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1.
硫腺苷甲硫氨酸作为甲基供体在转甲基反应中起到重要作用。为了解硫腺苷甲硫氨酸在盐地碱蓬(Suaeda salsa (L.) Pall)耐盐中的作用,我们对可能编码硫腺苷甲硫氨酸合成酶的基因(SsSAMS2)进行了分析.该基因在经400mmol/L NaCl处理的盐地碱蓬地上部分的λ-Zap cDNA文库中克隆到,其播入片段全长1531bp,包含一个395个氨基酸的开放阅读框架,该基因推断的分子量约为43kD.SsSAMS2与长春花(Catharanthus roseus)的SAMS2在氨基酸水平上的一致性为93%.Southern杂交显示,SsSAMS2在盐地碱蓬基因组中可能是两个拷贝.Northern分析显示硫腺苷甲硫氨酸合成酶基因受NaCl等胁迫的正调控.酶活性检测表明,NaCl胁迫条件下该酶活性增强.  相似文献   

2.
以转腺苷甲硫氨酸合成酶基因(SsSAMS2)烟草纯合子ST8-9为实验材料,研究盐胁迫下过量表达SsSAMS2对转基因烟草生长影响的结果表明,200mmol·L-1NaCl处理后的转基因烟草的光合速率和生物量都比野生型烟草高,积累的自由多聚胺比较多,同时精氨酸脱羧酶的转录本也更丰富。显示转基因烟草的耐盐性比野生型烟草高,多聚胺在烟株缓解盐胁中可能是起了重要作用。  相似文献   

3.
盐地碱蓬(Suaeda salsa)APX 基因的克隆及盐胁迫下的表达   总被引:13,自引:0,他引:13  
从盐地碱蓬 (Suaedasalsa)中克隆了抗坏血酸过氧化物酶 (ascorbateperoxidase ,APX)的全长cDNA(SsAPX) ,基因注册号为AY0 34 893。SsAPX全长 1.1kb ,推导的氨基酸序列长为 2 5 0个氨基酸残基。BLAST同源性分析表明 ,该cDNA与已报告的菠菜(Spinaciaoleracea)细胞质抗坏血酸过氧化物酶基因同源性最高 ,在核苷酸水平上一致性为 87% ,在氨基酸水平上一致性为 89%。Southern杂交表明APX基因在盐地碱蓬基因组中只有 1个拷贝。盐 (NaCl 40 0mmol/L)处理不同时间后的Northern杂交分析表明盐地碱蓬中SsAPX基因在盐胁迫下表达量增加 ,而且在盐胁迫下抗坏血酸过氧化物酶的活性也显著地增加 ,说明该基因受盐诱导。推测抗坏血酸过氧化物酶可能在保护盐地碱蓬免受氧化损伤的过程中起到一定作用  相似文献   

4.
以土壤农杆菌介导的转化方法将盐地碱蓬的腺苷甲硫氨酸合成酶cDNA(SsSAMS2)转化到烟草K326中。PCR分析的结果表明,SsSAMS2整合进K326的基因组内。共筛选到8个转基因纯合品系,分析其中3个品系(ST8.9、ST14—2、ST3.5)基因表达和多聚胺含量的结果表明,SsSAMS2可在转基因烟草中表达,转基因烟草中的多聚胺含量明显高于野生型烟草。这些结果表明,腺苷甲硫氨酸合成酶基因已在转基因烟草中过量表达并导致多聚胺含量提高。  相似文献   

5.
过氧化氢酶是清除H2O2的重要酶类.从400 mmol/L NaCl处理的盐地碱蓬(Suaeda salsa(L.)Pall)地上部分的cDNA文库中克隆了两个编码过氧化氢酶的cDNA(Sscat1和Sscat2),其中Sscat1(1.7kb)是一个全长cDNA克隆,编码一个492个氨基酸的开放阅读框架,而Sscat2(1.1kb)是一个cDNA片段.据编码Sscat1 3'端的287个氨基酸的cDNA序列与Sscat2的cDNA序列进行的BLAST同源性分析表明,Sscat1和Sscat2在核苷酸水平的一致性为71.9%,在氨基酸水平上的一致性为75%.Southem杂交表明,Sscat1在盐地碱蓬基因组中为多拷贝基因,Sscat2则为一个单拷贝基因.Northern杂交结果表明在盐胁迫条件下Sscat1和Sscat2的表达存在差异:400 mmol/L NaCl处理48h的盐地碱蓬根中的Sscat1和Sscat2 mRNA水平比对照显著提高,但是在叶中仅Sscatl受盐诱导表达.不同盐处理时间下的表达分析也证实,在盐地碱蓬叶中仅Sscat1受盐诱导表达.这说明Sscat1和Sscat2在盐地碱蓬中是差异调控的.生理分析表明过氧化氢酶的活性在盐胁迫条件下显著提高.  相似文献   

