TY - JOUR
T1 - Displacement of the mitotic apparatuses by centrifugation reveals cortical actin organization during cytokinesis in cultured tobacco BY-2 cells
AU - Arima, Kengo
AU - Tamaoki, Daisuke
AU - Mineyuki, Yoshinobu
AU - Yasuhara, Hiroki
AU - Nakai, Tomonori
AU - Shimmen, Teruo
AU - Yoshihisa, Tohru
AU - Sonobe, Seiji
N1 - Publisher Copyright:
© 2018, The Botanical Society of Japan and Springer Japan KK, part of Springer Nature.
PY - 2018/9/1
Y1 - 2018/9/1
N2 - In plant cytokinesis, actin is thought to be crucial in cell plate guidance to the cortical division zone (CDZ), but its organization and function are not fully understood. To elucidate actin organization during cytokinesis, we employed an experimental system, in which the mitotic apparatus is displaced and separated from the CDZ by centrifugation and observed using a global–local live imaging microscope that enabled us to record behavior of actin filaments in the CDZ and the whole cell division process in parallel. In this system, returning movement of the cytokinetic apparatus in cultured-tobacco BY-2 cells occurs, and there is an advantage to observe actin organization clearly during the cytokinetic phase because more space was available between the CDZ and the distantly formed phragmoplast. Actin cables were clearly observed between the CDZ and the phragmoplast in BY-2 cells expressing GFP-fimbrin after centrifugation. Both the CDZ and the edge of the expanding phragmoplast had actin bulges. Using live-cell imaging including the global–local live imaging microscopy, we found actin filaments started to accumulate at the actin-depleted zone when cell plate expansion started even in the cell whose cell plate failed to reach the CDZ. These results suggest that specific accumulation of actin filaments at the CDZ and the appearance of actin cables between the CDZ and the phragmoplast during cell plate formation play important roles in the guidance of cell plate edges to the CDZ.
AB - In plant cytokinesis, actin is thought to be crucial in cell plate guidance to the cortical division zone (CDZ), but its organization and function are not fully understood. To elucidate actin organization during cytokinesis, we employed an experimental system, in which the mitotic apparatus is displaced and separated from the CDZ by centrifugation and observed using a global–local live imaging microscope that enabled us to record behavior of actin filaments in the CDZ and the whole cell division process in parallel. In this system, returning movement of the cytokinetic apparatus in cultured-tobacco BY-2 cells occurs, and there is an advantage to observe actin organization clearly during the cytokinetic phase because more space was available between the CDZ and the distantly formed phragmoplast. Actin cables were clearly observed between the CDZ and the phragmoplast in BY-2 cells expressing GFP-fimbrin after centrifugation. Both the CDZ and the edge of the expanding phragmoplast had actin bulges. Using live-cell imaging including the global–local live imaging microscopy, we found actin filaments started to accumulate at the actin-depleted zone when cell plate expansion started even in the cell whose cell plate failed to reach the CDZ. These results suggest that specific accumulation of actin filaments at the CDZ and the appearance of actin cables between the CDZ and the phragmoplast during cell plate formation play important roles in the guidance of cell plate edges to the CDZ.
KW - Actin cable
KW - Actin-depleted zone
KW - Cortical division zone
KW - Global–local live imaging microscope
KW - Plant cytokinesis
KW - Tobacco BY-2 cells
UR - http://www.scopus.com/inward/record.url?scp=85048753492&partnerID=8YFLogxK
U2 - 10.1007/s10265-018-1047-4
DO - 10.1007/s10265-018-1047-4
M3 - 学術論文
C2 - 29923137
AN - SCOPUS:85048753492
SN - 0918-9440
VL - 131
SP - 803
EP - 815
JO - Journal of Plant Research
JF - Journal of Plant Research
IS - 5
ER -