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Cooperative Functions of the Microtubule and Actin Cytoskeletons for Cell Division in the Flowering Plant A. thaliana
Cooperative Functions of the Microtubule and Actin Cytoskeletons for Cell Division in the ...
Cooperative Functions of the Microtubule and Actin Cytoskeletons for Cell Division in the Flowering Plant A. thaliana

상세정보

자료유형  
 학위논문 서양
최종처리일시  
20260202103618
ISBN  
9798290614298
DDC  
580
저자명  
Huang, Calvin Haoyuan.
서명/저자  
Cooperative Functions of the Microtubule and Actin Cytoskeletons for Cell Division in the Flowering Plant A. thaliana
발행사항  
[Sl] : University of California, Davis, 2025
발행사항  
Ann Arbor : ProQuest Dissertations & Theses, 2025
형태사항  
112 p
주기사항  
Source: Dissertations Abstracts International, Volume: 87-01, Section: B.
주기사항  
Advisor: Liu, Bo.
학위논문주기  
Thesis (Ph.D.)--University of California, Davis, 2025.
초록/해제  
요약Cell division is a process that ensures faithful segregation of replicated genetic materials followed by partitioning of the cytoplasm. In all eukaryotes, the process of cell division is dependent on the dynamic cytoskeleton. In plants, the two major protein polymers that constitute the cytoskeleton are microtubules and F-actin. During cell division, the cytoskeleton is reorganized into different arrays of different physiological functions. These arrays include the preprophase band, spindle and phragmoplast, which function to predict the future division plane, segregate chromosomes, and form the cell plate, respectively. In flowering plants, these microtubule-based structures are nucleated without a structurally defined microtubule-organizing center like the centrosome. So, an intriguing question has been how these arrays, especially those of the spindle, are organized in the absence of centrosomes. Furthermore, a network of F-actin is also detected by being incorporated into the microtubule-based apparatuses and disruption of either the F-actin or microtubules can lead to defects in cell division. Earlier studies raise a question of how different cytoskeleton filaments can interact or crosstalk to execute faithful cell division in acentrosomal cells. Here, we reveal novel functions of microtubule motors, kinesins, and F-actin motors, myosins, in regulating cell division and detected their physical interaction for such functions.This dissertation uncovers new roles for cytoskeletal motor proteins, microtubule-based kinesins and F-actin-based myosins, in coordinating plant cell division. In Chapter 1, I identify a previously uncharacterized subclass of Kinesin-14 motors (class D) in Arabidopsis thaliana that localizes to the spindle midzone and is essential for organizing kinetochore fibers during spindle formation. Chapter 2 explores the function of Myosin XI motors in cytokinesis, revealing that the Myosin XI motor protein, MYA1, localizes to the cortical division site (CDS) in a preprophase band-dependent manner. MYA1 interacts with other CDS proteins, including the microtubule-associated protein TANGLED1 and the Kinesin-12 motor Phragmoplast Orienting Kinesin 1 (POK1). Together, these proteins form a higher-order complex or assemblies, which we term Cytoskeleton-Associated Motor assemblies at the PPB site (CAMP), that coordinates phragmoplast expansion and ensures precise cell plate positioning.Together, these findings highlight how coordinated actions of microtubule and actin motors ensure faithful cell division in acentrosomal plant cells.
일반주제명  
Botany
일반주제명  
Cellular biology
일반주제명  
Plant sciences
키워드  
Acentrosomal spindle
키워드  
Actin
키워드  
Division site determination
키워드  
Interpolar microtubules
키워드  
Kinesin-14
키워드  
Myosin XI
기타저자  
University of California, Davis Plant Biology
기본자료저록  
Dissertations Abstracts International. 87-01B.
전자적 위치 및 접속  
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MARC

