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比较自然分离株和实验杂交株的 Eudorina/Pleodorina ITS 序列。

Comparison of Eudorina/Pleodorina ITS sequences of isolates from nature with those from experimental hybrids.

机构信息

Department of Molecular Biology, Cell Biology and Biochemistry, Brown University, Providence, Rhode Island 02912 USA.

出版信息

Am J Bot. 2002 Sep;89(9):1523-30. doi: 10.3732/ajb.89.9.1523.

Abstract

Internal transcribed spacer (ITS) regions of nuclear ribosomal repeats were compared among 50 Eudorina and Pleodorina isolates and two Volvox species known to clade with Eudorina species. Of the six major subclades found, four containing Eudorina and Pleodorina illinoisensis isolates, one containing Eudorina and Pleodorina indica, and one containing Volvox gigas and V. powersii, the basal branching order remains uncertain, but the positioning of isolates known to mate was always as nearest neighbors on the terminal branches of the tree. Four hybrid clones from a cross of E. elegans with P. illinoisensis, known from chromosome counts to be products of the failure of meiosis at zygote germination, contain both parental ITS repeat regions, as expected. However, they have in addition both crossover and other variant ITS cistrons among their many repeats of ITS. Such variation is limited to terminal regions of helices, as recognized from knowledge of RNA transcript secondary structure. Proper alignment then utilizes all of the nucleotide positions; the hybrid variants appear in positions intermediate between their parents in the tree. In fact, such variants seem to be hallmarks of recent hybridization events, since they were not found in any of the other 50 isolates.

摘要

核核糖体重复内部转录间隔区(ITS)在 50 个 Eudorina 和 Pleodorina 分离株以及两个已知与 Eudorina 物种聚类的 Volvox 物种之间进行了比较。在所发现的六个主要亚群中,包含 Eudorina 和 Pleodorina illinoisensis 分离株的四个亚群,包含 Eudorina 和 Pleodorina indica 的一个亚群,以及包含 Volvox gigas 和 V. powersii 的一个亚群,其基本分支顺序仍然不确定,但已知交配的分离株的定位总是在树的末端分支上作为最近的邻居。从 E. elegans 与 P. illinoisensis 的杂交中产生的四个杂交克隆,从染色体计数可知是由于合子萌发时减数分裂失败的产物,如预期的那样,包含两个亲本的 ITS 重复区。然而,除了它们的许多 ITS 重复之外,它们还具有交叉和其他变体的 ITS 顺式元件。这种变异仅限于螺旋的末端区域,这是从 RNA 转录本二级结构的知识中认识到的。正确的比对然后利用所有核苷酸位置;杂种变体在树中位于它们父母之间的中间位置。事实上,这些变体似乎是最近杂交事件的标志,因为在其他 50 个分离株中都没有发现它们。

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