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1 ls were defective in progressing through the pachytene stage.
2 d Rad51 foci and absence of Mlh1 foci in the pachytene stage.
3  contained oocytes that were arrested at the pachytene stage.
4  increasing accumulation of mRNA through the pachytene stage.
5 or germ cell maturation during the early-mid pachytene stage.
6  house mice via spermatogenic failure at the pachytene stage.
7 on in fully synapsed chromosomes at the late pachytene stage.
8       Cleavage of genic targets began at the pachytene stage and resulted in progressive repression t
9 ologous chromosomes are fully aligned at the pachytene stage, and germ cells survive to complete meio
10 ntered meiotic prophase and were arrested at pachytene stage, and there was a significant increase in
11 d meiotic progression of germ cells into the pachytene stage, as spermatogonial and Sertoli cells wer
12 otic and differentiation of cells beyond the pachytene stage began to falter.
13 the mutant mice synapsed and advanced to the pachytene stage but failed to progress to the diplotene
14            GLD-1 levels are high through the pachytene stage but fall to background as germ cells exi
15              However, cells that survive the pachytene stage display chromosome nondisjunction at the
16 nlarging oocytes, originating primarily from pachytene-stage germ cells.
17 etic landscape of meiotic chromosomes at the pachytene stage in mouse oocytes.
18 nts showing that him-14 functions during the pachytene stage, indicate that him-14 is not needed to e
19 e findings reveal a process in which, at the pachytene stage, individual telomere/nuclear envelope (N
20 thout significant delay, in Atmsh5-1 but the pachytene stage is extended by several hours, indicative
21 imited to a very transient period during the pachytene stage of first meiotic prophase.
22 ocalized to P granules beginning at the late pachytene stage of male gametogenesis.
23 hat the crossovers were induced at the early pachytene stage of meiosis I.
24 auses arrest of spermatogenesis prior to the pachytene stage of meiosis prophase I.
25              In budding yeast, exit from the pachytene stage of meiosis requires the mid-meiosis tran
26  cell proliferation, progression through the pachytene stage of meiosis, and the formation of bivalen
27 eflects the compaction of chromosomes at the pachytene stage of meiosis.
28 expression corresponds with the onset of the pachytene stage of meiosis.
29 their histone modifications beginning at the pachytene stage of meiosis.
30 ay a role in the exit of germ cells from the pachytene stage of meiotic prophase and/or gamete differ
31 t spermatogenesis is arrested at mid to late pachytene stage of meiotic prophase with defective synap
32               The hop2 mutant arrests at the pachytene stage of meiotic prophase with the RecA-like p
33                   Both mutants arrest at the pachytene stage of meiotic prophase, sae1-1 temporarily
34 e bivalents is acquired by the middle of the pachytene stage of meiotic prophase, several days after
35 ue to checkpoint-induced arrest/delay at the pachytene stage of meiotic prophase.
36 heckpoint that causes cells to arrest at the pachytene stage of meiotic prophase.
37 is undergo checkpoint-mediated arrest at the pachytene stage of meiotic prophase.
38 gression through gametogenesis occurs at the pachytene stage of meiotic prophase.
39          Meiosis is arrested at the zygotene/pachytene stage of prophase I as a result of abnormal ch
40 turbation could be traced as far back as the pachytene stage of spermatogenesis.
41 spermatogenesis is disrupted at mid- or late pachytene stages of meiosis or early spermiogenesis.
42  meiotic chromosomes during the zygotene and pachytene stages of meiosis.
43 ed solely in germ cells during the leptotene-pachytene stages of spermatogenesis.
44  male germ cells, as it was found in meiotic pachytene stage oocytes as well.
45 ditory nerve) maintained normal function but pachytene stage spermatocytes underwent apoptosis.
46 tly normal late recombination nodules at the pachytene stage, suggesting that the mutant's defects in
47                                       At the pachytene stage, telomeres rearranged again by dispersin
48 ely in germ cells of the testis from the mid-pachytene stage until the elongating spermatid stage.
49 mature termination of spermatogenesis at the pachytene stage was accompanied by increased apoptosis b
50 ages, but not genes that are markers for the pachytene stage, was observed.
51  concert with a requirement for c-Abl at the pachytene stage, we show that, in contrast to wild-type
52 es without PIWI proteins are arrested at the pachytene stage, when the sex chromosomes undergo transc
53 asynapsed autosomes undergo apoptosis at the pachytene stage, while those with only asynapsed sex chr
54 ns in early meiotic Prophase I, prior to the pachytene stage, with increasing accumulation of mRNA th

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