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首页> 外文期刊>Journal of Thermal Biology >Effect of acclimated temperature on thermal tolerance, immune response and expression of HSP genes in Labeo rohita, Catla catla and their intergeneric hybrids
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Effect of acclimated temperature on thermal tolerance, immune response and expression of HSP genes in Labeo rohita, Catla catla and their intergeneric hybrids

机译:适应温度对Labeo Rohita,Catla catla及其代际杂种中HSP基因热耐受,免疫应答及表达的影响

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The ability of a species and population to respond to a decrease or an increase in temperature depends on their adaptive potential. Here, the critical thermal tolerance (CTmax and CTmin) of four populations: Labeo rohita, Cana cada, and their reciprocal hybrids L. rohita female x C. catla male (RC) and C. catla female x L. rohita male (CR) being acclimatized at four acclimation temperatures (22, 26, 30 and 34 degrees C) were determined. All populations indicated substantial variations (P 0.05) in CTmax and CTmin values. L. rohita displayed, comparatively the highest CTmax with largest total and intrinsic polygon zones as well as the upper and lower acquired thermal tolerance zones followed by RC and CR hybrids, while C. catla showed significantly the highest CTmin value and the smallest intrinsic and acquired thermal tolerance zones. Both hybrids illustrated low parent hetemsis (= 11%). Additionally, the highest expression of Hsp70 and Hsp90 (heat shock proteins) genes, serum lysozyme level, respiratory burst activity and lowest lipid peroxidation level under lower and higher temperature shock further illustrated strong physiological mechanism of L. rohita in contrast to C. cada, to deal with acute temperature, while hybrids, especially F1 RC hybrid appeared as a good option to replace C. catla in relatively higher and lower temperature areas.
机译:物种和人口响应减少或增加温度的能力取决于它们的自适应潜力。这里,四个人群的临界热耐受(Ctmax和Ctmin):Labeo Rohita,Cana Cada及其互惠杂种L.Rohita雌性X C. Catla雄性(RC)和C. Catla女性X L. Rohita Male(Cr)确定在四个适应温度(22,26,30和34摄氏度)的适应。所有群体都表明CTMAX和CTMIN值中的大量变化(P <0.05)。 L. Rohita显示,相对较高的CTMAX,具有最大的总和固有多边形区域以及上下获取的热耐受区,然后是RC和Cr杂种,而C.Catla显着显示出最高的Ctmin值和最小的内在和获得的热容差区域。两个杂种都显示出低级hetemsis(& = 11%)。另外,HSP70和HSP90(热休克蛋白)基因的最高表达,血清溶菌酶水平,呼吸爆发活性和最低脂质过氧化水平下降和较高的温度休克进一步说明了L.Rohita与C. CADA相反的强烈生理机制,为了处理急性温度,而杂种,特别是F1 rc杂交物出现在相对较高和更低的温度区域中的替代C. catla的良好选择。

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