Antixenosis of Thodan (AAB), a resistant Musa cultivar to Odoiporus longicollis (Olivier) and characterization of larvicide molecules

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引用次数: 1

Abstract

Banana pseudostem borer (BPB) Odoiporus longicollis (Olivier) (Coleoptera, Curculionidae) is a serious pest of Musa cultivars. Experimental maintenance of larvae in the live pseudostem of cultivar Thodan, a resistant AAB Musa cultivar has resulted antixenosis followed by death of larvae within a week. Antixenosis was characterized by significant decrease of total hemocytes and sharp changes on the proportionate distribution of different types of hemocytes in larvae. As the number of plasmatocytes, prohemocytes, splenocytes and adipohemocytes decreased the number of granulocytes and oenocytes increased. Antixenosis also caused accumulation of 20-hydroxyecdysone (20E) and significant inhibition on the activities of trypsin like serine protease (TlSP) and phenoloxidase (PO). Phytochemical analysis of Thodan resulted characterization of three larvicides such as Betulinic acid (BA), Stigmasterol-3-O-glucoside (SOG) and Sulfoquinovosyl diacyl glycerol (SQDG), and the content in the pseudostem ranged 0.0027 to 0.007 per cent. All the three larvicides were highly toxic to the larvae with LD50 of 0.38 ppm for SOG, 0.41 ppm for SQDG and 0.83 ppm for BA. Simultaneous action of three larvicides in the live pseudostem resulted resistance in Thodan against infestation by BPB. Susceptible Nendran showed negligibly low content of SOG (0.0011%) and SQDG (0.0013%) but no detectable quantity of BA. Intoxication by all the three larvicides caused significant changes on the proportionate distribution of hemocytes, accumulation of 20-hydroxy ecdysone (20E) and inhibition of TlSP and PO, the enzymes involved in larval metamorphosis and cuticle sclerotisation. This study demonstrated that resistance of Thodan against O. longicollis is due to adverse effect of these larvicides on endocrine system, cuticle development and cytotoxicity of hemocytes. As these larvicide molecules are stable compounds, there is scope for them to be used as substitutes in place of deleterious insecticides for the management BPB.
对长尾蛾(Odoiporus longicollis)具有抗性的Musa品种Thodan (AAB)的抗虫性及杀幼虫剂分子的鉴定
香蕉假茎螟虫(Odoiporus longicollis, Olivier)是香蕉品种的严重害虫。实验结果表明,在抗性AAB穆萨品种Thodan的活假茎中维持幼虫可产生抗蛇毒反应,并在一周内死亡。抗蛇毒的特点是总血细胞显著减少,不同类型血细胞的比例分布发生急剧变化。随着浆细胞、原血细胞、脾细胞和脂肪血细胞数量的减少,粒细胞和粒细胞数量增加。抗xenosis还引起20-羟基蜕皮激素(20E)的积累,并显著抑制胰蛋白酶样丝氨酸蛋白酶(TlSP)和酚氧化酶(PO)的活性。通过植物化学分析,鉴定出白桦酸(BA)、豆甾醇-3- o -葡萄糖苷(SOG)和磺酰喹啉二酰基甘油(SQDG) 3种杀幼虫剂,其含量范围为0.0027% ~ 0.007%。3种杀幼虫剂的LD50分别为SOG 0.38 ppm、SQDG 0.41 ppm和BA 0.83 ppm。三种杀幼虫剂同时作用于活的假茎中,可产生抗虫性。易感Nendran的SOG和SQDG含量低至可忽略不计(0.0011%)和0.0013%,BA未检测到。三种杀幼虫剂中毒后,幼虫血细胞的比例分布、20-羟基蜕皮激素(20E)的积累以及参与幼虫变态和角质层硬化的酶TlSP和PO的抑制均发生了显著变化。本研究表明,索丹对长尾绦虫的抗性是由于这些杀幼虫剂对内分泌系统、角质层发育和血细胞毒性的不利影响。由于这些杀幼虫分子是稳定的化合物,因此它们有可能作为有害杀虫剂的替代品用于BPB的管理。
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