Cargando…

Fruiting Body Formation in Volvariella volvacea Can Occur Independently of Its MAT-A-Controlled Bipolar Mating System, Enabling Homothallic and Heterothallic Life Cycles

Volvariella volvacea is an important crop in Southeast Asia, but erratic fruiting presents a serious challenge for its production and breeding. Efforts to explain inconsistent fruiting have been complicated by the multinucleate nature, typical lack of clamp connections, and an incompletely identifie...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Bingzhi, van Peer, Arend F., Yan, Junjie, Li, Xiao, Xie, Bin, Miao, Juan, Huang, Qianhui, Zhang, Lei, Wang, Wei, Fu, Junsheng, Zhang, Xiang, Zhang, Xiaoyin, Hu, Fengli, Kong, Qingfang, Sun, Xianyun, Zou, Feng, Zhang, Hanxing, Li, Shaojie, Xie, Baogui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4938666/
https://www.ncbi.nlm.nih.gov/pubmed/27194800
http://dx.doi.org/10.1534/g3.116.030700
_version_ 1782441902649376768
author Chen, Bingzhi
van Peer, Arend F.
Yan, Junjie
Li, Xiao
Xie, Bin
Miao, Juan
Huang, Qianhui
Zhang, Lei
Wang, Wei
Fu, Junsheng
Zhang, Xiang
Zhang, Xiaoyin
Hu, Fengli
Kong, Qingfang
Sun, Xianyun
Zou, Feng
Zhang, Hanxing
Li, Shaojie
Xie, Baogui
author_facet Chen, Bingzhi
van Peer, Arend F.
Yan, Junjie
Li, Xiao
Xie, Bin
Miao, Juan
Huang, Qianhui
Zhang, Lei
Wang, Wei
Fu, Junsheng
Zhang, Xiang
Zhang, Xiaoyin
Hu, Fengli
Kong, Qingfang
Sun, Xianyun
Zou, Feng
Zhang, Hanxing
Li, Shaojie
Xie, Baogui
author_sort Chen, Bingzhi
collection PubMed
description Volvariella volvacea is an important crop in Southeast Asia, but erratic fruiting presents a serious challenge for its production and breeding. Efforts to explain inconsistent fruiting have been complicated by the multinucleate nature, typical lack of clamp connections, and an incompletely identified sexual reproductive system. In this study, we addressed the life cycle of V. volvacea using whole genome sequencing, cloning of MAT loci, karyotyping of spores, and fruiting assays. Microscopy analysis of spores had previously indicated the possible coexistence of heterothallic and homothallic life cycles. Our analysis of the MAT loci showed that only MAT-A, and not MAT-B, controlled heterokaryotization. Thus, the heterothallic life cycle was bipolar. Karyotyping of single spore isolates (SSIs) using molecular markers supported the existence of heterokaryotic spores. However, most SSIs were clearly not heterokaryotic, yet contained structural variation (SV) markers relating to both alleles of both parents. Heterokaryons from crossed, self-sterile homokaryons could produce fruiting bodies, agreeing with bipolar heterothallism. Meanwhile, some SSIs with two different MAT-A loci also produced fruiting bodies, which supported secondary homothallism. Next, SSIs that clearly contained only one MAT-A locus (homothallism) were also able to fruit, demonstrating that self-fertile SSIs were not, per definition, secondary homothallic, and that a third life cycle or genetic mechanism must exist. Finally, recombination between SV markers was normal, yet 10 out of 24 SV markers showed 1:2 or 1:3 distributions in the spores, and large numbers of SSIs contained doubled SV markers. This indicated selfish genes, and possibly partial aneuploidy.
