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首页> 外文期刊>European journal of entomology >Analysis of transcripts of heat shock protein genes in silkworm, Bombyx mori (Lepidoptera: Bombycidae)
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Analysis of transcripts of heat shock protein genes in silkworm, Bombyx mori (Lepidoptera: Bombycidae)

机译:家蚕热激蛋白基因转录本分析(鳞翅目:家蚕)

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Silkworm is a poikilothermic insect, whose growth and development is significantly affected by high temperatures. The current study aimed to identify bivoltine breeds tolerant of the high temperature conditions that occur in the tropics. Percentage pupation at high temperatures and heat shock responses of silkworms were used as measures of thermotolerance. Thermotolerance of 20 silkworm breeds was assessed by rearing them at 36 degrees C. Based on percentage pupation, three breeds, namely Nistari (multivoltine), SK4C (bivoltine) and CSR2 (bivoltine) were designated tolerant, moderately tolerant and susceptible, respectively. To understand the heat shock responses and the molecular mechanisms underlying thermotolerance, the tissue specific expression profiles of the nine heat shock protein (Hsp) genes were determined in the three breeds after a heat shock of 1 h at 36 degrees C and a 2 h recovery period by performing real-time qPCR. The level of expression of Hsp genes was significantly increased in heat shocked tissues and gradually decreased during the recovery period. The greatest increase in the expression of Hsp genes was recorded in fat body followed by mid gut and silk gland. Of the three breeds, Nistari showed the highest expression of Hsp genes and SK4C a moderate expression relative to CSR2. The qPCR results showed that the transcript levels of sHsp20.4 and 20.1, and Hsp70 were increased by 10.3, 9.7 and 2.3 times, respectively, in Nistari compared to CSR2. Similarly the expression of sHsp20.4 and 20.1, and Hsp70 were increased by 3.5, 2.3 and 1.5 times, respectively in SK4C compared to CSR2. The expression levels of Hsps during heat shock corresponded to the percentage pupation recorded for the three breeds at a high temperature. It is suggested that the Hsps and their levels of expression may play an important role in increasing the survival of silkworm larvae at high temperatures. This study identified SK4C as a bivoltine breed, which is highly tolerant of high temperature measured in terms of percentage pupation (of the bivoltine breeds) and higher levels of expression of Hsp genes compared to CSR2. The importance of SK4C as a thermotolerant bivoltine parent for breeding new bivoltine hybrids tolerant of high temperatures is discussed.
机译:蚕是一种会发热的昆虫,其生长发育受到高温的显着影响。当前的研究旨在确定耐受热带地区高温条件的双伏特品种。高温下的化up率和家蚕的热激反应被用作耐热性的量度。通过在36摄氏度下饲养20个蚕种来评估其耐热性。根据化up率,将Nistari(多伏特),SK4C(双伏特)和CSR2(双伏特)这三个品种分别指定为耐受,中等耐受和易感。为了了解热休克反应和耐热性的分子机制,在36摄氏度的热休克1小时和恢复2小时后,确定了三个品种中9个热休克蛋白(Hsp)基因的组织特异性表达谱。通过执行实时qPCR进行分析。在热休克组织中,Hsp基因的表达水平显着升高,在恢复期逐渐降低。 Hsp基因表达的最大增加记录在脂肪体内,其次是中肠和丝腺。在三个品种中,Nistari相对于CSR2表现出最高的Hsp基因表达,而SK4C表现出中等表达。 qPCR结果表明,与CSR2相比,Nistari中sHsp20.4和20.1以及Hsp70的转录水平分别增加了10.3、9.7和2.3倍。同样,与CSR2相比,SK4C中sHsp20.4和20.1以及Hsp70的表达分别增加了3.5倍,2.3倍和1.5倍。热激过程中Hsps的表达水平对应于三个品种在高温下记录的化percentage百分比。提示Hsps及其表达水平可能在提高家蚕幼虫在高温下的存活中起重要作用。这项研究将SK4C鉴定为双歧杆菌属品种,与CSR2相比,根据p化百分比(双歧杆菌属品种)和Hsp基因表达水平较高,它对高温具有高度的耐受性。讨论了SK4C作为耐热双伏特母体对于育种耐高温的新型双伏特杂种的重要性。

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