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Manipulation and In Vitro Maturation of Xenopus laevis Oocytes, Followed by Intracytoplasmic Sperm Injection, to Study Embryonic Development
Published on: February 9, 2015
Oocyte maturation in Xenopus laevis is blocked by the hormonal herbicide, 2,4-dichlorophenoxy acetic acid
Barbara Stebbins-Boaz1, Katherine Fortner, Jessie Frazier
1Department of Biology, Willamette University, Salem, Oregon 97301, USA. bstebbin@willamette.edu
Abstract:
Oocyte maturation is dependent on a complex program of morphological, ultrastructural, and biochemical signaling events, and if disrupted could lead to decreased fertility and population decline. The in vitro sensitivity of amphibian oocytes and oocyte maturation to plant growth factor and widely used hormonal herbicide, 2,4-dichlorophenoxyacetic acid (2,4-D), was examined in this study to determine its potential impact on early development and possible contribution to the global amphibian decline. Progesterone, which acts through a membrane receptor, triggers meiotic maturation in full grown (stage VI) Xenopus oocytes, characterized by cytoskeletal reorganization, nuclear dissolution, chromosome condensation, and spindle formation. Biochemically, the Mos/MAPK/MPF signaling pathway is activated, in part dependent on translational activation of specific maternal mRNAs such as c-Mos. Light microscopy revealed unusual asymmetric morphotypes in oocytes exposed to 2,4-D alone characterized by a white spot and bulge, termed coning, in the animal pole where the germinal vesicle (nucleus) persisted intact. Treatment of oocytes with cytochalasin B, a microfilament inhibitor, blocked these morphotypes but nocodazole, a microtubule depolymerizing agent, did not. Confocal microscopy showed that 2,4-D, itself, caused substantial depolymerization of perinuclear microtubules. Importantly, 2,4-D blocked progesterone-induced maturation as measured by the lack of nuclear breakdown, confirmed by the lack of Mos expression, MPF activation, and cytoplasmic polyadenylation of cyclin B1 mRNA. However, Western blot analysis and U0126 inhibitor studies showed that 2,4-D, either alone or in the presence of progesterone, induced MAPK phosphorylation through MAPKK. These results show that 2,4-D disrupts oocyte cytoskeletal organization and blocks maturation while stimulating an independent MAPK signaling pathway.
Insights
The herbicide 2,4-dichlorophenoxyacetic acid (2,4-D) disrupts amphibian oocyte maturation by affecting cytoskeletal organization and blocking key signaling pathways. This disruption may contribute to amphibian population declines.
Area of Science:
- Reproductive Biology
- Environmental Toxicology
- Cellular Signaling
Background:
- Oocyte maturation is crucial for fertility and involves complex signaling pathways.
- Disruptions in oocyte maturation can lead to decreased fertility and population decline.
- The impact of environmental factors like herbicides on amphibian oocytes requires investigation.
Purpose of the Study:
- To examine the in vitro effects of 2,4-dichlorophenoxyacetic acid (2,4-D) on amphibian oocyte maturation.
- To determine the potential contribution of 2,4-D to global amphibian decline.
- To elucidate the specific cellular and molecular mechanisms by which 2,4-D affects oocytes.
Main Methods:
- Xenopus oocytes were exposed to 2,4-D and progesterone.
- Light and confocal microscopy were used to observe morphological changes and microtubule organization.
- Western blot analysis and inhibitor studies (U0126) assessed signaling pathway activation (MAPK, MPF).
Main Results:
- 2,4-D induced abnormal oocyte morphology (coning) and disrupted microtubule organization.
- 2,4-D blocked progesterone-induced meiotic maturation, inhibiting nuclear breakdown, Mos expression, and MPF activation.
- 2,4-D independently activated MAPK signaling, irrespective of progesterone treatment.
Conclusions:
- 2,4-D interferes with oocyte cytoskeletal organization, preventing maturation.
- The herbicide disrupts essential signaling pathways required for oocyte development.
- These findings highlight 2,4-D as a potential environmental threat to amphibian reproduction and survival.
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