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1.
目的: 通过对尖孢镰刀菌中Folprp4基因的鉴定,揭示其在尖孢镰刀菌中的功能及致病相关性。方法: 基于同源重组原理,根据测定出的Folprp4基因序列,应用Split-Marker重组技术构建含有潮霉素抗性基因(hph)的基因缺失盒。将基因缺失盒经PEG介导转化到野生型原生质体中,在含有潮霉素B的TCC培养基上筛选转化子,通过PCR正负筛查获得Folprp4基因缺失突变株(ΔFolprp4)。构建含有Folprp4基因的载体pZDH1,并将其转化到敲除突变体中进行互补测验。结果: 与野生型(hm)和异位插入突变体(ecFolprp4)相比,敲除突变体菌丝生长受到严重阻碍,当野生型和异位插入突变体长满整个平板时,敲除突变体菌落呈小点状。敲除突变体的另一个显著变化是ΔFolprp4的分生孢子产量显著下降。侵染实验表明,ΔFolprp4对亚麻幼苗的毒力显著降低。互补实验表明,该互补载体的回复子(Folprp4-C)在菌落形态、生长速率、分生孢子产量和毒力方面均恢复到了野生型菌株。结论: Folprp4基因与尖孢镰刀菌的菌丝生长、分生孢子发生和致病性有关。  相似文献   

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炭疽病是油茶Camellia oleifera的重要病害,该病害的优势致病菌是刺盘孢属Colletotrichum的果生刺盘孢C. fructicola,在全国的油茶产区普遍发生。我们前期发现组蛋白乙酰转移酶CfGcn5调控油茶果生刺盘孢的生长发育和致病过程,但组蛋白去乙酰化酶在该病菌中的生物学功能尚不清楚。本研究以组蛋白去乙酰化酶CfSnt2为研究对象,利用反向遗传学的方法,通过对野生型、CfSNT2基因敲除突变体及互补菌株的生物学表型进行比较分析,发现CfSNT2基因敲除突变体的菌丝生长速率明显减缓、分生孢子的产量显著减少、附着胞形成率降低、对细胞壁胁迫剂的响应异常,同时对油茶致病力显著减弱。以上现象说明CfSnt2调控果生刺盘孢的生长、产孢、附着胞的形成、对细胞壁完整性胁迫剂的耐受性及致病力。  相似文献   

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姚权  郭源  魏丰园  李司政  张盛培  李河 《菌物学报》2019,38(10):1643-1652
油茶炭疽病是油茶Camellia oleifera上最重要病害之一,引起该病害的主要致病菌为果生刺盘孢菌Colletotrichum fructicola。本研究以果生刺盘孢菌bZIP类转录因子CfHac1为研究对象,研究其在果生刺盘孢菌的营养生长、产孢量、附着胞形成、致病力及耐受性等方面的生物学功能,为油茶炭疽病的防控提供理论依据。研究结果表明,果生刺盘孢菌中具有一个与灰色大角间座壳(稻瘟菌)bZIP转录因子MoHac1直系同源的基因,命名为CfHAC1。该基因全长1 627bp,编码526个氨基酸,该蛋白含有一个碱性亮氨酸链(bZIP)结构域和3个未知功能结构域。CfHAC1基因敲除突变体的菌丝生长速度显著变慢,分生孢子产量显著减少且不能正常形成附着胞,并对山梨糖醇和KCl渗透压胁迫敏感性增加;致病力测试结果表明,果生刺盘孢菌基因敲除突变体ΔCfhac1对油茶的致病力显著下降。转录因子CfHac1参与调控果生刺盘孢菌的生长、产孢、附着胞的形成、致病力以及响应外界渗透压胁迫过程。  相似文献   

