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枣椰树SRY基因的鉴定与测序:一种用于枣椰树(L.)性别鉴定的新工具。

Identification and sequencing of Date-SRY Gene: A novel tool for sex determination of date palm ( L.).

作者信息

El-Din Solliman Mohei, Mohasseb Heba Allah A, Al-Khateeb Abdullatif A, Al-Khateeb Suliman A, Chowdhury Kamal, El-Shemy Hany A, Aldaej Mohammed I

机构信息

Plant Biotechnology Dept., National Research Centre, Dokki 12622, Cairo, Egypt.

Department of Agricultural Biotechnology, College of Agriculture and Food Sciences, King Faisal University, P.O. Box 420, Al-Hassa 31982, Saudi Arabia.

出版信息

Saudi J Biol Sci. 2019 Mar;26(3):514-523. doi: 10.1016/j.sjbs.2017.08.002. Epub 2017 Aug 16.

Abstract

Dioecism has always been an issue in many plant species with its numerous disadvantages, especially in woody trees such as date palms. As one of the most important crops in the Middle Eastern countries, researchers are having problems identifying of sex of the plant in its early stages of development. Hence, proper population stands in the male: female ratio for maintenance is almost impossible in the field for better production. In this study, sex determination of date palm ( were identified in regions of the Y chromosome (Date-SRY) gene, the pivotal gene that initiates sex determination, using a new technique and thus an economically desirable objective, which will significantly impact profits in seed based cultivations. Partial sequences of the Date-SRY were taken and amplified by nested polymerase chain reaction (PCR). According to the results, the exact sex of date palm was identified in all the tested plants, while amplified regions of the Date-SRY gene closely matched with the human and papaya sequences. In addition, a primer pair was designed to amplify the sequences of the SRY-date gene with confidence that it will identify male date palms. These primer sequences include SRY-date Forward 5'- cggccctctaagtatctgtgcgcaacg-3' (SRY-date F) and the SRY-date Reverse 5'- gtttgcacttcgaagcagag-3' (SRY-date R). The complete sequence of the DNA has been registered and deposited in GenBank (BankIt1598036 DPSRY1 KC577225 thenKJ873056).

摘要

雌雄异株现象在许多植物物种中一直是个问题,存在诸多不利之处,尤其是在如枣椰树这样的木本树种中。作为中东国家最重要的作物之一,研究人员在识别其发育早期植株的性别方面存在困难。因此,在田间几乎不可能维持合适的雄雌比例群体来实现更好的产量。在本研究中,利用一项新技术在Y染色体区域(枣椰树性别决定区域Y基因,即启动性别决定的关键基因)鉴定了枣椰树的性别,这是一个经济上理想的目标,将对基于种子的种植利润产生重大影响。获取了枣椰树性别决定区域Y基因的部分序列,并通过巢式聚合酶链反应(PCR)进行扩增。根据结果,在所有测试植株中都鉴定出了枣椰树的确切性别,同时枣椰树性别决定区域Y基因的扩增区域与人类和木瓜的序列紧密匹配。此外,设计了一对引物来扩增枣椰树性别决定区域Y基因的序列,确信其能鉴定出雄性枣椰树。这些引物序列包括枣椰树性别决定区域Y基因正向引物5'- cggccctctaagtatctgtgcgcaacg-3'(枣椰树性别决定区域Y基因F)和枣椰树性别决定区域Y基因反向引物5'- gtttgcacttcgaagcagag-3'(枣椰树性别决定区域Y基因R)。DNA的完整序列已注册并保存在基因库中(登录号为BankIt1598036 DPSRY1 KC577225然后KJ873056)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d31a/6410340/326580d017b2/gr1.jpg

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