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Combined genetic and modeling approaches reveal that epidermal cell area and number in leaves are controlled by leaf and plant developmental processes in Arabidopsis

机译:遗传和建模相结合的方法揭示了拟南芥叶片中表皮细胞的面积和数量受叶片和植物发育过程的控制

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Both leaf production and leaf expansion are tightly linked to cell expansion and cell division, but the functional relationships between all these variables are not clearly established. To get insight into these relationships, a quantitative genetic analysis was performed in 118 recombinant inbred lines derived from a cross between the Landsberg erecta and Antwerp accessions and was combined with a structural equation modeling approach. Main effects and epistatic interactions at the quantitative trait locus (QTL) level were detected for rosette area, rosette leaf number, leaf 6 area, epidermal cell area and number. A QTL at ERECTA marker (ER) controlled cell expansion and cell division, in interaction with two other QTLs at SNP295 and SNP21 markers. Moreover, both the screening for marker association involved in the variation of the relationships between leaf growth variables and the test of alternative functional models by structural equation modeling revealed that the allelic value at ER controlled epidermal cell area and epidermal cell number in a leaf. These effects are driven both by a whole plant mechanism associated with leaf production and by a single leaf mechanism associated with leaf expansion. The complex effects of the QTL at ER were validated in selected heterogeneous inbred families. The ERECTA gene, which is mutated in the Landsberg erecta parental line, was found to be a putative candidate responsible for these mapped effects by phenotyping mutants of this gene at the cellular level. Together, these results give insight into the complex determination of leaf epidermal cell number and area.
机译:叶片的产生和叶片的扩张都与细胞的扩张和细胞分裂紧密相关,但是所有这些变量之间的功能关系尚不清楚。为了深入了解这些关系,对118个重组自交系进行了定量遗传分析,这些自交系来自Landsberg erecta和Antwerp品种之间的杂交,并与结构方程模型化方法相结合。在莲座面积,莲座叶数,叶6面积,表皮细胞面积和数目上,在定量性状位点(QTL)水平上检测了主要作用和上位相互作用。 ERECTA标记(ER)上的QTL与其他两个SNP295和SNP21标记上的QTL相互作用,控制细胞的扩增和细胞分裂。此外,涉及叶片生长变量之间关系变化的标志物关联筛选和通过结构方程模型测试替代功能模型的测试均表明,ER的等位基因值控制了叶片中的表皮细胞面积和表皮细胞数量。这些影响既受与叶片生产相关的整个植物机制的影响,也与与叶片扩展相关的单个叶片的机制共同驱动。 QTL对内质网的复杂影响已在选定的异种近交家族中得到验证。通过在细胞水平上对该基因的表型进行表型鉴定,发现ERECTA基因在Landsberg erecta亲本系中发生了突变,是推测这些基因作用的推定候选物。在一起,这些结果使人们深入了解了叶片表皮细胞数量和面积的复杂测定。

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