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【目的】研究香蕉枯萎病菌4号生理小种中促分裂原活化蛋白激酶基因FoHog1的结构特点及其功能【方法】通过PCR和RT-PCR的方法获得了FoHog1基因序列并进行生物信息学分析,利用PEG介导的原生质体转化法得到了FoHog1基因缺失突变体,分析敲除突变体与野生型的生物学特性差异【结果】FoHog1基因编码一个含有357个氨基酸的蛋白,该蛋白在不同种镰刀菌中高度保守。通过对敲除突变体的研究发现,该基因缺失后菌丝密度下降,产孢量与菌丝干重明显降低,对乙酸钠和氯化铵的利用率下降,对温度、pH及渗透压等外源胁迫更为敏感。通过致病力实验发现,基因敲除突变体的定殖能力有所降低【结论】尖孢镰刀菌古巴专化型4号生理小种中FoHog1基因参与调控菌丝生长、分生孢子生成、乙酸钠和氯化铵代谢、渗透压胁迫反应及致病相关过程。  相似文献   

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果生刺盘孢侵染危害多种植物,是重要的植物病原真菌。在一些丝状真菌中,敲除非同源末端连接修复通路的关键基因ku70ku80可显著提高同源重组效率,进而提高靶基因置换频率。本研究从果生刺盘孢基因组鉴定到Cfku70Cfku80两个基因,并明确了基因失活对菌株生物学表型和基因敲除效率的影响。敲除Cfku70Cfku80不影响菌株的菌落形态、营养生长、产孢、分生孢子萌发、侵染结构发育和致病;Cfku70基因敲除还大幅提升3个测试基因的敲除效率。本研究证实Cfku70基因失活能显著提高果生刺盘孢的基因敲除效率,适宜作为高效基因敲除的底盘菌株,研究结果为通过批量敲除策略筛选新型致病因子奠定重要基础。  相似文献   

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李玲玲  张盛培  李河 《菌物学报》2021,40(8):2102-2113
果生刺盘孢是油茶炭疽病的主要流行致病菌。本文研究果生刺盘孢中液泡分选蛋白CfVps17的生物学功能,为阐明该蛋白调控致病分子机制提供依据。采用over-lap方法构建CfVPS17基因敲除载体片段,使用PEG介导法将敲除载体片段转化至果生刺盘孢原生质体中,通过验证筛选获得突变体菌株ΔCfvps17。构建目的基因CfVPS17回补载体pYF11::CfVPS17,经转化获得ΔCfvps17-C回补菌株。测定野生型、突变体ΔCfvps17及回补菌株ΔCfvps17-C的生物学表型,结果表明,与野生型和回补菌株相比,突变体ΔCfvps17菌丝生长速率、产孢量和附着胞形成率显著降低,突变体菌丝中糖原积累减少,对氯化钠和刚果红胁迫耐受性增强;致病力测定结果表明,突变体ΔCfvps17丧失了对油茶叶片的致病力。液泡分选蛋白CfVps17参与调控果生刺盘孢糖原积累、生长发育、外界胁迫应答和致病力。  相似文献   

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大丽轮枝菌是一种土传性植物病原真菌,可侵染多种植物并引发黄萎病。目前,人们关于大丽轮枝菌的侵染和致病机制的了解还很不深入。本文通过敲除大丽轮枝菌编码丝氨酸/苏氨酸的蛋白激酶基因VdSCH9,阐明了其在大丽轮枝菌生长发育及致病过程中的作用。SCH9基因在酵母中的表达与cAMP-PKA途径和TOR信号通路相关,对酵母的生长、压力响应和寿命等有重要作用。大丽轮枝菌VdSCH9敲除突变体的生长速率显著下降,菌落边缘菌丝更为稀疏,菌丝分枝减少,对棉花植株为害的平均病情指数为56.6,显著低于野生型和互补突变体的平均病情指数90.5和82.8,对茄子植株为害的平均病情指数为65.9,也显著低于野生型和互补突变体的平均病情指数91.1和89.8。另外,敲除突变体对于高渗透压、氧化还原压力、细胞膜和细胞壁完整性等压力条件的敏感性增强。因此,VdSCH9对于大丽轮枝菌的生长、压力响应及致病力均有重要作用。  相似文献   

