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111.
动物的尾巴具有改变方向、控制升降、调整速度、支撑身体、防御、攻击、保温、示警、逃生和捕食等作用。鸟类的尾巴在飞行过程中起到平衡身体的关键作用,但在进化过程中尾部却出现了缩短和融合现象,如中国的瓢鸡及智利的Araucana鸡。作者简述了近年来关于鸡无尾性状的解剖学研究成果,发现无尾鸡在胚胎发育HH19期(Hamburger和Humilton标准分期)就已经出现无尾现象,而在结构上无尾鸡缺乏尾脂腺、尾羽、镰羽、尾椎骨和尾综骨。同时作者分析了导致尾部体节停止发育的分子遗传机制,包括周期性表达基因的转录调控影响尾部延伸过程、后端化因子梯度诱导尾部形成、Hox基因影响体节特化过程及基因突变有可能导致的无尾现象等,从而提出了可能导致家禽无尾性状的胚胎发育时期的关键分子及信号通路,包括Irx1和Irx2基因、Notch信号通路、Wnt信号通路、Fgf信号通路、RA信号通路等。研究鸡无尾性状的分子机制不仅可深入了解脊椎动物胚胎发育中尾部发育机制,更有利于揭示鸟类在进化过程中发生的尾部缩短及融合的机理。 相似文献
112.
光对园艺植物花青素生物合成的调控作用 总被引:2,自引:0,他引:2
花青素是植物中一类重要的类黄酮化合物,在植物花朵、果实等器官色泽形成和抗氧化过程中起着重要作用。植物组织中花青素的形成依赖于光信号,但是光信号对花青素生物合成的调控机制及信号网络很大程度上还不清晰。本文简述了花青素生物合成及运转过程的研究进展,简要归纳了MYB、bHLH、WDR三类主要因子对花青素合成的转录调控作用,重点阐释光信号(光强、光质、光照时长)对植物花青素合成的调控作用。研究表明,光环境(光强、光质、光照时长)主要通过不同的光受体(UVR8、CRYs、PHOTs、PHYs)影响光信号通路重要因子COP1的泛素化能力和HY5的稳定性,以及其他光信号转录因子如光敏色素互作因子PIFs的稳定性,进而调控花青素的生物合成过程。这些光信号因子一方面直接结合到调控花青素合成的MYB、bHLH、WDR三大类转录因子上,转录激活或抑制它们的表达进而调控花青素的合成;另一方面,这些光信号因子通过与MYB、bHLH、WDR三大类转录因子蛋白互作,影响它们形成的MBW复合体稳定性,进而调控花青素的合成。此外,这些光信号因子还可以通过不依赖于MBW复合体的通路调控花青素的合成,如HY5通过调控miR858影响花青素的生物合成;另外,一些未知的光响应因子可能以不依赖MBW通路的方式直接或间接地调控花青素合成基因和液泡膜上的运转蛋白,改变液泡酸化,调节花青素的合成。同时,光信号会影响光合电子传递,光合电子传递链中的一些因子也会通过依赖和不依赖MBW的途径影响植物花青素的合成。这些途径如何协调以及哪些信号因子优先受光环境(光强、光质、光照时间)调控?本文为深入研究光信号对花青素生物合成的调控机理提供参考,以探索光调控花青素积累的有效途径及靶标分子,为利用基因工程、代谢工程和光环境调控手段改良园艺植物花青素积累提供理论基础。 相似文献
113.
