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Disruption of the standard kinetochore in holocentric Cuscuta species

View ORCID ProfileNeumann Pavel, Ludmila Oliveira, Tae-Soo Jang, Petr Novák, Andrea Koblížková, View ORCID ProfileVeit Schubert, View ORCID ProfileAndreas Houben, View ORCID ProfileJiří Macas
doi: https://doi.org/10.1101/2023.01.04.522735
Neumann Pavel
1Biology Centre, Czech Academy of Sciences, Institute of Plant Molecular Biology, České Budějovice 37005, Czech Republic
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  • For correspondence: neumann@umbr.cas.cz
Ludmila Oliveira
1Biology Centre, Czech Academy of Sciences, Institute of Plant Molecular Biology, České Budějovice 37005, Czech Republic
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Tae-Soo Jang
1Biology Centre, Czech Academy of Sciences, Institute of Plant Molecular Biology, České Budějovice 37005, Czech Republic
2Department of Biological Science, College of Bioscience and Biotechnology, Chungnam National University, Daejeon 34134, Republic of Korea
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Petr Novák
1Biology Centre, Czech Academy of Sciences, Institute of Plant Molecular Biology, České Budějovice 37005, Czech Republic
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Andrea Koblížková
1Biology Centre, Czech Academy of Sciences, Institute of Plant Molecular Biology, České Budějovice 37005, Czech Republic
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Veit Schubert
3Breeding Research, Leibniz Institute of Plant Genetics and Crop Plant Research (IPK) Gatersleben, Seeland, Saxony-Anhalt 06466, Germany
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Andreas Houben
3Breeding Research, Leibniz Institute of Plant Genetics and Crop Plant Research (IPK) Gatersleben, Seeland, Saxony-Anhalt 06466, Germany
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Jiří Macas
1Biology Centre, Czech Academy of Sciences, Institute of Plant Molecular Biology, České Budějovice 37005, Czech Republic
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Abstract

Segregation of chromosomes depends on the centromere. Most species are monocentric, with the centromere restricted to a single region per chromosome. In some organisms, monocentric organization changed to holocentric, in which the centromere activity is distributed over the entire chromosome length. However, the causes and consequences of this transition are poorly understood. Here, we show that the transition in the genus Cuscuta was associated with dramatic changes in the kinetochore, a protein complex that mediates the attachment of chromosomes to microtubules. We found that in holocentric Cuscuta species the KNL2 genes were lost; the CENP-C, KNL1, and ZWINT1 genes were truncated; the centromeric localization of CENH3, CENP-C, KNL1, MIS12, and NDC80 proteins was disrupted; and the spindle assembly checkpoint (SAC) was degenerated. Our results demonstrate that holocentric Cuscuta species lost the ability to form a standard kinetochore and do not employ SAC to control the attachment of microtubules to chromosomes.

Competing Interest Statement

The authors have declared no competing interest.

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The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Posted January 04, 2023.
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Disruption of the standard kinetochore in holocentric Cuscuta species
Neumann Pavel, Ludmila Oliveira, Tae-Soo Jang, Petr Novák, Andrea Koblížková, Veit Schubert, Andreas Houben, Jiří Macas
bioRxiv 2023.01.04.522735; doi: https://doi.org/10.1101/2023.01.04.522735
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Disruption of the standard kinetochore in holocentric Cuscuta species
Neumann Pavel, Ludmila Oliveira, Tae-Soo Jang, Petr Novák, Andrea Koblížková, Veit Schubert, Andreas Houben, Jiří Macas
bioRxiv 2023.01.04.522735; doi: https://doi.org/10.1101/2023.01.04.522735

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