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拟南芥开花时间的环境变异与突变变异比较

Comparison of environmental and mutational variation in flowering time in Arabidopsis.

作者信息

Pouteau Sylvie, Ferret Valérie, Lefebvre Delphine

机构信息

Laboratoire de Biologie Cellulaire, Institut National de la Recherche Agronomique, Route de Saint-Cyr, F-78026 Versailles cedex, France.

出版信息

J Exp Bot. 2006;57(15):4099-109. doi: 10.1093/jxb/erl186. Epub 2006 Nov 16.

Abstract

Developmental dynamics can be influenced by external and endogenous factors in a more or less analogous manner. To compare the phenotypic effects of (i) environmental [i.e. standard (stPhP) and extended (exPhP) photoperiods] changes in Arabidopsis wild types and (ii) endogenous genetic variation in eav1-eav61 early flowering mutants, two temporal indicators were analysed, the time to bolting (DtB) and the number of leaves (TLN). It was found that DtB and TLN are differentially affected in different environmental and genetic contexts, and some factors of dynamic convergence were identified. The quantitative response to photoperiod is markedly contingent on the phototrophic input for DtB, but less so for TLN. To discriminate the light quantity and period components in DtB, two novel temporal indicators were determined, LtB (photosynthetic time to bolting) and PChron (DtB h(-1) of photoperiod), respectively. The use of PChron results in a coincidence of the variation profiles across stPhP and exPhP, interpreted as a buffering of the trophic response. Unlike natural accessions and later flowering mutants, the variation profiles across stPhP and eav mutants are significantly divergent, pointing to differences in environmental and genetic variation in flowering time. Yet, phenocopy effects and dynamic convergence between wild-type and mutant profiles are detected by using exPhP and the LtB indicator. Additional analyses of the cauline leaf number (CLN) show that the apical and basal boundaries of the primary inflorescence vary co-ordinately. The finding that the correlativity between CLN and TLN changes across photoperiods suggests that different states of intra-connectedness are involved in ontogenetic specification of flowering time and embodied in the primary inflorescence.

摘要

发育动态可以或多或少以类似的方式受到外部和内源性因素的影响。为了比较(i)拟南芥野生型中环境变化[即标准(stPhP)和延长(exPhP)光周期]以及(ii)eav1 - eav61早花突变体中的内源性遗传变异的表型效应,分析了两个时间指标,抽薹时间(DtB)和叶片数量(TLN)。研究发现,DtB和TLN在不同的环境和遗传背景下受到不同的影响,并确定了一些动态收敛因素。对光周期的定量反应在很大程度上取决于DtB的光合输入,但对TLN的影响较小。为了区分DtB中的光量和光周期成分,分别确定了两个新的时间指标,LtB(光合抽薹时间)和PChron(光周期的DtB h⁻¹)。使用PChron导致stPhP和exPhP之间的变异谱重合,这被解释为营养反应的缓冲。与自然种质和晚花突变体不同,stPhP和eav突变体之间的变异谱明显不同,这表明开花时间的环境和遗传变异存在差异。然而,通过使用exPhP和LtB指标,可以检测到野生型和突变体谱之间的表型模拟效应和动态收敛。对茎生叶数量(CLN)的进一步分析表明,主花序的顶端和基部边界协调变化。CLN和TLN之间的相关性在不同光周期下发生变化这一发现表明,不同的内部连接状态参与了开花时间的个体发育特化,并体现在主花序中。

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