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桉树Aux/IAA基因家族的全基因组综合分析:EgrIAA4在木材形成中作用的证据

Comprehensive genome-wide analysis of the Aux/IAA gene family in Eucalyptus: evidence for the role of EgrIAA4 in wood formation.

作者信息

Yu Hong, Soler Marçal, San Clemente Hélène, Mila Isabelle, Paiva Jorge A P, Myburg Alexander A, Bouzayen Mondher, Grima-Pettenati Jacqueline, Cassan-Wang Hua

机构信息

LRSV Laboratoire de Recherche en Sciences Végétales, UMR5546, Université Toulouse III, UPS, CNRS, BP 42617, Auzeville, F-31326 Castanet Tolosan, France.

Université de Toulouse, INP-ENSA Toulouse, Génomique et Biotechnologie des Fruits, Avenue de l'Agrobiopole BP 32607, F-31326 Castanet-Tolosan, France INRA, UMR990 Génomique et Biotechnologie des Fruits, Chemin de Borde Rouge, F-31326 Castanet-Tolosan, France.

出版信息

Plant Cell Physiol. 2015 Apr;56(4):700-14. doi: 10.1093/pcp/pcu215. Epub 2015 Jan 9.

Abstract

Auxin plays a pivotal role in various plant growth and development processes, including vascular differentiation. The modulation of auxin responsiveness through the auxin perception and signaling machinery is believed to be a major regulatory mechanism controlling cambium activity and wood formation. To gain more insights into the roles of key Aux/IAA gene regulators of the auxin response in these processes, we identified and characterized members of the Aux/IAA family in the genome of Eucalyptus grandis, a tree of worldwide economic importance. We found that the gene family in Eucalyptus is slightly smaller than that in Populus and Arabidopsis, but all phylogenetic groups are represented. High-throughput expression profiling of different organs and tissues highlighted several Aux/IAA genes expressed in vascular cambium and/or developing xylem, some showing differential expression in response to developmental (juvenile vs. mature) and/or to environmental (tension stress) cues. Based on the expression profiles, we selected a promising candidate gene, EgrIAA4, for functional characterization. We showed that EgrIAA4 protein is localized in the nucleus and functions as an auxin-responsive repressor. Overexpressing a stabilized version of EgrIAA4 in Arabidopsis dramatically impeded plant growth and fertility and induced auxin-insensitive phenotypes such as inhibition of primary root elongation, lateral root emergence and agravitropism. Interestingly, the lignified secondary walls of the interfascicular fibers appeared very late, whereas those of the xylary fibers were virtually undetectable, suggesting that EgrIAA4 may play crucial roles in fiber development and secondary cell wall deposition.

摘要

生长素在包括维管分化在内的各种植物生长发育过程中起着关键作用。通过生长素感知和信号传导机制对生长素反应性的调节被认为是控制形成层活性和木材形成的主要调节机制。为了更深入了解生长素反应的关键Aux/IAA基因调节因子在这些过程中的作用,我们在具有全球经济重要性的树木巨桉的基因组中鉴定并表征了Aux/IAA家族成员。我们发现巨桉中的基因家族比杨树和拟南芥中的略小,但所有系统发育组均有代表。对不同器官和组织的高通量表达谱分析突出了几个在维管形成层和/或发育中的木质部中表达的Aux/IAA基因,其中一些在响应发育(幼年与成熟)和/或环境(张力胁迫)信号时表现出差异表达。基于表达谱,我们选择了一个有前景的候选基因EgrIAA4进行功能表征。我们表明EgrIAA4蛋白定位于细胞核,并作为生长素反应性阻遏物发挥作用。在拟南芥中过表达稳定化的EgrIAA4显著阻碍了植物生长和育性,并诱导了生长素不敏感表型,如主根伸长抑制、侧根出现和向重力性丧失。有趣的是,束间纤维的木质化次生壁出现得非常晚,而木质纤维的次生壁几乎检测不到,这表明EgrIAA4可能在纤维发育和次生细胞壁沉积中起关键作用。

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