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首页> 外文期刊>The Journal of Experimental Biology >ArHsp40 and ArHsp40-2 contribute to stress tolerance and longevity in Artemia franciscana, but only ArHsp40 influences diapause entry
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ArHsp40 and ArHsp40-2 contribute to stress tolerance and longevity in Artemia franciscana, but only ArHsp40 influences diapause entry

机译:ARHSP40和ARHSP40-2有助于在Artemia Franciscana中的压力耐受性和长寿,但只有ARHSP40影响延伸率入口

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Embryos of the crustacean Artemia franciscana develop either ovoviviparously or oviparously, yielding swimming larvae (nauplii) or encysted gastrulae (cysts), respectively. Nauplii moult several times and become adults whereas cysts enter diapause, a state of dormancy characterized by exceptionally low metabolism and high stress tolerance. Synthesis of molecular chaperones such as the J-domain proteins ArHsp40 and ArHsp40-2 occurs during embryo development and post-diapause growth of A. franciscana and they influence development and stress tolerance. To further investigate J-domain protein function, ArHsp40 and ArHsp40-2 were each knocked down by RNA interference. Reductions in ArHsp40 and ArHsp40-2 had no effect on adult survival, time to release of cysts and nauplii from females and first-brood size. However, knockdown of both A. franciscana J-domain proteins reduced the longevity and heat tolerance of nauplii, with the loss of ArHsp40 having a greater effect. The knockdown of ArHsp40, but not of ArHsp40-2, caused approximately 50% of cysts to abort diapause entry and hatch without exposure to an exogenous signal such as low temperature and/or desiccation. Cysts lacking ArHsp40 that entered diapause exhibited decreased stress tolerance as did cysts with reduced ArHsp40-2, the latter to a lesser degree. The longevity of nauplii hatching prematurely from cysts was less than for nauplii arising by other means. The results expand our understanding of Hsp40 function in A. franciscana stress tolerance and development, especially during diapause, and they provide the first example of a molecular chaperone that influences diapause entry.
机译:甲壳动物蒿胚胎的胚胎分别产生卵巢异常或卵巢,产生游泳幼虫(Nauplii)或心脏胃肠(囊肿)。 Nauplii换羽几次并成为成年人,而囊肿进入延展,一种休眠状态,其特征在于代谢的异常低和高应力耐受性。在胚胎发育和A.Franciscana的胚胎发育和延展后延伸生长期间,诸如J-结构域蛋白质氧化物ARHSP40和ARHSP40-2的分子蛋白质的合成发生,并且它们影响了发育和应力耐受性。为了进一步研究J-结构域蛋白质功能,ARHSP40和ARHSP40-2各自被RNA干扰撞击。 ARHSP40和ARHSP40-2的减少对成人生存没有影响,从女性和第一携带尺寸释放囊肿和Nauplii的时间。然而,A. Franciscana J-结构域蛋白的敲低降低了Nauplii的寿命和耐热性,余量具有更大的效果。 ARHSP40的敲低,但不是ARHSP40-2,导致大约50%的囊肿中止滞留进入和孵化而不暴露于低温和/或干燥等外源信号。缺乏ARHSP40的囊肿进入延展表现出降低的抗血管耐受性耐受性,并且随着ARHSP40-2的降低,后者至较小程度。 Nauplii过早孵化的血液孵化从囊肿的孵化性小于其他方法产生的Nauplii。结果扩大了我们对A. Franciscana胁迫耐受性和开发的HSP40功能的理解,特别是在延迟期间,它们提供了影响延展进入的分子伴侣的第一个例子。

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