(1.10.1)--遗传学遗传学Cytoplasmicinheritanceofparent-o.pdf
《(1.10.1)--遗传学遗传学Cytoplasmicinheritanceofparent-o.pdf》由会员分享,可在线阅读,更多相关《(1.10.1)--遗传学遗传学Cytoplasmicinheritanceofparent-o.pdf(8页珍藏版)》请在淘文阁 - 分享文档赚钱的网站上搜索。
1、rspb.royalsocietypublishing.orgResearchCite this article:Shirokawa Y,Shimada M.2016 Cytoplasmic inheritance of parentoffspring cell structure in the clonal diatomCyclotella meneghiniana.Proc.R.Soc.B 283:20161632.http:/dx.doi.org/10.1098/rspb.2016.1632Received:21 July 2016Accepted:12 October 2016Subj
2、ect Areas:cellular biology,evolution,microbiologyKeywords:centric diatom,cytoplasmic inheritance,non-genetic heritability,quantitative genetics,structural inheritance,rapid evolutionAuthor for correspondence:Yuka Shirokawae-mail:Electronic supplementary material is availableonline at https:/dx.doi.o
3、rg/10.6084/m9.fig-share.c.3552210.Cytoplasmic inheritance of parentoffspring cell structure in the clonaldiatom Cyclotella meneghinianaYuka Shirokawa and Masakazu ShimadaDepartment of General Systems Studies,The University of Tokyo,3-8-1 Komaba,Meguro-ku,Tokyo 153-8902,JapanYS,0000-0003-4825-7190In
4、cytoplasmic inheritance,structural states of a parent cell could be trans-mitted to offspring cells via two mechanisms.The first is referred to as thehangover of parent structure,where the structure itself remains and faith-fully transmits within offspring cells;the second is structural inheritance,
5、wherein the parent structure functions as a template for development ofnew offspring structure.We estimated to what extent the parent structureaffects the development of offspring structure by structural inheritance,using a clone of the diatom Cyclotella meneghiniana.The cell has two siliceousvalves
6、(a cell wall part at both cell poles):one is inherited from the parentand the other is newly formed.We estimated cytoplasmic heritability bycomparing valve traits(central fultoportulae(CTFP),striae,central area,and cell diameter)of parent and new offspring valves,using single-cellisolation and valve
7、 labelling.Parentoffspring valve trait regressionsshowed that all traits,except CTFP,were significantly correlated.We formu-lated a quantitative genetic model considering the diatom inheritance systemand revealed short-term rapid evolution compared with other inheritancesystems.Diatom structural inh
8、eritance will have evolved to enable clonalpopulations to rapidly acquire and maintain suitable structures for temporalchanges in environments and life-cycle stages.1.IntroductionInheritance is one of the most important processes of evolution and showsdiverse mechanisms 16.Recently,there has been in
9、creasing evidence fornon-genetic inherited information without DNA sequence substitution by var-ious mechanisms such as DNA methylation,non-coding RNA,self-sustainingfeedback loop of gene expression and maternal effects 36.Accordingly,theheritability concept has become expanded to incorporate non-ge
10、netic inheri-tance,and has been unified in a general quantitative genetics model thataccounts for the various mechanisms of inheritance 79.To consider non-genetic inheritance for species with single-cell individuals,the states of parent cell structures could be transferred to offspring via twomechan
11、isms.The first mechanism is by faithful transmission of the traits asresidual parent structures in the offspring cells per se(referred to as the hang-over of parent structure).The second mechanism is by parent structureaffecting the development of offspring structure and contributing to producea sim
12、ilar structure,known as structural inheritance.Structural inheritance is acellular transgenerational effect in which existing cellular structures act as tem-plates for the production of similar structures,then the new structures becomethe components of daughter cells 1.Examples of known templates fo
13、r newstructures include prion in yeast 10,pre-existing cortical structures in ciliates11,12 and the tooth structure of the protozoan Diffugia corona 13.Structuralinheritance has inspired new concepts of evolutionary biology,including thecontribution of the pre-existing cell membrane to eukaryotic ce
14、ll evolution14 and the evolution of replicators 15.&2016 The Author(s)Published by the Royal Society.All rights reserved.on November 7,2016http:/rspb.royalsocietypublishing.org/Downloaded from However,thereisnogeneralquantitativeframeworktopre-dict evolutionary dynamics of cell structure.The quantit
15、ativecell structural traits are expected to have specific evolutionarypatterns compared with evolution of traits that are regulatedby genetic,or other non-genetic,inheritance mechanisms36,because the structure of a single-cell is a mixture of com-ponents with different inheritance patterns.Inheritan
16、ce by thehangover of parental structure makes the mean trait value ofoffspring populations equal to that of the selected parent,and does not contribute to new trait variation.In comparison,structural inheritance brings about a difference between thepopulation mean of the selected parent and that of
17、the off-spring,and new trait variations could be generated with itsincomplete heritability.Vegetative cell wall formation in the diatom,a unicellulareukaryote,is an example of structural inheritance,in thatthe shape of the parent cell physically affects the shape of itsoffspring 16,17.Each cell cons
18、ists of two immutable siliceousvalves(cell walls at both cell poles),which can be differentiallylabelled 18:one is inherited from the parent and the other isnewly formed within offspring cells.The new offspringvalves are formed only within a silica deposition vesicle(SDV)that expands inside the soli
19、d parent valves 16,19,20.Therefore,parent valves function as the template for the exter-nal shape of offspring valves,and the diameter slightlydecreased by parent valve thickness 20.Indeed,the defor-mation of the valve outline shape and abrupt reduction incell size can be inherited for many generati
20、ons 16,21,andthe degree of inheritance is thought to be influenced by flexi-bility of the girdle band(bands of silica that support valves)22.In addition,the microscale surface structure patterns onthe offspring valves correlate with the location of parentalorganelles 16,23 and reflect the environmen
21、tal conditionsthat a parent cell has experienced 2428.Determining whether structural inheritance is affected byenvironmental changes is important for understanding thestability of inheritance 29.Here,we used the euryhalinediatom Cyclotella meneghiniana,which lives in freshwater toestuarine environme
22、nts 30.The diatom exhibits phenotypicplasticity 31,32(i.e.a trait difference resulting from exposureto different environmental conditions)in response to changingsalinity in the laboratory 26,27.In our system,phenotypicplasticity was detected as the trait mean difference betweenthe parent valves in f
23、reshwater and offspring valves in sea-water.To examine the stability of inheritance followingsalinity changes,we investigated parentoffspring valve traitregression between parent valves developed in freshwaterand offspring in seawater.A change in salinity is a ubiquitouscue for the euryhaline diatom
24、,and Cyclotella species arethought to undergo several speciation events according tofreshwater-to-marine migrations 33.The state of vegetative cell structure can influence fitnessand life-cycle transition.We estimated the heritability of fourmicroscale traits(figure 1a:central fultoportulae(CTFP),st
25、riae,central area and cell diameter)which could influencemetabolism 20,mechanical strength 34 and whether thecell switches from asexual to sexual reproduction 21.Thenon-genetic inheritance is expected to cause division of cellstates between cell lineages.For instance,sibling cells fromthe same mothe
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- 1.10 遗传学 Cytoplasmicinheritanceofparent
链接地址:https://www.taowenge.com/p-90989146.html
限制150内