首页> 外文期刊>Archives of Insect Biochemistry and Physiology >THE CONTENT OF AMINO ACIDS IN ARTIFICIAL DIET INFLUENCES THE DEVELOPMENT AND REPRODUCTION OF BROWN PLANTHOPPER, Nilaparvata lugens (ST angstrom L)
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THE CONTENT OF AMINO ACIDS IN ARTIFICIAL DIET INFLUENCES THE DEVELOPMENT AND REPRODUCTION OF BROWN PLANTHOPPER, Nilaparvata lugens (ST angstrom L)

机译:人工饮食中的氨基酸含量影响褐飞虱,褐飞虱的发育和繁殖

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Nitrogen availability from dietary protein has profound effects on the physiology and ecology of insect herbivores. The amount of amino acids consumed by Nilaparvata lugens impacts its phenotypic characteristics and reproduction. In this work, we hypothesized that amino acids deficiency leads to physiological trade-offs between survival and reproduction. We investigated the effect of larval nutrition on larval period, wing dimorphism, egg production, ovarian development, lifespan, and stored nutrients. Larvae were reared on the standard medium and an amino acid deficient medium (AADM), adults were reared on the standard medium. Nymphs reared on AADM had shorter larval period (20.78 d/23.09 d), higher brachypterous forms (34.06%/16.52%), the adults females were fed back on standard medium after emergency, they featured extended preoviposition period (11.41/13.45 d), declining number of laid eggs (2.27/37.44), ovarian dysplasia, and shorter lifespan compared with control group. Adults from both dietary treatment groups had approximately the same proportion of total lipids and protein nutrients carried over from larvae feeding into adulthood. We infer that N. lugens makes a physiological trade-off between survival and reproduction by suppressing ovarian development. This is probably a common strategy during times of nutritional deficiency in nature.
机译:膳食蛋白质中的氮可利用性对昆虫食草动物的生理和生态有深远影响。褐飞虱消耗的氨基酸数量影响其表型特征和繁殖。在这项工作中,我们假设氨基酸缺乏会导致生存与繁殖之间的生理平衡。我们调查了幼虫营养对幼虫期,鸡翅二态性,产卵量,卵巢发育,寿命和储存的养分的影响。幼虫在标准培养基和氨基酸缺乏培养基(AADM)上饲养,成虫在标准培养基上饲养。在AADM上饲养的若虫幼虫期较短(20.78 d / 23.09 d),短臂类较高(34.06%/ 16.52%),成年雌性在紧急情况下以标准培养基喂养,其产卵前期延长(11.41 / 13.45 d)。 ,与对照组相比,产卵数下降(2.27 / 37.44),卵巢发育不良和寿​​命缩短。两个饮食治疗组的成年人从喂食到成年的幼虫所带走的总脂质和蛋白质营养成分的比例大致相同。我们推断N. lugens通过抑制卵巢发育在生存和繁殖之间进行了生理平衡。这可能是自然界中营养不足时期的常见策略。

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