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孔爽  赵蕾 《菌物学报》2019,38(4):513-520
明确棘孢木霉菌Trichoderma asperellum嗜铁素合成的关键基因,能够为进一步探索嗜铁素在生防和促生中的作用奠定基础。本研究在对sidA基因进行定位、结构分析和RT-PCR检测的基础上,利用double-joint PCR技术构建基因敲除载体,经聚乙二醇(PEG)介导原生质体转化、潮霉素初筛、PCR和southern blot验证获得突变株,并对其表型进行分析,获得2株性能稳定的敲除突变体?sidA1和?sidA2。与野生型相比,?sidA1?sidA2的嗜铁素产量在5d时分别下降了38.67%和36.65%;孢子萌发率在12h时分别下降了45.33%和47.47%;产孢量在10d时分别下降了33.01%和41.02%,且突变株在受NaCl、KCl、SDS等胁迫时的抗性较野生型降低。表明sidA基因的缺失降低了嗜铁素产量,抑制了菌体的生长以及对胁迫因子的抗性,sidA基因是影响棘孢木霉嗜铁素产生的关键基因之一。  相似文献   

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In budding yeast, the Rho-type GTPase Cdc42p is essential for cell division and regulates pseudohyphal development and invasive growth. Here, we isolated novel Cdc42p mutant proteins with single-amino-acid substitutions that are sufficient to uncouple functions of Cdc42p essential for cell division from regulatory functions required for pseudohyphal development and invasive growth. In haploid cells, Cdc42p is able to regulate invasive growth dependent on and independent of FLO11 gene expression. In diploid cells, Cdc42p regulates pseudohyphal development by controlling pseudohyphal cell (PH cell) morphogenesis and invasive growth. Several of the Cdc42p mutants isolated here block PH cell morphogenesis in response to nitrogen starvation without affecting morphology or polarity of yeast form cells in nutrient-rich conditions, indicating that these proteins are impaired for certain signaling functions. Interaction studies between development-specific Cdc42p mutants and known effector proteins indicate that in addition to the p21-activated (PAK)-like protein kinase Ste20p, the Cdc42p/Rac-interactive-binding domain containing Gic1p and Gic2p proteins and the PAK-like protein kinase Skm1p might be further effectors of Cdc42p that regulate pseudohyphal and invasive growth.  相似文献   

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范成莉  余启昆  刘同宝 《菌物学报》2018,37(11):1466-1478
新生隐球菌是自然界广泛存在的具荚膜的酵母型病原真菌,能侵染人类中枢神经系统引起真菌性脑膜炎,每年导致全球大约18万人死亡。本研究在前期隐球菌交配表达谱的基础上,选择一上调表达的RNA结合蛋白基因(CNAG_04772),进行克隆和功能分析。结果表明该基因全长2 247bp,cDNA全长1 518bp,编码505个氨基酸组成的蛋白,含有2个RNA识别基序RRM1和RRM2,命名为RBP1。基因表达模式分析表明RBP1在隐球菌酵母细胞、担子以及担孢子阶段都有表达,交配菌丝阶段不表达;亚细胞定位分析表明Rbp1蛋白定位于隐球菌的细胞核和细胞质中。与野生型菌株H99相比,敲除突变体菌株能够交配并产生双核菌丝,但丧失产生担孢子的能力,而互补菌株与野生型菌株H99间无显著差异。致病力测定结果显示,敲除突变体菌株致病性显著降低。  相似文献   

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《BBA》1970,205(3):513-519
1. The oligomycin-sensitive Mg2+-dependent ATPase activity of mitochondria isolated from wild-type yeast Saccharomyces cerevisiae was only slightly inhibited by atractyloside at concentrations which entirely prevented oxidative phosphorylation. This indicated that most of the ATPase in these mitochondrial preparations was located outside the atractyloside-sensitive barrier and did not participate in the energy-transfer process.

