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柑橘中乙烯促进果实脱落期间离层细胞的细胞壁重塑

Cell Wall Remodeling in Abscission Zone Cells during Ethylene-Promoted Fruit Abscission in Citrus.

作者信息

Merelo Paz, Agustí Javier, Arbona Vicent, Costa Mário L, Estornell Leandro H, Gómez-Cadenas Aurelio, Coimbra Silvia, Gómez María D, Pérez-Amador Miguel A, Domingo Concha, Talón Manuel, Tadeo Francisco R

机构信息

Centre de Genòmica, Institut Valencià d'Investigacions Agràries, Montcada (València), Spain.

Departamento de Biologia, Faculdade de Ciências, Universidade do Porto Porto, Portugal.

出版信息

Front Plant Sci. 2017 Feb 8;8:126. doi: 10.3389/fpls.2017.00126. eCollection 2017.

Abstract

Abscission is a cell separation process by which plants can shed organs such as fruits, leaves, or flowers. The process takes place in specific locations termed abscission zones. In fruit crops like citrus, fruit abscission represents a high percentage of annual yield losses. Thus, understanding the molecular regulation of abscission is of capital relevance to control production. To identify genes preferentially expressed within the citrus fruit abscission zone (AZ-C), we performed a comparative transcriptomics assay at the cell type resolution level between the AZ-C and adjacent fruit rind cells (non-abscising tissue) during ethylene-promoted abscission. Our strategy combined laser microdissection with microarray analysis. Cell wall modification-related gene families displayed prominent representation in the AZ-C. Phylogenetic analyses of such gene families revealed a link between phylogenetic proximity and expression pattern during abscission suggesting highly conserved roles for specific members of these families in abscission. Our transcriptomic data was validated with (and strongly supported by) a parallel approach consisting on anatomical, histochemical and biochemical analyses on the AZ-C during fruit abscission. Our work identifies genes potentially involved in organ abscission and provides relevant data for future biotechnology approaches aimed at controlling such crucial process for citrus yield.

摘要

脱落是一种细胞分离过程,通过该过程植物能够脱落果实、叶子或花朵等器官。这个过程发生在特定的位置,即脱落区。在柑橘等水果作物中,果实脱落占年产量损失的很大比例。因此,了解脱落的分子调控对于控制产量至关重要。为了鉴定在柑橘果实脱落区(AZ-C)中优先表达的基因,我们在乙烯促进脱落过程中,在细胞类型分辨率水平上对AZ-C和相邻的果皮细胞(非脱落组织)进行了比较转录组学分析。我们的策略将激光显微切割与微阵列分析相结合。细胞壁修饰相关基因家族在AZ-C中表现突出。对这些基因家族的系统发育分析揭示了系统发育亲缘关系与脱落过程中表达模式之间的联系,表明这些家族的特定成员在脱落过程中具有高度保守的作用。我们的转录组数据通过在果实脱落期间对AZ-C进行解剖学、组织化学和生化分析的平行方法得到了验证(并得到了有力支持)。我们的工作鉴定了可能参与器官脱落的基因,并为未来旨在控制对柑橘产量至关重要的这一关键过程的生物技术方法提供了相关数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd21/5296326/60fb8a26d04e/fpls-08-00126-g0001.jpg

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