6.
植物液泡膜H -ATPase在建立跨液泡膜质子梯度、促进液泡Na 区域化、提高植物耐盐性方面发挥着重要作用.本实验从盐生植物盐地碱蓬(Suaeda salsa L.)cDNA文库分离到碱蓬叶片液泡膜H -ATPase B亚基cDNA克隆.测序表明该基因长达1 974 bp,开放阅读框有1 470 bp编码489个氨基酸,含有一个保守的ATP结合位点,其蛋白分子量约为54.29 kD.Northem及Western印迹表明盐地碱蓬液泡膜H -ATPase B亚基表达明显受NaCl胁迫诱导,并且在NaCl胁迫下,B亚基在转录及翻译水平上与液泡膜H -ATPase c亚基存在协同作用.盐胁迫下,盐地碱蓬液泡H -ATPase B亚基与c亚基的协同表达增加了液泡H -ATPase的数量,从而提高了液泡H -ATPase活性,为碱蓬叶片液泡Na 区域化提供了动力,最终提高了碱蓬植株的耐盐性.  相似文献   

7.
肌醇 1 磷酸 (I 1 P)合成酶 (EC5 .5 .1 .4,INPS)是肌醇生物合成中的关键酶 ,催化葡萄糖 6 磷酸 (G 6 P)到I 1 P的反应。从该实验室已构建的NaCl40 0mmol/L处理的盐地碱蓬 (Suaedasal sa)cDNA文库中克隆了肌醇 1 磷酸合成酶的全长cDNA (S .salsamyo inositol 1 phosphatesynthase,SsINPS) ,基因注册号为AF43 3 879。SsINPS全长约 1 986bp ,含有开放式阅读框架 1 5 3 0bp ,3′和 5′的非翻译区分别为 1 3 9bp和 3 1 7bp ;推导的氨基酸序列全长 5 1 0个氨基酸残基 ,分子量约为 5 6 .7kD ,pI值为 5 .3 5。BLAST同源性分析表明 ,该cDNA与已报告的冰叶日中花 (Mesembryanthemumcrys tallinum)的INPS基因同源性最高 ,其中 ,核苷酸水平的同源性为 91 % ,氨基酸水平上的同源性为84%。以SsINPS全长cDNA为探针进行的South ern杂交结果表明 ,SsINPS基因在盐地碱蓬基因组中只有一个拷贝 ;Northern结果表明 ,在盐处理(40 0mmol/L的NaCl)下 ,SsINPS在叶中的表达量有显著的增加。从而说明SsINPS在盐胁迫下是上升调节的  相似文献   

8.
盐地碱蓬GST基因的克隆、序列分析及其表达特征   总被引:16,自引:2,他引:14  
从盐地碱蓬 (Suaedasalsa)幼苗的cDNA文库中克隆到一个 0 .9kb的全长cDNA ,同源性分析表明该全长cDNA与已报告的大豆 (Glycinemax)GST基因相应序列的同源性达 5 5 % ,可能编码由 2 35个氨基酸组成的谷胱甘肽转移酶 (glutathioneS transferase ,GST)。Southern杂交结果证明GST基因在碱蓬基因组中可能有至少两个以上的拷贝 ;Northern杂交结果表明 ,4 0 0mmol/L的NaCl处理 4 8h ,幼叶中GSTmRNA的表达量是对照的 2~ 3倍 ,说明碱蓬中GST基因受盐诱导  相似文献   

