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生长素调控的玉米侧根起始与中柱鞘细胞长度有关。

Auxin Modulated Initiation of Lateral Roots Is Linked to Pericycle Cell Length in Maize.

作者信息

Alarcón M Victoria, Salguero Julio, Lloret Pedro G

机构信息

Departamento de Hortofruticultura, Instituto de Investigaciones Agrarias "La Orden-Valdesequera", CICYTEX, Junta de Extremadura, Badajoz, Spain.

Departamento de Anatomía, Biología Celular y Zoología, Facultad de Ciencias, Universidad de Extremadura, Badajoz, Spain.

出版信息

Front Plant Sci. 2019 Jan 24;10:11. doi: 10.3389/fpls.2019.00011. eCollection 2019.

Abstract

Auxin is essential for the regulation of root system architecture by controlling primary root elongation and lateral root (LR) formation. Exogenous auxin has been reported to inhibit primary root elongation and promote the formation of LRs. In this study, LR formation in the primary root was quantitatively evaluated after exogenous auxin treatment by comparing the effects of auxin on two selected zones elongated either before or after auxin application. We determined two main variables in both zones: the LR density per unit of root length (LRD), and the mean phloem pericycle cell length. The total number of phloem pericycle cells (PPCs) per unit of root length was then calculated. Considering that each LR primordium is initiated from four founder cells (FCs), the percentage of PPCs (%PPC) that behave as FCs in a specific root zone was estimated by dividing the number of pericycle cells by four times the LRD. This index was utilized to describe LR initiation. Root zones elongated in the presence of a synthetic auxin (1-naphthalene acetic acid, NAA) at low concentrations (0.01 μM) showed reduced cell length and increased LRD. However, a high concentration of NAA (0.1 μM) strongly reduced both cell length and LRD. In contrast, both low and high levels of NAA stimulated LRD in zones elongated before auxin application. Analysis of the percentage of FCs in the phloem pericycle in zones elongated in the presence or absence of NAA showed that low concentrations of NAA increased the %PFC, indicating that LR initiation is promoted at new sites; however, high concentrations of NAA elicited a considerable reduction in this variable in zones developed in the presence of auxin. As these zones are composed of short pericycle cells, we propose that short pericycle cells are incapable to participate in LR primordium initiation and that auxin modulated initiation of LRs is linked to pericycle cell length.

摘要

生长素对于通过控制主根伸长和侧根(LR)形成来调节根系结构至关重要。据报道,外源生长素可抑制主根伸长并促进侧根形成。在本研究中,通过比较生长素对两个选定区域(在生长素施用之前或之后伸长)的影响,对外源生长素处理后主根中的侧根形成进行了定量评估。我们确定了两个区域中的两个主要变量:单位根长度的侧根密度(LRD)和平均韧皮部中柱鞘细胞长度。然后计算单位根长度的韧皮部中柱鞘细胞(PPCs)总数。考虑到每个侧根原基由四个起始细胞(FCs)起始,通过将中柱鞘细胞数量除以四倍的LRD来估计在特定根区域中作为FCs的PPCs百分比(%PPC)。该指标用于描述侧根起始。在低浓度(0.01μM)合成生长素(1-萘乙酸,NAA)存在下伸长的根区域显示细胞长度减小且LRD增加。然而,高浓度的NAA(0.1μM)强烈降低了细胞长度和LRD。相反,低水平和高水平的NAA均刺激了在生长素施用之前伸长区域的LRD。对在有或没有NAA存在下伸长区域的韧皮部中柱鞘中FCs百分比的分析表明,低浓度的NAA增加了%PFC,表明在新位点促进了侧根起始;然而,高浓度的NAA在生长素存在下发育的区域中导致该变量显著降低。由于这些区域由短的中柱鞘细胞组成,我们提出短的中柱鞘细胞无法参与侧根原基起始,并且生长素调节的侧根起始与中柱鞘细胞长度相关。

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