Ruonan Li Yu Yang Pan Hong Ziqi Zhang Lingqian Li Junnan Hui Xin Zheng 《Journal of animal physiology and animal nutrition》2020,104(1):280-290
Weaning may cause oxidative injury, immune response impairment, apoptosis and other injuries in piglets. Oxidative and endoplasmic reticulum stress (ERS) can elicit inflammatory responses, and persistent oxidative and ERS also may lead to apoptotic cascades, which is associated with the pathogenesis of multiple diseases. β-carotene, a natural carotenoid, has potential anti-inflammatory and antioxidant functions. However, the effect of β-carotene on apoptosis in weaned piglets and the detailed molecular mechanism remain unclear. In this study, we found that β-carotene decreased malondialdehyde (MDA) levels and increased the activities of superoxide dismutase (SOD) and glutathione peroxidase (GSH-Px) in piglet serum. β-carotene could inhibit the mRNA levels of caspase-3 significantly, but had no significant inhibitory effect of the mRNA levels of caspase-9 and caspase-12 in the piglet jejunum. In addition, β-carotene decreased the activation of GRP78, CHOP, and JNK/p38 MAPK and the ratio of Bax/Bcl-2. Furthermore, β-carotene had a significant influence on the activation of ERS and apoptosis-related signals in TG-induced IPEC-J2. In the present study, β-carotene pre-treatment attenuated the ratio of Bax/Bcl-2 and prevented TG-induced increases in the level of PERK-CHOP and IRE1-JNK/p38 MAPK pathway activation in a dose-dependent manner. Overall, these findings indicate that β-carotene may protect weaning-induced apoptosis through inhibiting ERS. 相似文献
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115.
王昕 《信阳农业高等专科学校学报》2014,(2):71-72
地税数据中心既能满足海量数据的存储需要,还能满足数据的安全控制和管理需要,解决充分利用数据、发挥数据最大作用、挖掘数据资源最大价值的问题。地税数据中心可促进审计方式的变革。 相似文献
116.
Xinying Zhang Yajing Wang Guirong Huang Fu Feng Xiaoying Liu Rui Guo Fengxue Gu Xin Hu Ziguang Yang Xiuli Zhong Xurong Mei 《Journal of Agronomy and Crop Science》2020,206(2):161-168
Great understanding of the genotypic difference in diurnal stomatal conductance (gs) pattern and the key determinants of the pattern is important for saving water by adopting cultivars appropriately. Fifteen wheat genotypes were studied under different soil conditions and various meteorological conditions with pot cultivation in rain shelter for two years. Genotype and air humidity were found to be key determinants of diurnal gs pattern. All genotypes under low relative humidity (LRH) and most genotypes under high relative humidity (HRH) displayed a gradual decline pattern from morning through the afternoon. Under moderate relative humidity (MRH), all genotypes present a single-peak curve pattern, but they differed in peak time, which may lead to unreliable gs comparison between genotypes and get ostensible contrasting materials. The stomatal conductance was significantly different among genotypes under LRH and the increased gs magnitude is also significantly different when it was compared between LRH and HRH. The present results provide new thinking for selecting and adopting appropriate cultivars with specific stomata traits for the area with various meteorological conditions. 相似文献
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119.
ZHAO Xin RUAN Zi-yun GUO Zhen-wei ZHOU Wen-ting QIN Xi-ling NIU Xiang-li LU Feng-hua SHI De-shun 《中国畜牧兽医》2016,43(8):1975-1982
In this study,the CDS sequence of buffalo Keap1 gene was cloned and analyzed,then its expression pattern in different tissues was also investigated.A pair of primers of buffalo Keap1 gene was designed based on the nucleotide sequence of Bos taurus Keap1 gene from GenBank,and then the buffalo Keap1 gene was amplified.Using the bioinformation techniques,the gene sequence and the protein structure were analyzed.The expression level of Keap1 gene in different tissues were detected with Real-time quantitative PCR.The results showed that the length of buffalo Keap1 gene coding sequence was 1 875 bp and encoded 624 amino acids.The multiple sequence alignment results showed that buffalo Keap1 gene shared 99%,96%,92% and 90% of similar nucleotide sequence with that of Bos taurus,Ovis aries,Sus scrofa and Homo sapiens,respectively.And the phyogenetic tree also showed the conservatism between several different species.The second structure of buffalo Keap1 protein was predicted as 24 alpha regions,40 beta regions,38 turn regions and 27 coil regions.In addition,the results of Real-time quantitative PCR showed that Keap1 mRNA exists in all seven tissues,but the most abundant expression was in heart and the minimal expression was in liver and spleen.The results provided an foundation for further study of Keap1-Nrf2-ARE signal pathway,for enhancing the ability of antioxidant of buffalo embryo in vitro culture. 相似文献
120.