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玉米 B 染色体能够表达 microRNAs 并改变 A 染色体衍生的 microRNAs 的表达。

The maize B chromosome is capable of expressing microRNAs and altering the expression of microRNAs derived from A chromosomes.

机构信息

Department of Agronomy, National Chung Hsing University, 250 Kuo Kuang Road, Taichung, 402, Taiwan.

Department of Medical Research, China Medical University Hospital, Taichung, Taiwan.

出版信息

Chromosome Res. 2020 Jun;28(2):129-138. doi: 10.1007/s10577-019-09620-2. Epub 2019 Nov 11.

Abstract

Supernumerary B chromosomes (Bs) are nonessential chromosomes that are considered genetically inert. However, the maize B carries control elements that direct its behavior, such as that of nondisjunction, during the second pollen mitosis, and affects normal A chromosomes during cell division. Recently, the maize B has been found to contain transcriptionally active sequences and to affect the transcription of genes on A chromosomes. To better understand the regulatory mechanisms underlying the maize B, we constructed two small RNA libraries from maize B73 inbred lines with and without Bs. The sequencing results revealed that 18 known microRNAs (miRNAs) were significantly differentially expressed in response to the presence of the B, and most target mRNAs were characterized as transcription factors. Moreover, three novel B-derived miRNAs were identified via stem-loop reverse transcriptase-polymerase chain reaction (RT-PCR)-based analysis, and all showed consistent B-specific expression in almost all analyzed inbred lines and in all tissue types, including leaves, roots, and pollen grains. By the use of B-10L translocations, the three B-derived miRNAs were mapped to specific B regions. The results from this study suggest that the maize B can express miRNAs and affect the expression of A-derived miRNAs, which could regulate the expression of A-located genes.

摘要

额外 B 染色体 (Bs) 是一种非必需染色体,被认为在遗传上是惰性的。然而,玉米 B 带有控制元件,可在花粉第二次有丝分裂过程中控制其行为,如不分离,并在细胞分裂过程中影响正常的 A 染色体。最近,发现玉米 B 含有转录活性序列,并影响 A 染色体上基因的转录。为了更好地理解玉米 B 的调控机制,我们构建了两个来自玉米 B73 自交系的小 RNA 文库,一个含有 Bs,另一个不含 Bs。测序结果表明,18 个已知的 microRNAs (miRNAs) 对 B 的存在表现出显著的差异表达,大多数靶 mRNAs 被鉴定为转录因子。此外,通过茎环逆转录聚合酶链反应 (RT-PCR) 分析鉴定了三个新的 B 衍生的 miRNAs,它们在几乎所有分析的自交系和所有组织类型中都表现出一致的 B 特异性表达,包括叶片、根和花粉粒。通过使用 B-10L 易位,将这三个 B 衍生的 miRNAs 映射到特定的 B 区域。本研究结果表明,玉米 B 可以表达 miRNAs,并影响 A 衍生 miRNAs 的表达,从而调节 A 定位基因的表达。

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