2. ATPase activity of mitochondria isolated from nuclear gene mutants deficient in a single cytochrome, a, b, or c, respectively, was strongly inhibited by oligomycin. The mitochondria from these mutants, like those from the wild-type strain, were able to incorporate amino acids into protein.

3. Mitochondrial ATPase activity of single nuclear gene mutants deficient in both cytochromes a and b was only slightly inhibited by oligomycin. These mitochondria were incapable of incorporating amino acids into protein. The mitochondria from these nuclear mutants thus resembled mitochondria of cytoplasmic respiration-deficient mutants.

4. The results suggest that mitochondrial cytochromes may be coded by nuclear genes and that product(s) of mitochondrial protein synthesis may be required for integrating the cytochromes a and b and the components of the oligomycin-sensitive ATPase complex into the mitochondrial membranes.  相似文献   


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The ubiquitin-conjugating enzyme Cdc34 (cell division cycle 34) plays an essential role in promoting the G1-S-phase transition of the eukaryotic cell cycle and is phosphorylated in vivo. In the present study, we investigated if phosphorylation regulates Cdc34 function. We mapped the in vivo phosphorylation sites on budding yeast Cdc34 (yCdc34; Ser207 and Ser216) and human Cdc34 (hCdc34 Ser203, Ser222 and Ser231) to serine residues in the acidic tail domain, a region that is critical for Cdc34's cell cycle function. CK2 (protein kinase CK2) phosphorylates both yCdc34 and hCdc34 on these sites in vitro. CK2-mediated phosphorylation increased yCdc34 ubiquitination activity towards the yeast Saccharomyces cerevisiae Sic1 in vitro, when assayed in the presence of its cognate SCFCdc4 E3 ligase [where SCF is Skp1 (S-phase kinase-associated protein 1)/cullin/F-box]. Similarly, mutation of the yCdc34 phosphorylation sites to alanine, aspartate or glutamate residues altered Cdc34-SCFCdc4-mediated Sic1 ubiquitination activity. Similar results were obtained when yCdc34's ubiquitination activity was assayed in the absence of SCFCdc4, indicating that phosphorylation regulates the intrinsic catalytic activity of Cdc34. To evaluate the in vivo consequences of altered Cdc34 activity, wild-type yCdc34 and the phosphosite mutants were introduced into an S. cerevisiae cdc34 deletion strain and, following synchronization in G1-phase, progression through the cell cycle was monitored. Consistent with the increased ubiquitination activity in vitro, cells expressing the phosphosite mutants with higher catalytic activity exhibited accelerated cell cycle progression and Sic1 degradation. These studies demonstrate that CK2-mediated phosphorylation of Cdc34 on the acidic tail domain stimulates Cdc34-SCFCdc4 ubiquitination activity and cell cycle progression.  相似文献   

16.
目的:pmr1基因编码P型钙转运ATP酶Pmr1,参与维持细胞壁完整性和调控胞质分裂。以粟酒裂殖酵母为模式细胞,探究pmr1缺失后对细胞有性生殖及细胞分裂中肌动蛋白环精细动力学的影响,揭示pmr1缺失后细胞异常生长过程中的关键基因和代谢通路。方法:通过细胞生长速率测定、产孢统计、绿色荧光蛋白标记肌动蛋白和活细胞成像的方法,检测pmr1缺失对细胞有丝分裂和有性生殖的影响;采用RNA-Seq对野生型菌株和pmr1Δ菌株测序和生物信息学分析,并进行qRT-PCR验证。结果:pmr1缺失后细胞生长减慢,分裂期细胞长度减小,子囊孢子长度增加,且肌动蛋白环的形成时间增加。RNA测序结果显示,mfm1mfm2mat1-Mc下调,错配修复通路cdc1exo1上调以及糖酵解/糖异生途径pgi1pfk1dld1下调是引起pmr1Δ孢子长度增加的主要因素;糖酵解/糖异生途径tdh1pgk1下调,以及脂肪酸合成代谢途径fas1fas2cut6lcf1下调导致了pmr1Δ分裂期细胞长度减小;hsp9上调是影响pmr1Δ收缩环形成时间增加的关键基因。qRT-PCR实验证实,pmr1缺失后关键基因的表达趋势与RNA-Seq结果一致。结论:pmr1缺失后,粟酒裂殖酵母细胞中错配修复通路、糖酵解/糖异生途径及脂肪酸合成代谢途径发生障碍,导致细胞及孢子形态均异常,且肌动蛋白环形成受阻,细胞增殖减缓。  相似文献   

