印度琥珀属蜗牛Succinea baconi (Pfeiffer, 1854)的空间分布和形态测定

Q4 Environmental Science
H. Barman, S. Pramanik, G. Nandy, Sampa Banerjee, G. Aditya
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引用次数: 1

摘要

对印度陆地蜗牛Succinea baconi (Pfeiffer, 1854)(腹足目:琥珀科)的空间分布和形态特征进行了评价。在印度西孟加拉邦Coochbehar的花园和灌木丛中进行的调查,使得评估蜗牛S. baconi在随机选择的柠檬植株上的丰度成为可能(n = 18)。采用Logistic回归分析钉螺垂直分布、资源关联和大小类变异的差异。通过对活蜗牛(258个)和死蜗牛(100个)的空壳样本进行回归分析,评估了壳形态的变化。钉螺垂直分布差异有统计学意义(p < 0.05)。至于蜗牛与可利用资源的关系,我们发现蜗牛在植物的碎屑中比在植物的活的部分中更丰富。经logistic回归分析,不同肠球菌大小类别的相对丰度差异有统计学意义(p < 0.001)。不同体型变量间存在显著相关性(p < 0.001),其中活螺壳长(x)-体重(y)关系为:y = 0.232x2.524,死螺壳长(x)-体重(y)关系为:y = 0.358x2.537。螺壳形状的各种参数可以用回归方程表示。尽管蜗牛的繁殖和生长策略需要进一步探索,但所提出的观察结果提高了我们对baconi生态的理解,这可能对未来的保护工作有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spatial distribution and morphometry of the succineid snail Succinea baconi (Pfeiffer, 1854) in India
The spatial distribution and morphological features of the land snail Succinea baconi (Pfeiffer, 1854) (Gastropoda: Succineidae) from India were evaluated. The survey performed in gardens and bushes in Coochbehar, West Bengal, India, has made it possible to assess the abundance of the snail S. baconi on the randomly selected lemon plants (n = 18). Logistic regressions were employed to judge differences in vertical distribution, resource association and size class variation in the snails under study. Variation in shell morphology was assessed by performing the regression analysis of the sampled shells of live snails (n = 258) and vacant shells of the deceased individuals (n = 100). An overall significant difference (p < 0.05) in the vertical distribution of snails in lemon plants was observed. As to their association with resources available, snails were found to be more abundant in detritus than on living parts of the plants. The performed logistic regression revealed that the relative abundance of different S. baconi size classes was significantly different (p < 0.001). Significant correlations (p < 0.001) were found among different body size variables, with the shell length (x)-body weight (y) relationship being: y = 0.232x2.524 (for live snails) and the shell length (x)-shell weight (y) relationship being: y = 0.358x2.537 (for shells of dead snails). Various parameters of the snail shell shape could be represented through regression equations. Although reproduction and growth strategies of snails need to be explored further, the presented observations improve our understanding of the ecology of S. baconi, which may prove useful for future conservation efforts.
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来源期刊
Zoology and Ecology
Zoology and Ecology Agricultural and Biological Sciences-Animal Science and Zoology
CiteScore
1.00
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