...
首页> 外文期刊>Invertebrate biology >BIODYNAMICS OF PARTICLE PROCESSING IN BIVALVE MOLLUSCS - MODELS, DATA, AND FUTURE DIRECTIONS
【24h】

BIODYNAMICS OF PARTICLE PROCESSING IN BIVALVE MOLLUSCS - MODELS, DATA, AND FUTURE DIRECTIONS

机译:双壳软体动物中颗粒处理的生物动力学-模型,数据和未来方向

获取原文
获取原文并翻译 | 示例

摘要

Previous models of particle feeding have focused on optimal solutions for particle acquisition or absorption. We propose two conceptual approaches to treat particle feeders as an integrated system of compartments, in hopes of understanding critical limiting factors that might be overlooked by focusing on only one part. The compartment model treats a particle feeder as a series of structures that process particles, with characteristic residence times within compartments and transfer points between them. These might change with overall particle food value and proportion of poor particles. As a non-exclusive alternative, the pathway model considers particle transfer as being analogous to enzyme control systems, with feedback loops that may involve interactions such as negative feedback between compartments that engage in no direct transfer. We examine these models in the light of some studies of particle handling by the deposit-feeding bivalves Yoldia limatula, Macoma secta, and M. nasuta, and the suspension-feeding oyster Crassostrea gigas. In Y. limatula, palp overloading results in feedback that shuts down the particle-collecting palp proboscis. Zn Macoma, nearly all particles are rejected, suggesting that rejection is necessary because digestion and gut residence time are limiting factors. We suggest that a whole-system approach is important in understanding particle processing by deposit feeders and suspension feeders. [References: 57]
机译:先前的颗粒进料模型专注于颗粒采集或吸收的最佳解决方案。我们提出了两种将颗粒进料器视为隔间的集成系统的概念性方法,以期希望理解关键的限制因素,而这些限制因素可能只关注一部分就可以忽略。隔室模型将颗粒进料器视为处理颗粒的一系列结构,具有在隔室内的特征性停留时间以及它们之间的转移点。这些可能会随着总颗粒食物价值和不良颗粒比例的变化而变化。作为一种非排他性的替代方案,该途径模型认为颗粒转移类似于酶控制系统,其反馈回路可能涉及相互作用,例如不参与直接转移的部分之间的负反馈。我们根据对沉积物饲喂的双壳贝类Yoldia limatula,Macoma secta和M. nasuta以及悬浮物饲喂的牡蛎Crassostrea gigas的颗粒处理的一些研究,对这些模型进行了研究。在Y. limatula中,纸浆超载会导致反馈,从而关闭收集颗粒的纸浆长鼻。锌Macoma,几乎所有颗粒都被拒绝,这表明拒绝是必要的,因为消化和肠道停留时间是限制因素。我们建议采用整个系统的方法对理解沉淀给料机和悬浮给料机的颗粒处理非常重要。 [参考:57]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号