期刊文献+

Arabidopsis PTD Is Required for Type Ⅰ Crossover Formation and Affects Recombination Frequency in Two Different Chromosomal Regions 被引量:5

Arabidopsis PTD Is Required for Type I Crossover Formation and Affects Recombination Frequency in Two Different Chromosomal Regions
原文传递
导出
摘要 In eukaryotes, crossovers together with sister chromatid cohesion maintain physical association between homologous chromosomes, ensuring accurate chromosome segregation during meiosis I and resulting in exchange of genetic information between homologues. The Arabidopsis PTD (Parting Dancers) gene affects the level of meiotic crossover formation, but its functional relationships with other core meiotic genes, such as AtSP011-1, AtRAD51, and AtMSH4, are unclear; whether PTD has other functions in meiosis is also unknown. To further analyze PTD function and to test for epistatic relationships, we compared the meiotic chromosome behaviors ofAtspoll-1 ptd and Atrad51 ptd double mutants with the relevant single mutants. The results suggest that PTD functions downstream of AtSP011-1 and AtRAD51 in the meiotic recombination pathway. Furthermore, we found that meiotic defects in rck pM and Atmsh4 ptd double mutants showed similar meiotic phenotypes to those of the relevant single mutants, providing genetic evidences for roles of PTD and RCK in the type I crossovers pathway. Moreover, we employed a pollen tetrad-based fluorescence method and found that the meiotic crossover frequencies in two genetic intervals were significantly reduced from 6.63% and 22.26% in wild-type to 1.14% and 6.36%, respectively, in the ptd^2 mutant. These results revealed new aspects of PTD function in meiotic crossover formation. In eukaryotes, crossovers together with sister chromatid cohesion maintain physical association between homologous chromosomes, ensuring accurate chromosome segregation during meiosis I and resulting in exchange of genetic information between homologues. The Arabidopsis PTD (Parting Dancers) gene affects the level of meiotic crossover formation, but its functional relationships with other core meiotic genes, such as AtSP011-1, AtRAD51, and AtMSH4, are unclear; whether PTD has other functions in meiosis is also unknown. To further analyze PTD function and to test for epistatic relationships, we compared the meiotic chromosome behaviors ofAtspoll-1 ptd and Atrad51 ptd double mutants with the relevant single mutants. The results suggest that PTD functions downstream of AtSP011-1 and AtRAD51 in the meiotic recombination pathway. Furthermore, we found that meiotic defects in rck pM and Atmsh4 ptd double mutants showed similar meiotic phenotypes to those of the relevant single mutants, providing genetic evidences for roles of PTD and RCK in the type I crossovers pathway. Moreover, we employed a pollen tetrad-based fluorescence method and found that the meiotic crossover frequencies in two genetic intervals were significantly reduced from 6.63% and 22.26% in wild-type to 1.14% and 6.36%, respectively, in the ptd^2 mutant. These results revealed new aspects of PTD function in meiotic crossover formation.
出处 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2014年第3期165-175,共11页 遗传学报(英文版)
基金 supported by funds from Fudan University funds from Rijk Zwaan,the Netherlands,and the Biology Department and the Huck Institutes of the Life Sciences at the Pennsylvania State University in USA
关键词 PTD MEIOSIS MSH4 CROSSOVER Recombination frequency PTD Meiosis MSH4 Crossover Recombination frequency
  • 相关文献

