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黑森瘿蚊(Mayetiola destructor (Say))消除染色体的分子特征。

Molecular characterization of eliminated chromosomes in Hessian fly (Mayetiola destructor (Say)).

机构信息

USDA Crop Production and Pest Control Research Unit, West Lafayette, IN, 47907, USA.

Department of Entomology, Purdue University, West Lafayette, IN, 47907, USA.

出版信息

Chromosome Res. 2023 Jan 24;31(1):3. doi: 10.1007/s10577-023-09718-8.

Abstract

Like other cecidomyiid Diptera, Hessian fly has stable S chromosomes and dispensable E chromosomes that are retained only in the germ line. Amplified fragment length polymorphisms (AFLP), suppressive subtractive hybridization (SSH), fluorescent in-situ hybridization (FISH), and sequencing were used to investigate similarities and differences between S and E chromosomes. More than 99.9% of AFLP bands were identical between separated ovary and somatic tissue, but one band was unique to ovary and resembled Worf, a non-LTR retrotransposon. Arrayed clones, derived by SSH of somatic from ovarian DNA, showed no clones that were unique to ovary. FISH with BAC clones revealed a diagnostic banding pattern of BAC positions on both autosomes and both sex chromosomes, and each E chromosome shared a pattern with one of the S chromosomes. Sequencing analysis showed that E chromosomes are nearly identical to S chromosomes, since no sequence could be confirmed to belong only to E chromosomes. There were a few questionably E-specific sequences that are candidates for further investigation. Thus, the E chromosomes appear to be derived from S chromosomes by the acquisition or conversion of sequences that produce the negatively heteropycnotic region around the centromere.

摘要

与其他瘿蚊科双翅目昆虫一样,玉米穗虫具有稳定的 S 染色体和可丢弃的 E 染色体,这些染色体仅在生殖系中保留。扩增片段长度多态性(AFLP)、抑制性消减杂交(SSH)、荧光原位杂交(FISH)和测序被用于研究 S 染色体和 E 染色体之间的相似性和差异性。在分离的卵巢和体细胞组织之间,超过 99.9%的 AFLP 带型是相同的,但有一个带型是卵巢特有的,类似于 Worf,一种非 LTR 反转录转座子。通过体细胞 SSH 衍生的阵列克隆,没有发现仅在卵巢中特有的克隆。用 BAC 克隆进行 FISH 显示,在所有常染色体和性染色体上都有 BAC 位置的诊断带型,并且每个 E 染色体都与一个 S 染色体共享一个带型。测序分析表明,E 染色体与 S 染色体几乎完全相同,因为没有序列可以被确认为仅属于 E 染色体。有一些有疑问的 E 染色体特异性序列,是进一步研究的候选者。因此,E 染色体似乎是通过获得或转换产生着丝粒周围负异染色质区的序列而从 S 染色体衍生而来的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae37/9873768/99ca4467113a/10577_2023_9718_Fig1_HTML.jpg

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