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zmsbt1和zmsbt2,两个在玉米籽粒早期发育过程中表达的类枯草杆菌蛋白酶丝氨酸蛋白酶新基因。

zmsbt1 and zmsbt2, two new subtilisin-like serine proteases genes expressed in early maize kernel development.

作者信息

López Maribel, Gómez Elisa, Faye Christian, Gerentes Denise, Paul Wyatt, Royo Joaquín, Hueros Gregorio, Muñiz Luis M

机构信息

Departamento Biomedicina and Biotecnología (Genética), Universidad de Alcalá, Alcalá de Henares, Spain.

GM Trait Discovery, Biogemma, Centre de Recherche de Chappes, Chappes, France.

出版信息

Planta. 2017 Feb;245(2):409-424. doi: 10.1007/s00425-016-2615-2. Epub 2016 Nov 9.

Abstract

Two subtilisin-like proteases show highly specific and complementary expression patterns in developing grains. These genes label the complete surface of the filial-maternal interface, suggesting a role in filial epithelial differentiation. The cereal endosperm is the most important source of nutrition and raw materials for mankind, as well as the storage compartment enabling initial growth of the germinating plantlets. The development of the different cell types in this tissue is regulated environmentally, genetically and epigenetically, resulting in the formation of top-bottom, adaxial-abaxial and surface-central axes. However, the mechanisms governing the interactions among the different inputs are mostly unknown. We have screened a kernel cDNA library for tissue-specific transcripts as initial step to identify genes relevant in cell differentiation. We report here on the isolation of two maize subtilisin-related genes that show grain-specific, surficial expression. zmsbt1 (Zea mays Subtilisin1) is expressed at the developing aleurone in a time-regulated manner, while zmsbt2 concentrates at the pedicel in front of the endosperm basal transfer layer. We have shown that their presence, early in the maize caryopsis development, is dependent on proper initial tissue determination, and have isolated their promoters to produce transgenic reporter lines that assist in the study of their regulation.

摘要

两种枯草杆菌蛋白酶样蛋白酶在发育中的籽粒中表现出高度特异性和互补的表达模式。这些基因标记了子代 - 母体界面的整个表面,表明其在子代上皮分化中发挥作用。谷物胚乳是人类最重要的营养和原材料来源,也是使发芽幼苗能够初步生长的储存部位。该组织中不同细胞类型的发育受到环境、遗传和表观遗传的调控,从而形成顶 - 底、近轴 - 远轴和表面 - 中央轴。然而,控制不同输入之间相互作用的机制大多未知。我们筛选了一个籽粒cDNA文库以获取组织特异性转录本,作为鉴定与细胞分化相关基因的第一步。我们在此报告分离出两个与玉米枯草杆菌蛋白酶相关的基因,它们表现出籽粒特异性的表面表达。zmsbt1(玉米枯草杆菌蛋白酶1)在发育中的糊粉层以时间调控的方式表达,而zmsbt2集中在内胚乳基部转运层前方的花梗处。我们已经表明,它们在玉米颖果发育早期的存在依赖于适当的初始组织决定,并分离出它们的启动子以产生转基因报告系,有助于研究它们的调控。

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