9.
对溶液培养的盐地碱蓬(Suaeda salsa L.)幼苗进行不同浓度NaCl胁迫并改变培养液中K+浓度,以了解K+营养对NaCl胁迫下盐地碱蓬幼苗生长及叶片液泡膜V-H+-ATPase、V-H+-PPase活性的影响.提高培养液K+浓度可明显增加盐胁迫下碱蓬植株的鲜重、干重,促进盐地碱蓬叶片及根部组织K+积累.盐地碱蓬叶片液泡膜V-H+-ATPase至少由A、B、C、D、E及c亚基组成,其表达量在缺K+处理(12 μmol/L K+)下随盐胁迫浓度的增加而减小,而在正常K+(6 mmol/L)培养下则随盐胁迫浓度的增加而增加;盐地碱蓬叶片液泡膜V-H+-PPase分子量为72 kD,在缺K+和正常K+供应情况下,V-H+-PPase均有较高表达.V-H+-ATPase及V-H+-PPase活性变化与其亚基表达量变化基本成正相关.结果表明: K+对盐生植物碱蓬的耐盐性有重要作用,盐胁迫下,K+可能参与了V-H+-ATPase和V-H+-PPase活性调控.  相似文献   

10.
植物液泡膜H^ -ATPase在建立跨液泡膜质子梯度、促进液泡Na^ 区域化、提高植物耐盐性方面发挥着重要作用。本实验从盐生植物盐地碱蓬(Suaeda salsa L.)cDNA文库分离到碱蓬叶片液泡膜H^ -ATPase B亚基cDNA克隆。测序表明该基因长达1974bp,开放阅读框有1470bp编码489个氨基酸,含有一个保守的ATP结合位点,其蛋白分子量约为54.29kD。Northern及Western印迹表明盐地碱蓬液泡膜H^ -ATPase B亚基表达明显受NaCl胁迫诱导,并且在NaCl胁迫下,B亚基在转录及翻译水平上与液泡膜H^ -ATPase c亚基存在协同作用。盐胁迫下,盐地碱蓬液泡H^ -ATPase B亚基与c亚基的协同表达增加了液泡H^ -ATPase的数量,从而提高了液泡H^ -ATPase活性,为碱蓬叶片液泡Na^ 区域化提供了动力,最终提高了碱蓬植株的耐盐性。  相似文献   

11.
The suadea salsa full-length S-adenosylmethionine synthetase (SsSAMS2) was introduced into tobacco (Nicotiana tabacum L.) by Agrobacterium tumefaciens-mediated transformation. The gene transformation and expression in tobacco were confirmed by PCR, RT-PCR and Northern blotting analysis. Several transgenic lines (ST lines) overexpressing SsSAMS2 gene under the control of cauliflower mosaic virus 35S promoter showed more seeds number and weight, and accumulated higher free total polyamines (PAs) than wild-type plants (WT lines) and transformants with blank vector (BT lines). Salt stress-induced damage was attenuated in these transgenic plants, in the symptom of maintaining higher photosynthetic rate and biomass. These results that the transgenic plants overexpressing suadea salsa SAMS2 are more tolerant to salt stress than wild-type plants suggest that PAs may play an important role in contributing salt tolerance to plants.  相似文献   

12.
张悦  赵鑫  侯峥  王艳敏  王玉成  王超 《植物研究》2019,39(1):113-122
通过对刚毛柽柳转录组分析,克隆获得了一条与S-腺苷甲硫氨酸合成酶(SAMS)基因同源性高的基因,命名为ThSAMS。序列分析结果表明:ThSASM基因全长cDNA为1185bp,编码394个氨基酸,编码蛋白相对分子质量为97.85kDa,理论等电点为5.02。通过生物信息学分析表明,ThSASM基因编码的氨基酸与其他物种SAMS基因编码的氨基酸具有很高的同源性,其中与枣的同源性最高,达95%。实时荧光定量PCR(quantitativereal-timePCR,qRT-PCR)分析表明,ThSASM表达受NaCl、聚乙二醇(PEG)和ABA处理做出应答,暗示ThSASM可能参与了刚毛柽柳对盐和干旱的胁迫应答,为进一步研究SAMS基因在植物胁迫应答中的功能及作用机制提供了参考依据。  相似文献   

