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脱落缺陷花序的PIP肽增强叶片和果实脱落。

The PIP Peptide of INFLORESCENCE DEFICIENT IN ABSCISSION Enhances Leaf and Fruit Abscission.

作者信息

Tranbarger Timothy John, Domonhédo Hubert, Cazemajor Michel, Dubreuil Carole, Fischer Urs, Morcillo Fabienne

机构信息

UMR DIADE, Institut de Recherche pour le Développement, Université de Montpellier, 34394 Montpellier, France.

Ecology and Genetics Laboratory, Pontificia Universidad Católica del Ecuador (PUCE), 17-01-21-84 Quito, Ecuador.

出版信息

Plants (Basel). 2019 May 30;8(6):143. doi: 10.3390/plants8060143.

Abstract

The programmed loss of a plant organ is called abscission, which is an important cell separation process that occurs with different organs throughout the life of a plant. The use of floral organ abscission in as a model has allowed greater understanding of the complexities of organ abscission, but whether the regulatory pathways are conserved throughout the plant kingdom and for all organ abscission types is unknown. One important pathway that has attracted much attention involves a peptide ligand-receptor signalling system that consists of the secreted peptide IDA (INFLORESCENCE DEFICIENT IN ABSCISSION) and at least two leucine-rich repeat (LRR) receptor-like kinases (RLK), HAESA (HAE) and HAESA-LIKE2 (HSL2). In the current study we examine the bioactive potential of IDA peptides in two different abscission processes, leaf abscission in and ripe fruit abscission in oil palm, and find in both cases treatment with IDA peptides enhances cell separation and abscission of both organ types. Our results provide evidence to suggest that the IDA-HAE-HSL2 pathway is conserved and functions in these phylogenetically divergent dicot and monocot species during both leaf and fruit abscission, respectively.

摘要

植物器官的程序性脱落称为离层形成,这是一个重要的细胞分离过程,在植物的整个生命周期中,不同器官都会发生。以花器官离层形成为模型进行研究,有助于更深入地了解器官离层形成的复杂性,但目前尚不清楚调控途径在整个植物界以及所有器官离层类型中是否保守。一条备受关注的重要途径涉及一种肽配体-受体信号系统,该系统由分泌肽IDA(离层形成缺陷花序)和至少两种富含亮氨酸重复序列(LRR)的类受体激酶(RLK),即HAESA(HAE)和类HAESA2(HSL2)组成。在本研究中,我们检测了IDA肽在两种不同离层过程中的生物活性潜力,即拟南芥的叶片离层和油棕的成熟果实离层,结果发现,在这两种情况下,用IDA肽处理均可增强两种器官类型的细胞分离和离层形成。我们的结果表明,IDA-HAE-HSL2途径在系统发育上不同的双子叶植物和单子叶植物物种的叶片和果实离层过程中均保守且发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f497/6630328/35f9fcc592df/plants-08-00143-g001.jpg

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