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Chitinase genes from Metarhizium anisopliae for the control of whitefly in cotton

机译:棉僵菌的几丁质酶基因控制棉花中的粉虱

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摘要

Entomopathogenic fungi produces endochitianses, involved in the degradation of insect chitin to facilitate the infection process. Endochitinases ( Chit1 ) gene of family 18 glycosyl hydrolyses were amplified, cloned and characterized from genomic DNA of two isolates of Metarhizium anisopliae. Catalytic motif of family 18 glycosyl hydrolyses was found in Chit1 of M. anisopliae , while no signal peptide was found in any isolate, whereas substrate-binding motif was found in Chit1 of both isolates. Phylogenetic analysis revealed the evolutionary relationship among the fungal chitinases of Metarhizium . The Chit1 amplified were closely related to the family 18 glycosyl hydrolyses. Transient expressions of Chit1 in cotton plants using Geminivirus-mediated gene silencing vector of Cotton Leaf Crumple Virus (CLCrV) revealed the chitinase activity of Chit1 genes amplified from both of the isolates of M. anisopliae when compared with the control. Transformed cotton plants were virulent against fourth instar nymphal and adult stages of Bemisia tabaci which resulted in the mortality of both fourth instar nymphal and adult B. tabaci. Thus, the fungal chitinases expressed in cotton plants played a vital role in plant defence against B. tabaci . However, further studies are required to explore the comparative effectiveness of chitinases from different fungal strains against economically important insect pests.
机译:致病性真菌产生内切酶,参与昆虫几丁质的降解以促进感染过程。从两个分离的金属异形菌的基因组DNA中扩增,克隆和鉴定了家族18糖基水解的内切壳聚糖酶(Chit1)基因。在沙门氏菌的Chit1中发现了家族18糖基水解的催化基序,而在任何分离株中均未发现信号肽,而在两个分离株的Chit1中均发现了底物结合基序。系统发育分析表明,真菌几丁质酶之间的进化关系。扩增的Chit1与家族18糖基水解密切相关。使用双子病毒介导的棉花叶片皱纹病毒(CLCrV)基因沉默载体在棉花植株中表达Chit1的瞬时表达显示,与对照相比,从两个分离支分枝杆菌分离得到的Chit1基因的几丁质酶活性。转化的棉株对烟粉虱的四龄若虫和成虫期有毒力,导致四龄若虫和成虫的烟粉虱死亡。因此,棉花植物中表达的真菌几丁质酶在植物对抗烟粉虱中起着至关重要的作用。然而,需要进一步的研究来探索来自不同真菌菌株的几丁质酶对具有重要经济意义的害虫的比较效果。

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