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Akira Mizoguchi 《Physiological Entomology》2017,42(3):239-245
Many insects undergo diapause to survive adverse seasons. Although the mechanism of diapause induction is the subject of extensive study, that of diapause termination remains poorly understood. In the present study, we show the endocrine processes leading to the termination of pupal diapause in Mamestra brassicae. Diapause of this insect is terminated if the pupae are exposed to a low temperature for several weeks. During this period, the prothoracic glands (PGs) of pupae acquire the potential to secrete sufficient ecdysteroids necessary for inducing adult development. The main endocrine changes observed under the low temperature conditions are: (i) the increase in activity of the PGs in two steps; (ii) the increase in responsiveness of the glands to prothoracicotropic hormone (PTTH); and (iii) two‐step increase in PTTH gene expression in the brain. The timing of the first and second increases in PG activity roughly coincides with that of the two steps of increase in PTTH gene expression, and the timing of the increase in the responsiveness of the PGs to PTTH coincides with the second, larger increase in PTTH gene expression. The ablation of the PGs prior to cooling pupae does not affect the increase in PTTH gene expression, whereas brain removal results in a failure to increase PG activity, strongly suggesting that PTTH is the master regulator of diapause development and termination. 相似文献
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A partial swine cDNA which encodes the functional domain of PIT-1 was isolated by the polymerse chain reaction (PCR). The swine PIT-1 cDNA clone is 95% identical at the protein level to the rat Pit-1 gene. Thus, Pit-l's known function in control of rat growth hormone and prolactin expression is likely to be conserved in swine. This swine cDNA clone was used to investigate genetic variability at PIT-1 in several American and Chinese breeds. Polymorphic BamIII fragments were found in pure-bred Meishan animals (n= 13), but only monomorphic fragments in five American breeds (n= 36). 相似文献
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Exploiting DELLA Signaling in Cereals 总被引:1,自引:0,他引:1
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Ryota Masuzaki Sophia Zhao M. Todd Valerius Daisuke Tsugawa Yuki Oya Kevin C. Ray Seth J. Karp 《The Journal of biological chemistry》2016,291(7):3346-3358
After significant injury, the liver must maintain homeostasis during the regenerative process. We hypothesized the existence of mechanisms to limit hepatocyte proliferation after injury to maintain metabolic and synthetic function. A screen for candidates revealed suppressor of cytokine signaling 2 (SOCS2), an inhibitor of growth hormone (GH) signaling, was strongly induced after partial hepatectomy. Using genetic deletion and administration of various factors we investigated the role of SOCS2 during liver regeneration. SOCS2 preserves liver function by restraining the first round of hepatocyte proliferation after partial hepatectomy by preventing increases in growth hormone receptor (GHR) via ubiquitination, suppressing GH pathway activity. At later times, SOCS2 enhances hepatocyte proliferation by modulating a decrease in serum insulin-like growth factor 1 (IGF-1) that allows GH release from the pituitary. SOCS2, therefore, plays a dual role in modulating the rate of hepatocyte proliferation. In particular, this is the first demonstration of an endogenous mechanism to limit hepatocyte proliferation after injury. 相似文献
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Dryland salinity is caused by rising saline water tables, the result of relatively recent landscape-scale clearance of deep-rooted
vegetation. One obvious solution to this problem is the reintroduction of deep-rooted vegetation into these landscapes, most
likely non-deciduous trees. Ideally, continually-transpiring deep-rooted trees would remove moisture from throughout the soil
profile, increasing the capacity of the soil to store water, thus lowering water tables by effectively reducing the number
of rainfall events that contribute to groundwater recharge. In this study, we examined how water use by a Eucalyptus sideroxylon A. Cunn. ex Woolls plantation, growing in a salinity-prone landscape, varied in response to rainfall events across four years
of sap flux monitoring. Responses of the plantation were observed across multiple seasons, from above average to well below
average rainfall. We observed that the plantation forest, while capable of continuous water use during drought, was also quite
responsive to rainfall events. During the driest periods, during which shallow soil moisture was reduced to a stable minimum,
the forest continued using water at around 1 mm/day. Generally we observed increases in forest water use following only 5
mm of rainfall, in contrast to 20 mm for neighbouring native vegetation. We compared a range of plausible empirical models
for describing forest water use responses to rainfall. The best model demonstrated that rainfall size, post-rainfall PET and
the interaction between rainfall size and antecedent soil moisture made significant contributions to variation in forest water
use across rainfall events. Interestingly, the model showed that all else equal, higher antecedent soil moisture tended to
reduce potential increases in forest water use in response to rainfall. 相似文献
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目的比较雄性Fmr1基因敲除小鼠和FVB小鼠血液生理生化值和血清性激素水平,探讨Fmr1基因对动物生长发育和生殖生理等方面的影响。方法分别测定血液生理指标、血清生化指标、血清电解质和血清E2、LH、FSH、T和PRL的含量,并进行统计学处理和分析。结果雄性Fmr1基因敲除小鼠与FVB小鼠比较,血液生理指标中MCV和PCT有显著差异(P〈0.05),而RBC、HCT、HGB、MCH和WBC等无显著差异(P〉0.05);血清生化指标中除TBIL、[IP^3+]、[Mg^2+](P〈0.05)和AIP、BUN(P〈0.01)外,TPROT、GLB、A/G、BUN、CREAT、[K^+]、[Na^+]等项均无显著差异(P〉0.05)。性激素水平E2、LH值差异无显著性(P〉0.05),FSH、T、PRL差异极显著(P〈0.01)。结论Fmr1基因可影响动物的某些生理生化及激素水平。 相似文献
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Genetic variations at the human growth hormone receptor (GHR) gene locus are associated with idiopathic short stature 下载免费PDF全文
Christel Dias Mara Giordano Rosalie Frechette Simonetta Bellone Constantin Polychronakos Laurent Legault Cheri L Deal Cynthia Gates Goodyer 《Journal of cellular and molecular medicine》2017,21(11):2985-2999
GH plays an essential role in the growing child by binding to the growth hormone receptor (GHR) on target cells and regulating multiple growth promoting and metabolic effects. Mutations in the GHR gene coding regions result in GH insensitivity (dwarfism) due to a dysfunctional receptor protein. However, children with idiopathic short stature (ISS) show growth impairment without GH or GHR defects. We hypothesized that decreased expression of the GHR gene may be involved. To test this, we investigated whether common genetic variants (microsatellites, SNPs) in regulatory regions of the GHR gene region were associated with the ISS phenotype. Genotyping of a GT‐repeat microsatellite in the GHR 5′UTR in a Montreal ISS cohort (n = 37 ISS, n = 105 controls) revealed that the incidence of the long/short (L/S) genotype was 3.3× higher in ISS children than controls (P = 0.04, OR = 3.85). In an Italian replication cohort (n = 143 ISS, n = 282 controls), the medium/short (M/S) genotype was 1.9× more frequent in the male ISS than controls (P = 0.017, OR = 2.26). In both ISS cohorts, logistic regression analysis of 27 SNPs showed an association of ISS with rs4292454, while haplotype analysis revealed specific risk haplotypes in the 3′ haploblocks. In contrast, there were no differences in GT genotype frequencies in a cohort of short stature (SS) adults versus controls (CARTaGENE: n = 168 SS, n = 207 controls) and the risk haplotype in the SS cohort was located in the most 5′ haploblock. These data suggest that the variants identified are potentially genetic markers specifically associated with the ISS phenotype. 相似文献