13.
Two different cDNA clones (Sscat1 and Sscat2) encoding catalase, the primary important H2O2_scavenging enzyme, were isolated from a λZap_cDNA library constructed from a 400 mmol/L NaCl_treated library of Suaeda salsa (L.) Pall aerial tissue. Sscat1 (1.7 kb) contains a full open reading frame of 492 amino acids and Sscat2 (1.1 kb) is a partial clone. BLAST analysis indicates that the two clones share 71.9% identity in nucleotide sequence and 75% identity in deduced amino acid sequence within the last 287 amino acid residues of Sscat1. Southern blotting analysis showed that Sscat1 is multicopy in S. salsa genome, while Sscat2 is a single copy gene. Northern blotting analysis showed a rapid increase in the steady_level of both genes in roots after 48 h salt treatment, but only Sscat1 was induced in salinity treated leaves. Time_course analysis carried out in leaves confirmed that Sscat1 was induced by salt stress, in contrast to Sscat2. These implied that the expression of Sscat1 and Sscat2 genes are differentially regulated in S. salsa. The activity of total catalase is dramatically increased in response to salt stress.  相似文献   

14.
Suaeda salsa seedlings grown in Hoagland nutrient solution were treated with different concentrations of NaCl combined with two levels of Ca2+ (0 and 20 mmol/L) to study the effect of Ca2+ nutrition on the growth and activity of leaf tonoplast V-H(+)-ATPase. Increase of Ca2+ concentration in the solution markedly increased the relative growth quantity of S. salsa seedlings and Ca2+ and K+ concentration in the leaf cell sap under NaCl stress. The leaf V-H(+)-ATPase activity was significantly increased with increasing NaCl concentration under high Ca2+ application (20 mmol/L), but little changed under Ca2+ starvation (0 mmol/L). Western blot analysis showed that the leaf V-H(+)-ATPase of S. salsa was at least composed of A, B, D and c subunits, and their protein amounts were not affected by NaCl treatments under Ca2+ starvation (0 mmol/ L) with an exception of 100 mmol/L NaCl, but increased under high Ca2+ application (20 mmol/L). There was a positive correlation between activity of V-H(+)-ATPase and the protein amounts of the subunits. The results suggest that Ca2+ nutrition played an important role in the salt tolerance of S. salsa, and that enhancement of V-H(+)-ATPase activity under salt stress was Ca2(+)-dependent.  相似文献   

15.
从盐胁迫下的盐地碱蓬(Suaeda salsa)的cDNA文库中获得了一个延伸因子(SsEF-1α)的cDNA片段。以此片段为探针,对其在不同胁迫处理下的盐地碱蓬中表达利用Northern杂交进行分析,结果表明,不同盐浓度处理、同一盐浓度不同时间处理下及双氧水刺激条件下延伸因子在碱蓬叶中的表达量先呈现减少然后增加的趋势;聚乙二醇(PEG)及低温诱导下均呈现上升趋势。由此可见该基因在盐、氧化、高渗和低温胁迫条件下产生一定的反应。  相似文献   

16.
NaCl stress causes the accumulation of several mRNAs in tomato seedlings. An upregulated cDNA clone, SAM1, was found to encode a S-adenosyl-L-methionine synthetase enzyme (AdoMet synthetase). Expression of the cDNA SAM1 in a yeast mutant lacking functional SAM genes resulted in high AdoMet synthetase activity and AdoMet accumulation. We show that tomato plants contain at least four SAM isogenes. Clones corresponding to isogenes SAM2 and SAM3 have also been isolated and sequenced. they encode predicted polypeptides 95% and 92% identical, respectively, to the SAM1-encoded AdoMet Synthetase. RNA hybridization analysis showed a differential response of SAM genes to salt and other stress treatments. SAM1 and SAM3 mRNAs accumulated in the root in response to NaCl, mannitol or ABA treatments. SAM1 mRNA accumulated also in leaf tissue. These increases of mRNA level were apparent as soon as 8 h after the initiation of the salt treatment and were maintained for at least 3 days. A possible role for AdoMet synthetases in the adaptation to salt stress is discussed.  相似文献   

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