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利用玉米(Zea mays L.)的 QTL 作图分析乙烯响应植物株高相关性状的遗传基础。

Analysis of the genetic basis of plant height-related traits in response to ethylene by QTL mapping in maize (Zea mays L.).

机构信息

State Key Laboratory of Plant Physiology and Biochemistry, Engineering Research Center of Plant Growth Regulator, Ministry of Education, College of Agronomy and Biotechnology, China Agricultural University, Haidian District, Beijing, China.

National Maize Improvement Center of China, College of Agronomy and Biotechnology, China Agricultural University, Haidian District, Beijing, China.

出版信息

PLoS One. 2018 Feb 21;13(2):e0193072. doi: 10.1371/journal.pone.0193072. eCollection 2018.

Abstract

Ethylene (ET) is critical importance in the growth, development, and stress responses of plants. Plant hormonal stress responses have been extensively studied, however, the role of ET in plant growth, especially plant height (PH) remains unclear. Understanding the genetic control for PH in response to ET will provide insights into the regulation of maize development. To clarify the genetic basis of PH-related traits of maize in response to ET, we mapped QTLs for PH, ear height (EH), and internode length above the uppermost ear (ILAU) in two recombinant inbred line (RIL) populations of Zea mays after ET treatment and in an untreated control (CK) group. Sixty QTLs for the three traits were identified. Twenty-two QTLs were simultaneously detected under both ET treatment and untreated control, and five QTLs were detected at two geographic locations under ET treatment only. Individual QTL can be explained 3.87-17.71% of the phenotypic variance. One QTL (q2PH9-1, q1PH9, q1EH9/q1ILAU9-1, q2ILAU9, and q2EH9) for the measured traits (PH, EH, ILAU) was consistent across both populations. Two QTLs (q2PH2-5, q2ILAU2-2, q1PH2-2, and q1ILAU2-2; q1PH8-1, q1EH8-1, q2PH8-1) were identified for up to two traits in both locations and populations under both ET treatment and untreated control. These consistent and stable regions are important QTLs of potential hot spots for PH, ear height (EH), and internode length above the uppermost ear (ILAU) response to ET in maize; therefore, QTL fine-mapping and putative candidate genes validation should enable the cloning of PH, EH, and ILAU related genes to ET response. These results will be valuable for further fine-mapping and quantitative trait nucleotides (QTNs) determination, and elucidate the underlying molecular mechanisms of ET responses in maize.

摘要

乙烯(ET)在植物的生长、发育和应激反应中至关重要。植物激素应激反应已经得到了广泛的研究,然而,ET 在植物生长中的作用,特别是植物高度(PH)仍然不清楚。了解 ET 对植物生长(尤其是 PH)的遗传控制将为玉米发育的调控提供深入的认识。为了阐明 ET 处理后玉米 PH 相关性状的遗传基础,我们在玉米两个重组自交系(RIL)群体中定位了 PH、穗位高(EH)和最上穗位节间长度(ILAU)对 ET 反应的 QTL,并在未处理对照(CK)组中进行了定位。鉴定出 3 个性状的 60 个 QTL。22 个 QTL 在 ET 处理和未处理对照下同时被检测到,5 个 QTL 仅在 ET 处理的两个地理位置被检测到。单个 QTL 可解释表型方差的 3.87-17.71%。一个 QTL(q2PH9-1、q1PH9、q1EH9/q1ILAU9-1、q2ILAU9 和 q2EH9)对测量的性状(PH、EH、ILAU)在两个群体中都是一致的。两个 QTL(q2PH2-5、q2ILAU2-2、q1PH2-2 和 q1ILAU2-2;q1PH8-1、q1EH8-1、q2PH8-1)在 ET 处理和未处理对照下,在两个位置和两个群体中,最多有两个性状被鉴定出来。这些一致和稳定的区域是 PH、穗位高(EH)和最上穗位节间长度(ILAU)对 ET 反应的重要 QTL 热点;因此,QTL 的精细定位和潜在候选基因的验证应该能够克隆与 ET 反应相关的 PH、EH 和 ILAU 相关基因。这些结果将有助于进一步进行精细定位和数量性状核苷酸(QTN)的确定,并阐明 ET 反应在玉米中的潜在分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5428/5821358/32341d4c62a8/pone.0193072.g001.jpg

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