17.
辅助伴侣分子Cdc37蛋白的研究进展   总被引:1,自引:0,他引:1  
细胞分裂周期蛋白Cdc37最初是在芽殖酵母中发现的细胞周期相关蛋白。随后的研究表明Cdc37具有伴侣分子活性,可以特异地募集一系列的蛋白激酶结合到热激蛋白90(Hsp90)上,形成特定的分子伴侣复合体,参与维持蛋白的稳定性和激酶活性。Cdc37参与了细胞内的多项生命活动,在细胞周期、信号转导和基因表达中都起着重要的作用。由于Cdc37在肿瘤组织中特异性地高表达,使其成为肿瘤治疗中一个重要的分子靶点。  相似文献   

18.
Proteins of the MO25 family are widely conserved but their function has not been characterized in detail. Human MO25 is a cofactor of LKB1, a conserved protein kinase with roles in cell polarity in nematodes, flies and mammalian cells. Furthermore, the budding yeast MO25 homologue, Hym1, is important for cell separation and morphogenesis. We have characterized Pmo25p, the MO25 homologue in the fission yeast Schizosaccharomyces pombe. Pmo25p is an essential protein required for polar growth; in its absence the actin cytoskeleton becomes depolarized and cells adopt a round morphology. In addition, pmo25 mutants are defective in cell separation. Both functions of Pmo25p appear to be mediated by the Orb6p–Mob2p kinase complex. Pmo25p shows no distinct localization during interphase, but it is recruited to one of the two spindle pole bodies during anaphase and to the division site during cytokinesis. The septation initiation network (SIN) regulates the localization of Pmo25p, suggesting that it regulates Pmo25p function during cell division.  相似文献   

19.
In dividing fission yeast Schizosaccharomyces pombe cells, the balance between Wee1 kinase and Cdc25 phosphatase which control the cyclin-dependent kinase (CDK) at the G2-M transition determines the rod-shaped cell length. Under nitrogen source starvation or glucose limitation, however, cell size determination is considerably modulated, and cell size shortening occurs for wild-type cells. For several mutants of kinases or phosphatases, including CDK, target of rapamycin complex (TORC) 1 and 2, stress-responsive mitogen-activated protein kinase (MAPK) Sty1/Spc1, MAPK kinase Wis1, calcium- and calmodulin-dependent protein kinase kinase-like Ssp1, and type 2A and 2A-related phosphatases inhibitor Sds23, this cell shortening does not normally occur. In tor1 and ssp1 mutants, cell elongation is observed. Sds23 that binds to and inhibits 2A and 2A-related phosphatases is synergistic with Ssp1 in the cell size determination and survival under low glucose and nitrogen source. Tor2 (TORC1) is required for growth, whereas Tor1 (TORC2) is needed for determining division size according to different nutrient conditions. Surprisingly, in growth-diminished tor2 mutant or rapamycin-treated cells, the requirement of separase/Cut1-securin/Cut2 essential for chromosome segregation is greatly alleviated. By contrast, defects of tor1 with secruin/cut2 or overproduction of Cut1 are additive. While Tor1 and Tor2 are opposite in their apparent functions, both may actually coordinate cell division with growth in response to the changes in nutrients.  相似文献   

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