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马铃薯品种迪西(Desiree)中Patatin基因家族的结构多样性

Structural diversity of the patatin gene family in potato cv. Desiree.

作者信息

Twell D, Ooms G

机构信息

AFRC Institute of Arable Crops Research, Biochemistry Department, Harpenden, Herts, UK.

出版信息

Mol Gen Genet. 1988 May;212(2):325-36. doi: 10.1007/BF00334703.

Abstract

We have used a combined genetical and molecular approach to study the structural diversity of the patatin gene family in tetraploid Solanum tuberosum L. cv. Desiree (2n = 4x = 48). Nine dihaploid derivatives (2n = 2x = 24) of cv. Desiree were isolated by gynogenesis through prickle pollination with S. phureja Juz et Buk. Patatin DNA sequences in Desiree and in the dihaploids were examined by probing Southern blots of restriction endonucleases HindIII and XbaI digested DNA with patatin cDNA region-specific gene probes and by more detailed examination (restriction endonuclease mapping and partial DNA sequencing) of 10 patatin genomic clones in bacteriophage lambda replacement vector EMBL4. This provided positive identification for most individual patatin gene family members and some estimate of their organisation and diversity. Most of the 64-72 patatin DNA copies showed little allelic variation based on HindIII and XbaI restriction fragment length polymorphism (RFLP) mapping and did not appear to be very tightly clustered. Four of the 6-8 class I patatin genes (without a characteristic 22 bp insert in their untranslated leader DNA), showed apparent allelic homogeneity, whilst the remaining class I genes comigrated with a single class II patatin gene RFLP subclass. Of the isolated clones, 4 contained apparent pseudogenes lacking 5' control sequences and exon-1 DNA while another clone contained a patatin gene truncated at the 5' region due to the cloning event. The remaining 5 all contained class II genes (with the 22 bp insert) and these showed varying degrees of sequence homology for 400 bp of conserved 5' coding and non-coding DNA (from 77%-95%). In one case the extent of homology differed, with complete sequence divergence upstream of position -80 from the start of transcription. The structural diversity of the patatin gene family is discussed in relation to expression of individual patatin genes and the use of cv. Desiree as a host for potato transformation experiments.

摘要

我们采用遗传学与分子生物学相结合的方法,研究了四倍体马铃薯栽培品种迪西瑞(Solanum tuberosum L. cv. Desiree,2n = 4x = 48)中Patatin基因家族的结构多样性。通过用费约果茄(S. phureja Juz et Buk)进行针刺授粉诱导孤雌生殖,分离出了迪西瑞的9个双单倍体衍生物(2n = 2x = 24)。用Patatin cDNA区域特异性基因探针探测经限制性内切酶HindIII和XbaI消化的DNA的Southern杂交印迹,并对噬菌体λ置换载体EMBL4中的10个Patatin基因组克隆进行更详细的检测(限制性内切酶图谱分析和部分DNA测序),以此来研究迪西瑞及其双单倍体中的Patatin DNA序列。这为大多数单个Patatin基因家族成员提供了阳性鉴定,并对其组织和多样性进行了一些估计。基于HindIII和XbaI限制性片段长度多态性(RFLP)图谱,64 - 72个Patatin DNA拷贝中的大多数显示出很少的等位基因变异,并且似乎没有非常紧密地聚集在一起。6 - 8个I类Patatin基因中的4个(其非翻译前导DNA中没有特征性的22 bp插入片段)显示出明显的等位基因同质性,而其余的I类基因与单个II类Patatin基因RFLP亚类共迁移。在分离出的克隆中,4个含有明显的假基因,缺少5'调控序列和外显子1 DNA,而另一个克隆由于克隆事件含有一个在5'区域截短的Patatin基因。其余5个都含有II类基因(带有22 bp插入片段),并且在400 bp的保守5'编码和非编码DNA中显示出不同程度的序列同源性(从77% - 95%)。在一个案例中,同源性程度有所不同,在转录起始位点 - 80位置上游存在完全的序列分歧。本文结合单个Patatin基因的表达以及将迪西瑞用作马铃薯转化实验宿主的情况,对Patatin基因家族的结构多样性进行了讨论。

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