EAPSI: Adapting Japanese silkmoth rearing techniques to answer evolutionary questions
EAPSI: Adapting Japanese silkmoth rearing techniques to answer evolutionary questions
批准号:
1515021
负责人:
Andrew Mongue
金额:
$0.51万
依托单位:
依托单位国家:
美国
项目类别:
Fellowship Award
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-06-01 至 2016-05-31
中文摘要
蝴蝶和飞蛾的生殖生物学与许多其他动物不同,原因尚不清楚。这些昆虫产生大量没有DNA的精子,这些精子不可能使卵子受精。这样的细胞似乎是一种资源浪费,因此应该通过自然选择去除,但它们没有。该奖项支持与日本国立农业生物科学研究所的Hideki Sezutsu博士合作,学习日本蚕蛾育种技术,该技术在其他地方没有实践,可以解决这个谜团。实验将在Suzetsu实验室对蚕蛾进行,结果将在美国本土的蝴蝶和飞蛾中得到证实。所获得的见解将有助于生殖生物学的重要理论讨论,并可能适用于帮助保护农业上重要的传粉者。日本研究人员开发了蚕蛾人工授精的方案。这项技术将允许研究人员改变雌蚕接受的精子的数量和种类。在缺乏DNA的精子具有功能性作用的假设下,它们在授精中的缺失应该会对女性的生育能力产生负面影响?的鸡蛋。从这项实验中获得的见解将用于更彻底地测试这种新型精子类型在其他蛾和蝴蝶中的功能的假设,研究人员将与其他国内昆虫生物学家分享这些技术,为生殖生物学领域的工作开辟新的途径。这个NSF EAPSI奖是一个奖学金给美国研究生,并与日本科学促进协会合作资助。
英文摘要
The reproductive biology of butterflies and moths differs from many other animals for reasons that remain unclear. These insects make vast quantities of sperm with no DNA which cannot possibly fertilize eggs. Such cells appear to be a waste of resources, and thus should be removed by natural selection, but they have not been. This award supports a collaboration with Dr. Hideki Sezutsu of the National Institute of Agrobiological Sciences in Japan to learn Japanese silkmoth breeding techniques practiced nowhere else that can address this mystery. Experiments will be conducted in the Suzetsu lab on silkmoths and results will be confirmed in the United States with native butterflies and moths. Insights gained will contribute to an important theoretical discussion in reproductive biology and may be applied to aid conservation of agriculturally important pollinators. Japanese researchers have developed protocols for artificial insemination in silkmoths. This technique will allow the researcher to vary the amount and kind of sperm female silkmoths receive. Under the hypothesis that DNA-lacking sperm have a functional role, their absence in an insemination should negatively impact the fertility of a female?s eggs. Insight gained from this experiment will be used to more thoroughly test hypotheses for the function of this novel sperm type in other moths and butterflies and the researcher will share these techniques with other domestic insect biologists to advance open new avenues for work in the field of reproductive biology. This NSF EAPSI award is a fellowship to a U.S. graduate student and is funded in collaboration with the Japan Society for the Promotion of Science.
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