The United Graduate School of Agricultural Sciences, Kagoshima University, Kagoshima, Japan.
Department of Biological Resource Science, Saga University, Saga, Japan.
PLoS One. 2022 Mar 2;17(3):e0263904. doi: 10.1371/journal.pone.0263904. eCollection 2022.
Land plants have diverse defenses against herbivores. In some cases, plant response to insect herbivory may be chronological and even transgenerational. Feeding by various stink bugs, such as the bean bug Riptortus pedestris (Hemiptera: Alydidae), induce physiological changes in soybean, called as green stem syndrome, which are characterized by delayed senescence in stems, leaves, and pods. To investigate the plant response to the bean bug feeding in the infested generation and its offspring, we studied the effects of R. pedestris infestation on Glycine soja, the ancestral wild species of soybean. Field surveys revealed that the occurrence of the autumn R. pedestris generation coincided with G. soja pod maturation in both lowland and mountainous sites. Following infestation by R. pedestris, pod maturation was significantly delayed in G. soja. When G. soja seeds obtained from infested and non-infested plants were cultivated, the progeny of infested plants exhibited much earlier pod maturation and larger-sized seed production than that of control plants, indicating that R. pedestris feeding induced transgenerational changes. Because earlier seed maturity results in asynchrony with occurrence of R. pedestris, the transgenerational changes in plant phenology are considered to be an adaptive transgenerational and chronological defense for the plant against feeding by the stink bug.
陆生植物具有多种防御机制来抵御草食动物。在某些情况下,植物对昆虫取食的反应可能具有时间顺序性,甚至具有跨代传递性。各种蝽象(如豆蝽 Riptortus pedestris)的取食会诱导大豆发生生理变化,称为“绿茎综合征”,其特征是茎、叶和荚果的衰老延迟。为了研究豆蝽取食对受侵害代及其后代的植物反应,我们研究了 R. pedestris 对大豆野生近缘种——野生大豆(Glycine soja)的影响。田间调查显示,秋季 R. pedestris 代的发生与低地和山地大豆荚果成熟的时间一致。在 R. pedestris 取食后,大豆荚果的成熟明显延迟。当从受侵害和未受侵害的植株中获取大豆种子进行培养时,受侵害植株的后代比对照植株更早地进入荚果成熟和产生更大的种子,这表明 R. pedestris 取食诱导了跨代变化。由于更早的种子成熟导致与 R. pedestris 发生的时间不同步,植物物候学的跨代变化被认为是植物对蝽象取食的一种适应性跨代和时间防御机制。