Suppr超能文献

使用多变化点模型识别玉米侧根细胞长度分布中的发育区域

Identifying Developmental Zones in Maize Lateral Root Cell Length Profiles using Multiple Change-Point Models.

作者信息

Moreno-Ortega Beatriz, Fort Guillaume, Muller Bertrand, Guédon Yann

机构信息

LEPSE, INRA, Montpellier SupAgro, Montpellier, France.

CIRAD, UMR AGAP, Montpellier, France.

出版信息

Front Plant Sci. 2017 Oct 26;8:1750. doi: 10.3389/fpls.2017.01750. eCollection 2017.

Abstract

The identification of the limits between the cell division, elongation and mature zones in the root apex is still a matter of controversy when methods based on cellular features, molecular markers or kinematics are compared while methods based on cell length profiles have been comparatively underexplored. Segmentation models were developed to identify developmental zones within a root apex on the basis of epidermal cell length profiles. Heteroscedastic piecewise linear models were estimated for maize lateral roots of various lengths of both wild type and two mutants affected in auxin signaling ( and ). The outputs of these individual root analyses combined with morphological features (first root hair position and root diameter) were then globally analyzed using principal component analysis. Three zones corresponding to the division zone, the elongation zone and the mature zone were identified in most lateral roots while division zone and sometimes elongation zone were missing in arrested roots. Our results are consistent with an auxin-dependent coordination between cell flux, cell elongation and cell differentiation. The proposed segmentation models could extend our knowledge of developmental regulations in longitudinally organized plant organs such as roots, monocot leaves or internodes.

摘要

当比较基于细胞特征、分子标记或运动学的方法时,根尖中细胞分裂区、伸长区和成熟区之间界限的确定仍然存在争议,而基于细胞长度分布的方法相对较少被探索。开发了分割模型,以根据表皮细胞长度分布来识别根尖内的发育区。对野生型和两个生长素信号传导受影响的突变体(和)的不同长度的玉米侧根估计了异方差分段线性模型。然后,使用主成分分析对这些个体根分析的输出与形态特征(第一根毛位置和根直径)进行整体分析。在大多数侧根中识别出了对应于分裂区、伸长区和成熟区的三个区域,而在停滞的根中则缺少分裂区,有时还缺少伸长区。我们的结果与生长素依赖的细胞通量、细胞伸长和细胞分化之间的协调一致。所提出的分割模型可以扩展我们对纵向组织的植物器官(如根、单子叶或节间)发育调控的认识。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验