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形成层活动期间成年L.树干组织中基因的鉴定与表达谱分析

Identification and Expression Profile of Genes in Adult Trees L. Trunk Tissues during Cambial Activity.

作者信息

Galibina Natalia A, Moshchenskaya Yulia L, Tarelkina Tatiana V, Nikerova Kseniya M, Korzhenevskii Maxim A, Serkova Aleksandra A, Afoshin Nikita V, Semenova Ludmila I, Ivanova Diana S, Guljaeva Elena N, Chirva Olga V

机构信息

Forest Research Institute, Karelian Research Centre of the Russian Academy of Sciences, 185910 Petrozavodsk, Russia.

出版信息

Plants (Basel). 2023 Feb 13;12(4):835. doi: 10.3390/plants12040835.

Abstract

WUSCHEL (WUS)-related homeobox (WOX) protein family members play important roles in the maintenance and proliferation of the stem cells in the cambium, the lateral meristem that forms all the wood structural elements. Most studies have examined the function of these genes in angiosperms, and very little was known about coniferous trees. Pine is one of the most critical forest-forming conifers globally, and in this research, we studied the distribution of , , and genes expression in L. trunk tissues. Further, we considered the role of TDIF()/TDR() signaling in regulating Scots pine cambial activity. The distribution of gene expression in Scots pine trunk tissues was studied: (1) depending on the stage of ontogenesis (the first group of objects); and (2) depending on the stage of cambial growth (the second group of objects). The first group of objects is lingonberry pine forests of different ages (30-, 80-, and 180-year-old stands) in the middle taiga subzone. At the time of selection, all the trees of the studied groups were at the same seasonal stage of development: the formation of late phloem and early xylem was occurring in the trunk. The second group of objects is 40-year-old pine trees that were selected growing in the forest seed orchard. We took the trunk tissue samples on 27 May 2022, 21 June 2022, and 21 July 2022. We have indicated the spatial separation expressed of and in pine trunk tissues. was differentially expressed in Fraction 1, including phloem cells and cambial zone. Maximum expression of the gene occurred in Fraction 2, including differentiating xylem cells. The maximum expression of the gene occurred on 27 May, when the number of cells in the cambial zone was the highest, and then it decreased to almost zero. The gene transcript level increased from May to the end of July. We found that the highest transcript level of the gene was during the period of active cell proliferation in the cambial zone, and also in the trees with the cambial age 63 years, which were characterized by the largest number of cell layers in the cambial zone. In this study, we have examined the expression profiles of genes belonging to the ancient clade ( and ) in stem tissues in Scots pine for the first time. We found that, in contrast to (high expression that was observed during the period of active formation of early tracheids), the expression of genes of the ancient clade of the genes was observed during the period of decreased cambial activity in the second half of the growing season. We found that expression was shifted to Fraction 1 in most cases and increased from the phloem side, while expression was not clearly bound to a certain fraction. Based on the data, the role of the CLE41/44-PXY-WOX signaling module in regulating cambial growth is discussed.

摘要

WUSCHEL(WUS)相关同源异型框(WOX)蛋白家族成员在形成所有木质结构元素的侧生分生组织——形成层中干细胞的维持和增殖过程中发挥着重要作用。大多数研究考察了这些基因在被子植物中的功能,而对于针叶树却知之甚少。松树是全球最重要的森林形成针叶树之一,在本研究中,我们研究了(PnWUS)、(PnWOX4)和(PnWOX13)基因在欧洲赤松树干组织中的表达分布。此外,我们还探讨了TDIF((CLE41/44))/TDR((PXY))信号在调控欧洲赤松形成层活性中的作用。研究了欧洲赤松树干组织中(PnWUS)基因表达的分布情况:(1)取决于个体发育阶段(第一组研究对象);(2)取决于形成层生长阶段(第二组研究对象)。第一组研究对象是中泰加亚区不同年龄(30年、80年和180年树龄林分)的越橘松林。在采样时,所研究组的所有树木都处于相同的季节性发育阶段:树干中正在形成晚韧皮部和早木质部。第二组研究对象是在森林种子园中选取的40年树龄的松树。我们于2022年5月27日、2022年6月21日和2022年7月21日采集了树干组织样本。我们指出了(PnWUS)和(PnWOX4)在松树干组织中的空间差异表达。(PnWUS)在第1部分差异表达,包括韧皮部细胞和形成层区域。(PnWOX4)基因的最大表达出现在第2部分,包括正在分化的木质部细胞。(PnWUS)基因的最大表达出现在5月27日,此时形成层区域的细胞数量最多,然后几乎降至零。(PnWOX13)基因的转录水平从5月到7月底有所增加。我们发现,(PnWOX13)基因的最高转录水平出现在形成层区域细胞活跃增殖期,以及形成层年龄为63年的树木中,这些树木的形成层区域细胞层数最多。在本研究中,我们首次研究了欧洲赤松茎组织中属于古老分支((PnWUS)和(PnWOX13))的基因的表达谱。我们发现,与(PnWOX4)(在早管胞活跃形成期观察到高表达)不同,古老分支的(PnWUS)和(PnWOX13)基因的表达出现在生长季下半年形成层活性降低时期。我们发现,在大多数情况下,(PnWUS)的表达转移到第1部分并从韧皮部一侧增加,而(PnWOX13)的表达与特定部分没有明显关联。基于这些数据,讨论了CLE41/44 - PXY - WOX信号模块在调控欧洲赤松形成层生长中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6404/9961183/350e13722641/plants-12-00835-g001.jpg

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