首页> 外文期刊>The Journal of Experimental Biology >Alternative splicing, muscle contraction and intraspecific variation:associations between troponin T transcripts, Ca2+ sensitivity and theforce and power output of dragonfly flight muscles during oscillatorycontraction
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Alternative splicing, muscle contraction and intraspecific variation:associations between troponin T transcripts, Ca2+ sensitivity and theforce and power output of dragonfly flight muscles during oscillatorycontraction

机译:可变剪接,肌肉收缩和种内变异:肌钙蛋白T转录本,Ca2 +敏感性与振荡收缩期间蜻蜓飞行肌肉的力和功率输出之间的关联

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摘要

The flight muscles of Libellula pulchella dragonflies contain a mixture of six alternatively spliced transcripts of a single troponin T (TnT) gene. Here, we examine how intraspecific variation in the relative abundance of different TnT transcripts affects the Ca2+ sensitivity of skinned muscle fibers and the performance of intact muscles during work-loop contraction regimes that approximate in vivo conditions during flight. The relative abundance of one TnT transcript, or the pooled relative abundance of two TnT transcripts, showed a positive correlation with a 10-fold range of variation in Ca2+ sensitivity of skinned fibers (r(2)=0.77, P <0.0001) and a threefold range in peak specific force (r(2)=0.74, P <0.0001), specific work per cycle (r(2)=0.54; P <0.0001) and maximum specific power output (r(2)=0.48, P=0.0005) of intact muscle. Using these results to reanalyze previously published data for wing kinematics during free flight, we show that the relative abundances of these particular transcripts are also positively correlated with wingbeat frequency and amplitude. TnT variation alone may be responsible for these effects, or TnT variation may be a marker for changes in a suite of co-regulated molecules. Dragonflies from two ponds separated by 16 km differed significantly in both TnT transcript composition and muscle contractile performance, and within each population there are two distinct morphs that showed different maturational trajectories of TnT transcript composition and muscle contractility. Thus, there is broad intraspecific variability and a high degree of population structure for contractile performance phenotypes, TnT ribotypes and ontogenetic patterns involving these traits that affect locomotor performance.
机译:Libellula pulchella蜻蜓的飞行肌肉包含单个肌钙蛋白T(TnT)基因的六个交替剪接的转录本的混合物。在这里,我们研究了不同TnT转录本相对丰度的种内变异如何影响皮肤肌肉纤维的Ca2 +敏感性以及在飞行过程中近似体内条件的工作循环收缩机制下完整肌肉的性能。一个TnT转录本的相对丰度或两个TnT转录本的合并相对丰度与皮肤纤维的Ca2 +敏感性变化的10倍范围呈正相关(r(2)= 0.77,P <0.0001)峰值比力(r(2)= 0.74,P <0.0001),每个周期的比功(r(2)= 0.54; P <0.0001)和最大比功率输出(r(2)= 0.48,P = 0.0005)的完整肌肉。使用这些结果重新分析自由飞行期间机翼运动学的先前发布的数据,我们表明这些特定成绩单的相对丰度也与机翼的频率和振幅呈正相关。单独的TnT变异可能是这些效应的原因,或者TnT变异可能是一组共同调控分子变化的标志。来自两个相距16 km的池塘的蜻蜓在TnT转录本组成和肌肉收缩性能上均存在显着差异,并且在每个种群中都有两个不同的形态,显示出不同的TnT转录本组成和肌肉收缩的成熟轨迹。因此,对于涉及运动能力的这些特性,收缩性能表型,TnT核糖型和个体发育模式存在广泛的种内变异性和高度的种群结构。

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