Department of Horticulture, Michigan State University, East Lansing, MI, 48824, USA.
Plant J. 2014 Jun;78(6):1022-33. doi: 10.1111/tpj.12529. Epub 2014 May 27.
The chlorophyll content of unripe fleshy fruits is positively correlated with the nutrient content and flavor of ripe fruit. In tomato (Solanum lycopersicum) fruit, the uniform ripening (u) locus, which encodes a GOLDEN 2-LIKE transcription factor (SlGLK2), influences a gradient of chloroplast development that extends from the stem end of the fruit surrounding the calyx to the base of the fruit. With the exception of the u locus, the factors that influence the formation of this developmental gradient are unknown. In this study, characterization and positional cloning of the uniform gray-green (ug) locus of tomato reveals a thus far unknown role for the Class I KNOTTED1-LIKE HOMEOBOX (KNOX) gene, TKN4, in specifying the formation of this chloroplast gradient. The involvement of KNOX in fruit chloroplast development was confirmed through characterization of the Curl (Cu) mutant, a dominant gain-of-function mutation of TKN2, which displays ectopic fruit chloroplast development that resembles SlGLK2 over-expression. TKN2 and TKN4 act upstream of SlGLK2 and the related gene ARABIDOPSIS PSEUDO RESPONSE REGULATOR 2-LIKE (SlAPRR2-LIKE) to establish their latitudinal gradient of expression across developing fruit that leads to a gradient of chloroplast development. Class I KNOX genes typically influence plant morphology through maintenance of meristem activity, but this study identifies a role for TKN2 and TKN4 in specifically influencing chloroplast development in fruit but not leaves, suggesting that this fundamental process is differentially regulated in these two organs.
未成熟肉质果实的叶绿素含量与成熟果实的营养成分和风味呈正相关。在番茄(Solanum lycopersicum)果实中,均匀成熟(u)基因座编码一个 GOLDEN 2-LIKE 转录因子(SlGLK2),影响从果实围绕花萼的茎端到果实基部的叶绿体发育梯度。除了 u 基因座外,影响这种发育梯度形成的因素尚不清楚。在这项研究中,番茄均匀灰色-绿色(ug)基因座的特征和定位克隆揭示了一个迄今为止未知的 Class I KNOTTED1-LIKE HOMEOBOX(KNOX)基因,TKN4,在指定这个叶绿体梯度的形成中的作用。通过对 Curl(Cu)突变体的特征描述,证实了 KNOX 参与了果实叶绿体的发育,Cu 是 TKN2 的显性获得功能突变体,表现出类似于 SlGLK2 过表达的果实叶绿体异位发育。TKN2 和 TKN4 作用于 SlGLK2 和相关基因 ARABIDOPSIS PSEUDO RESPONSE REGULATOR 2-LIKE(SlAPRR2-LIKE)的上游,在发育中的果实中建立它们的纬度梯度表达,导致叶绿体发育的梯度。I 类 KNOX 基因通常通过维持分生组织的活性来影响植物形态,但本研究确定了 TKN2 和 TKN4 在特定影响果实而不是叶片中叶绿体发育的作用,这表明这个基本过程在这两个器官中受到不同的调控。