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■035    ▼a(MiAaPQ)AAI32045081
■040    ▼aMiAaPQ▼cMiAaPQ
■0820  ▼a580
■1001  ▼aHuang,  Calvin  Haoyuan.
■24510▼aCooperative  Functions  of  the  Microtubule  and  Actin  Cytoskeletons  for  Cell  Division  in  the  Flowering  Plant  A.  thaliana
■260    ▼a[Sl]▼bUniversity  of  California,  Davis▼c2025
■260  1▼aAnn  Arbor▼bProQuest  Dissertations  &  Theses▼c2025
■300    ▼a112  p
■500    ▼aSource:  Dissertations  Abstracts  International,  Volume:  87-01,  Section:  B.
■500    ▼aAdvisor:  Liu,  Bo.
■5021  ▼aThesis  (Ph.D.)--University  of  California,  Davis,  2025.
■520    ▼aCell  division  is  a  process  that  ensures  faithful  segregation  of  replicated  genetic  materials  followed  by  partitioning  of  the  cytoplasm.  In  all  eukaryotes,  the  process  of  cell  division  is  dependent  on  the  dynamic  cytoskeleton.  In  plants,  the  two  major  protein  polymers  that  constitute  the  cytoskeleton  are  microtubules  and  F-actin.  During  cell  division,  the  cytoskeleton  is  reorganized  into  different  arrays  of  different  physiological  functions.  These  arrays  include  the  preprophase  band,  spindle  and  phragmoplast,  which  function  to  predict  the  future  division  plane,  segregate  chromosomes,  and  form  the  cell  plate,  respectively.  In  flowering  plants,  these  microtubule-based  structures  are  nucleated  without  a  structurally  defined  microtubule-organizing  center  like  the  centrosome.  So,  an  intriguing  question  has  been  how  these  arrays,  especially  those  of  the  spindle,  are  organized  in  the  absence  of  centrosomes.  Furthermore,  a  network  of  F-actin  is  also  detected  by  being  incorporated  into  the  microtubule-based  apparatuses  and  disruption  of  either  the  F-actin  or  microtubules  can  lead  to  defects  in  cell  division.  Earlier  studies  raise  a  question  of  how  different  cytoskeleton  filaments  can  interact  or  crosstalk  to  execute  faithful  cell  division  in  acentrosomal  cells.  Here,  we  reveal  novel  functions  of  microtubule  motors,  kinesins,  and  F-actin  motors,  myosins,  in  regulating  cell  division  and  detected  their  physical  interaction  for  such  functions.This  dissertation  uncovers  new  roles  for  cytoskeletal  motor  proteins,  microtubule-based  kinesins  and  F-actin-based  myosins,  in  coordinating  plant  cell  division.  In  Chapter  1,  I  identify  a  previously  uncharacterized  subclass  of  Kinesin-14  motors  (class  D)  in  Arabidopsis  thaliana  that  localizes  to  the  spindle  midzone  and  is  essential  for  organizing  kinetochore  fibers  during  spindle  formation.  Chapter  2  explores  the  function  of  Myosin  XI  motors  in  cytokinesis,  revealing  that  the  Myosin  XI  motor  protein,  MYA1,  localizes  to  the  cortical  division  site  (CDS)  in  a  preprophase  band-dependent  manner.  MYA1  interacts  with  other  CDS  proteins,  including  the  microtubule-associated  protein  TANGLED1  and  the  Kinesin-12  motor  Phragmoplast  Orienting  Kinesin  1  (POK1).  Together,  these  proteins  form  a  higher-order  complex  or  assemblies,  which  we  term  Cytoskeleton-Associated  Motor  assemblies  at  the  PPB  site  (CAMP),  that  coordinates  phragmoplast  expansion  and  ensures  precise  cell  plate  positioning.Together,  these  findings  highlight  how  coordinated  actions  of  microtubule  and  actin  motors  ensure  faithful  cell  division  in  acentrosomal  plant  cells.
■590    ▼aSchool  code:  0029.
■650  4▼aBotany
■650  4▼aCellular  biology
■650  4▼aPlant  sciences
■653    ▼aAcentrosomal  spindle
■653    ▼aActin
■653    ▼aDivision  site  determination
■653    ▼aInterpolar  microtubules
■653    ▼aKinesin-14
■653    ▼aMyosin  XI
■690    ▼a0309
■690    ▼a0379
■690    ▼a0479
■71020▼aUniversity  of  California,  Davis▼bPlant  Biology.
■7730  ▼tDissertations  Abstracts  International▼g87-01B.
■790    ▼a0029
■791    ▼aPh.D.
■792    ▼a2025
■793    ▼aEnglish
■85640▼uhttp://www.riss.kr/pdu/ddodLink.do?id=T17357925▼nKERIS▼z이  자료의  원문은  한국교육학술정보원에서  제공합니다.

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