorphogenesis and de-etiolation. For this purpose, two tomato genotypes were used: cv. Rutgers (wild-type; WT) and its corresponding mutant (7B-1) affected in its responses to blue light (BL). Using physiological and molecular approaches, we identified that the skotomorphogenesis is characterized by an endoreduplication-mediated cell expansion, which is inhibited upon BL exposure as seen by the accumulation of trancripts encoding CycD3, key regulators of the cell cycle. Our study showed for the first time that iP (isopentenyladenine) is the CK accumulated in the tomato hypocotyl upon BL exposure, suggesting its specific role in photomorphogenesis. This result was supported by physiological experiments and gene expression data. We propose a common model to explain the role and the relationship between CKs, namely iP, and endoreduplication during de-etiolation and photomorphogenesis.
机译:在整个生命周期中,光是影响植物生长发育的最重要因素之一。去光化是众所周知的光调节过程之一,即从skotomorphogenesis向photomorphogenesis的转换。激素细胞分裂素(CKs)在建立光形态发生过程中起着重要作用,因为外源CKs诱导了深色幼苗的光形态发生。大多数研究是在拟南芥的植物模型上进行的,但是没有或只有很少的信息可用于重要的农作物物种,例如番茄(Solanum lycopersicum L.)。在我们的研究中,我们首次分析了番茄下胚轴在形态形成,光形态发生和去黄化过程中内源性CKs含量。为此,使用了两种番茄基因型:cv。罗格斯(野生型; WT)及其相应的突变体(7B-1)在其对蓝光(BL)的响应中受到影响。使用生理学和分子方法,我们确定了skotomorphogenesis的特征是核内复制机制介导的细胞膨胀,如通过暴露于编码CycD3的转录物(细胞周期的关键调控因子)的积累,其受BL暴露的抑制。我们的研究首次表明,iP(异戊烯腺嘌呤)是BL暴露于番茄下胚轴中积累的CK,表明其在光形态发生中的特定作用。生理实验和基因表达数据支持了该结果。我们提出了一个通用模型来解释CK的作用及其在去黄化和光形态发生过程中与iP和内复制的关系。

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