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国家自然科学基金(31171616)

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发文基金:国家自然科学基金转基因生物新品种培育专项更多>>
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人工合成抗菌肽对棉花黄萎病菌的抑菌效果被引量:2
2013年
大丽轮枝菌(Verticillium dahliae)是引起棉花黄萎病的真菌病害,广泛存在于中国的产棉区,使棉花产量和品质大幅下降。虽然,人们长期以来一直在寻找抗病基因,但很难在陆地棉中发现。为了寻找对棉花黄萎病菌有强抑制作用的抗菌肽或基因,人工设计和合成了20条抗菌肽(简称"人工肽"),通过抑菌圈法从中筛选到3条最有潜力的人工肽(D4E1、D51和D28),并与2条天然抗菌肽(Decoralin和Pseudin,简称"天然肽")进行对比,用于鉴定其对棉花黄萎病菌的抑菌活性。结果表明,D4E1和D51这2条人工肽的抑菌活性最强,在多肽质量浓度为20μg/mL时,几乎能100%地抑制黄萎病菌的菌丝生长和孢子萌发,显示出高抗特性。同时,实验采用生物信息学软件和反相高效液相色谱法测定了抗菌肽疏水活性,结果表明反相高效液相色谱保留时间可以更有效地表示抗菌肽的疏水活性,从而能更准确推测抗菌肽的抑菌活性。上述研究结果说明:1)如果有一个好的人工设计,人工肽对黄萎病菌的抑制效果会比天然肽更佳;2)人工肽的氨基酸序列可推导出核苷酸序列,作为抗棉花黄萎病的候选基因,用转基因育种技术可获得抗病新品种。
赵亦静倪密诺林王学德
关键词:棉花黄萎病菌抗菌肽疏水性抑菌活性
Molecular evolution and species-specific expansion of the NAP members in plants被引量:1
2015年
he NAP(NAC-Like, Activated by AP3/PI) subfamily is one of the important plant-specific transcription factors, and controls many vital biological processes in plants. In the current study, 197 NAP proteins were identified from 31 vascular plants,but no NAP members were found in eight non-vascular plants.All NAP proteins were phylogenetically classified into two groups(NAP I and NAP II), and the origin time of the NAP I group might be relatively later than that of the NAP II group.Furthermore, species-specific gene duplications, caused by segmental duplication events, resulted in the expansion of the NAP subfamily after species-divergence. Different groups have different expansion rates, and the NAP group preference was found during the expansion in plants. Moreover, the expansion of NAP proteins may be related to the gain and loss of introns.Besides, functional divergence was limited after the gene duplication. Abscisic acid(ABA) might play an important role in leaf senescence, which is regulated by NAP subfamily. These results could lay an important foundation for expansion and evolutionary analysis of NAP subfamily in plants.
Kai FanHao ShenNoreen BibiFeng LiShuna YuanMing WangXuede Wang
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