Han Peng, Niu Chang-ying, Desneux Nicolas
Hubei Key Laboratory of Insect Resources Application and Sustainable Pest Control, Plant Science & Technology College, Huazhong Agricultural University, Wuhan, China; French National Institute for Agricultural Research (INRA), Sophia-Antipolis, France.
Hubei Key Laboratory of Insect Resources Application and Sustainable Pest Control, Plant Science & Technology College, Huazhong Agricultural University, Wuhan, China.
PLoS One. 2014 Aug 29;9(8):e102980. doi: 10.1371/journal.pone.0102980. eCollection 2014.
The cotton aphid Aphis gossypii Glover is the main aphid pest in cotton fields in the Yangtze River Valley Cotton-planting Zone (YRZ) in central China. Various natural enemies may attack the cotton aphid in Bt cotton fields but no studies have identified potential specific top-down forces that could help manage this pest in the YRZ in China. In order to identify possibilities for managing the cotton aphid, we monitored cotton aphid population dynamics and identified the effect of natural enemies on cotton aphid population growth using various exclusion cages in transgenic Cry1Ac (Bt)+CpTI (Cowpea trypsin inhibitor) cotton field in 2011. The aphid population growth in the open field (control) was significantly lower than those protected or restricted from exposure to natural enemies in the various exclusion cage types tested. The ladybird predator Propylaea japonica Thunberg represented 65% of Coccinellidae predators, and other predators consisted mainly of syrphids (2.1%) and spiders (1.5%). The aphid parasitoids Aphidiines represented 76.7% of the total count of the natural enemy guild (mainly Lysiphlebia japonica Ashmead and Binodoxys indicus Subba Rao & Sharma). Our results showed that P. japonica can effectively delay the establishment and subsequent population growth of aphids during the cotton growing season. Aphidiines could also reduce aphid density although their impact may be shadowed by the presence of coccinellids in the open field (likely both owing to resource competition and intraguild predation). The implications of these results are discussed in a framework of the compatibility of transgenic crops and top-down forces exerted by natural enemy guild.
棉蚜Aphis gossypii Glover是中国中部长江流域棉区棉田的主要蚜虫害虫。在转Bt基因棉花田中,各种天敌可能会攻击棉蚜,但尚未有研究确定在中国长江流域有助于防治这种害虫的潜在特定下行控制力量。为了确定防治棉蚜的可能性,我们于2011年在转Cry1Ac(Bt)+CpTI(豇豆胰蛋白酶抑制剂)基因棉花田中,利用各种防虫网笼监测了棉蚜种群动态,并确定了天敌对棉蚜种群增长的影响。在测试的各种防虫网笼类型中,开阔田(对照)中的棉蚜种群增长显著低于受到保护或限制与天敌接触的情况。捕食性天敌龟纹瓢虫Propylaea japonica Thunberg占瓢虫科捕食者的65%,其他捕食者主要为食蚜蝇(2.1%)和蜘蛛(1.5%)。蚜虫寄生蜂蚜茧蜂占天敌群落总数的76.7%(主要是日本柄瘤蚜茧蜂Lysiphlebia japonica Ashmead和印度三叉蚜茧蜂Binodoxys indicus Subba Rao & Sharma)。我们的结果表明,龟纹瓢虫能够在棉花生长季节有效延缓蚜虫种群的建立及其后续增长。蚜茧蜂也能降低蚜虫密度,尽管在开阔田中瓢虫的存在可能会掩盖其影响(可能是由于资源竞争和集团内捕食)。在转基因作物与天敌群落施加的下行控制力量兼容性的框架下,对这些结果的意义进行了讨论。