format Online
Article
Text
id pubmed-4938666
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Genetics Society of America
record_format MEDLINE/PubMed
spelling pubmed-49386662016-07-19 Fruiting Body Formation in Volvariella volvacea Can Occur Independently of Its MAT-A-Controlled Bipolar Mating System, Enabling Homothallic and Heterothallic Life Cycles Chen, Bingzhi van Peer, Arend F. Yan, Junjie Li, Xiao Xie, Bin Miao, Juan Huang, Qianhui Zhang, Lei Wang, Wei Fu, Junsheng Zhang, Xiang Zhang, Xiaoyin Hu, Fengli Kong, Qingfang Sun, Xianyun Zou, Feng Zhang, Hanxing Li, Shaojie Xie, Baogui G3 (Bethesda) Investigations Volvariella volvacea is an important crop in Southeast Asia, but erratic fruiting presents a serious challenge for its production and breeding. Efforts to explain inconsistent fruiting have been complicated by the multinucleate nature, typical lack of clamp connections, and an incompletely identified sexual reproductive system. In this study, we addressed the life cycle of V. volvacea using whole genome sequencing, cloning of MAT loci, karyotyping of spores, and fruiting assays. Microscopy analysis of spores had previously indicated the possible coexistence of heterothallic and homothallic life cycles. Our analysis of the MAT loci showed that only MAT-A, and not MAT-B, controlled heterokaryotization. Thus, the heterothallic life cycle was bipolar. Karyotyping of single spore isolates (SSIs) using molecular markers supported the existence of heterokaryotic spores. However, most SSIs were clearly not heterokaryotic, yet contained structural variation (SV) markers relating to both alleles of both parents. Heterokaryons from crossed, self-sterile homokaryons could produce fruiting bodies, agreeing with bipolar heterothallism. Meanwhile, some SSIs with two different MAT-A loci also produced fruiting bodies, which supported secondary homothallism. Next, SSIs that clearly contained only one MAT-A locus (homothallism) were also able to fruit, demonstrating that self-fertile SSIs were not, per definition, secondary homothallic, and that a third life cycle or genetic mechanism must exist. Finally, recombination between SV markers was normal, yet 10 out of 24 SV markers showed 1:2 or 1:3 distributions in the spores, and large numbers of SSIs contained doubled SV markers. This indicated selfish genes, and possibly partial aneuploidy. Genetics Society of America 2016-05-16 /pmc/articles/PMC4938666/ /pubmed/27194800 http://dx.doi.org/10.1534/g3.116.030700 Text en Copyright © 2016 Chen et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigations
Chen, Bingzhi
van Peer, Arend F.
Yan, Junjie
Li, Xiao
Xie, Bin
Miao, Juan
Huang, Qianhui
Zhang, Lei
Wang, Wei
Fu, Junsheng
Zhang, Xiang
Zhang, Xiaoyin
Hu, Fengli
Kong, Qingfang
Sun, Xianyun
Zou, Feng
Zhang, Hanxing
Li, Shaojie
Xie, Baogui
Fruiting Body Formation in Volvariella volvacea Can Occur Independently of Its MAT-A-Controlled Bipolar Mating System, Enabling Homothallic and Heterothallic Life Cycles
title Fruiting Body Formation in Volvariella volvacea Can Occur Independently of Its MAT-A-Controlled Bipolar Mating System, Enabling Homothallic and Heterothallic Life Cycles
title_full Fruiting Body Formation in Volvariella volvacea Can Occur Independently of Its MAT-A-Controlled Bipolar Mating System, Enabling Homothallic and Heterothallic Life Cycles
title_fullStr Fruiting Body Formation in Volvariella volvacea Can Occur Independently of Its MAT-A-Controlled Bipolar Mating System, Enabling Homothallic and Heterothallic Life Cycles
title_full_unstemmed Fruiting Body Formation in Volvariella volvacea Can Occur Independently of Its MAT-A-Controlled Bipolar Mating System, Enabling Homothallic and Heterothallic Life Cycles
title_short Fruiting Body Formation in Volvariella volvacea Can Occur Independently of Its MAT-A-Controlled Bipolar Mating System, Enabling Homothallic and Heterothallic Life Cycles
title_sort fruiting body formation in volvariella volvacea can occur independently of its mat-a-controlled bipolar mating system, enabling homothallic and heterothallic life cycles
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4938666/
https://www.ncbi.nlm.nih.gov/pubmed/27194800
http://dx.doi.org/10.1534/g3.116.030700
work_keys_str_mv AT chenbingzhi fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT vanpeerarendf fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT yanjunjie fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT lixiao fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT xiebin fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT miaojuan fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT huangqianhui fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT zhanglei fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT wangwei fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT fujunsheng fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT zhangxiang fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT zhangxiaoyin fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT hufengli fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT kongqingfang fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT sunxianyun fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT zoufeng fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT zhanghanxing fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT lishaojie fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles
AT xiebaogui fruitingbodyformationinvolvariellavolvaceacanoccurindependentlyofitsmatacontrolledbipolarmatingsystemenablinghomothallicandheterothalliclifecycles