参考文献44

  • 1B6rner, G.V., Kleckner, N., Hunter, N., 2004. Crossover/noncrossover differ- entiation, synaptonemal complex formation and regulatory surveillance at the leptotene/zygotene transition of meiosis. Cell 117, 29--45.
  • 2Barlow, A., Hulten, M., 1998. Crossing over analysis at pachytene in man. Eur. J. Hum. Genet. 6, 350-358.
  • 3Berchowitz, L.E., Francis, K.E., Bey, A.L,, Copenhaver, G.E, 2007. The role of AtMUSSI in interference-insensitive crossovers in A. thaliana. PLoS Genet. 3, e132.
  • 4Bishop, D.KI, Zickler, D., 2004. Early decision; meiotic crossover interference prior to stable strand exchange and synapsis. Cell 117, 9--15.
  • 5Celerin, M., Merino, S.T., Stone, J.E., Menzie, A.M., Zolan, M.E., 2000. Multiple roles of SPO11 in meiotic chromosome behavior. EMBO J. 19, 2739--2750.
  • 6Chen, C., Zhang, W., Timofejeva, L., Gerardin, Y., Ma, H., 2005. The Ara- bidopsis ROCK-N-ROLLERS gene encodes a homolog of the yeast ATP- dependent DNA helicase MER3 and is required for normal meiotic crossover formation. Plant J. 43, 321-334.
  • 7Copenhaver, G.R, Housworth, E.A., Stahl, F.W., 2002. Crossover interference in Arabidopsis. Genetics 160, 1631--1639.
  • 8Dernburg, A.F., McDonald, K., Moulder, G., Barstead, R., Dresser, M.] Villeneuve, A.M., 1998. Meiotic recombination in C. elegans initiates by conserved mechanism and is dispensable for homologous chromosom synapsis. Cell 94, 387--398. ].
  • 9Deyhle, F., Sarkar, A.K., Tucker, E.J., Laux, T., 2007. WUSCHEL regulates cell differentiation during anther development. Dev. Biol. 302, 154-159.
  • 10Esposito, M.S., Esposito, R.E., 1969. The genetic control of sporulation in Saccharomyces. I, The isolation of temperature-sensitive sporulation- deficient mutants. Genetics 61, 79-89.

同被引文献43

  • 1刘洋,何心尧,马红波,吴泳历,杨佑明.用CTAB-PVP法提取棉花各组织总RNA的研究[J].中国农业大学学报,2006,11(1):53-56. 被引量:43
  • 2李朋波,李召虎,华金平.植物多倍化对基因组的冲击及对植物的影响[G]//中国棉花学会2006年年会暨第七次代表大会论文汇编.保定:中国棉花学会,2006:91-94.
  • 3Comai L. The advantages and disadvantages of being poly- ploid [ J ]. Nature Reviews Genetics, 2005, 6 ( 11 ) : 836-846.
  • 4Chen Z J, Ni Z. Mechanisms of genomic rearrangements and gene expression changes in plant polyploids [ J ]. Bioessays ,2006,28 ( 3 ) :240-252.
  • 5Adams K L,Wendel J F. Polyploidy and genome evolution in plants [ J ]. Current Opinion in Plant Biology, 2005,8 (2) :135-141.
  • 6Shaked H, Kashkush K, Ozkan H, et al. Sequence elimina- tion and cytosine methylation are rapid and reproducible responses of the genorne to wide hybridization and alto- polyploidy in wheat [ J ]. The Plant Cell, 2001,13 ( 8 ) : 1749-1759.
  • 7Shen Y,Tang D, Wang K, et al. ZIP4 in homologous chro- mosome synapsis and crossover formation in rice meiosis [ J]. Journal of Cell Science ,2012,125 ( 11 ) :2581-2591.
  • 8Yelina N E,Ziolkowski P A, Miller N, et al. High-through- put analysis of meiotic crossover frequency and interference via flow cytometry of fluorescent pollen in Arabidopsis thaliana [ J ]. Nature Protocols, 2013,8 ( 11 ) : 2119-2134.
  • 9Macaisne N,Vignard J,Mercier R. SHOC1 and PTD form an XPF-ERCCI-like complex that is required for forma- tion of class I crossovers [ J ]. Journal of Cell Science, 2011,124 (16) :2687-2691.
  • 10Sonntag Brown M, Lira E, Chen C, et al. Genetic analysis of mlh3 mutations reveals interactions between crossoverpromoting factors during meiosis in bakers yeast[ J]. G3 (Bethesda) ,2013,3 ( 1 ) :9-22.

引证文献5

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部