生物多样性 ›› 2020, Vol. 28 ›› Issue (10): 1222-1228. DOI: 10.17520/biods.2019383 cstr: 32101.14.biods.2019383
所属专题: 传粉生物学; 昆虫多样性与生态功能
收稿日期:
2019-12-04
接受日期:
2020-02-22
出版日期:
2020-10-20
发布日期:
2020-10-20
通讯作者:
唐利洲
作者简介:
E-mail: biologytang@163.com基金资助:
Huanhuan Chen1,2, Zhumei Li1, Lizhou Tang1,*()
Received:
2019-12-04
Accepted:
2020-02-22
Online:
2020-10-20
Published:
2020-10-20
Contact:
Lizhou Tang
摘要:
全球已知有约800种榕属(Ficus)植物, 主要分布在热带, 部分种类延伸至亚热带地区。温度是限制榕‒蜂共生系统分布北界的主要因素, 也显著影响榕树及其榕小蜂的繁殖成功, 其中榕小蜂对温度的响应更加敏感。榕小蜂只有在一定的温度范围内才能保持正常的生理机能, 其对温度耐受能力直接影响榕果内小蜂种群数量和群落内种间关系。然而目前对榕小蜂温度耐受性的研究尚少, 榕小蜂的温度耐受能力如何影响榕果内小蜂的共存关系还未见报道。本文研究了分布于西双版纳的2种雌雄同株和1种雌雄异株榕树果内传粉榕小蜂和非传粉小蜂的温度耐受能力。结果表明: 3种传粉榕小蜂对高温的耐受性极差, 相对于雌雄同株的高榕(F. altissima)和聚果榕(F. racemosa)传粉榕小蜂, 雌雄异株的鸡嗉子榕(F. semicordata)传粉榕小蜂对低温有增强的耐受趋势。聚果榕小蜂群落结构显示: 在适宜其生长的西双版纳地区, 传粉榕小蜂的数量占绝对优势, 在温度较低的季节其数量显著减少; 而非传粉榕小蜂呈相反模式, 较强的温度耐受能力使其在低温的雾凉季维持了较高的种群数量。鸡嗉子榕果内非传粉小蜂Sycoscapter trifemmensis相对于Philotrypesis dunia有更强的温度耐受能力, 在种群数量和种间关系上有更多的竞争优势及数量。榕小蜂的温度耐受性差异在物种分布、种间关系的维持和共存上起了重要作用, 本研究结果为阐明榕小蜂种间共存的维持机制提供了科学依据。
陈欢欢, 李竹梅, 唐利洲 (2020) 榕小蜂温度耐受性及其对种间共存关系的影响. 生物多样性, 28, 1222-1228. DOI: 10.17520/biods.2019383.
Huanhuan Chen, Zhumei Li, Lizhou Tang (2020) Effects of fig wasp temperature tolerance on interspecific coexistence. Biodiversity Science, 28, 1222-1228. DOI: 10.17520/biods.2019383.
图1 实验期间的最低温度、最高温度和平均温度
Fig. 1 Minimum temperature, maximum temperature and average temperature in the study site at Xishaungbanna during the period of the study
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