勞者糾察工者整飭工者轄制(英文:Worker policing,直譯:工者治安勞動者管轄)是社會性膜翅目動物(螞蟻蜜蜂黃蜂)常見的行為:雌性工蟻會吃掉其它工蟻產的卵,確保蟻后的後代在群體佔據主導。在某些蜜蜂、螞蟻、黃蜂物種,工蜂或蜂王也可能直接攻擊有生育能力的工蜂。

單倍二倍體性別決定系統的理論基礎
這存在於蜜蜂和其它膜翅目昆蟲中,包括大黃蜂螞蟻黃蜂等等。

這種強制的糾察或促進真社會性社會的利他演化。[1]

其可能通過表面標記的碳氫化合物或角質層碳氫化合物識別。[2][3][4] 極少數情況,工蜂會攜帶模仿蟻后的碳氫化合物逃避監管,這種情況又稱「無統治綜合症」、「無秩序綜合症」(英文:anarchic syndrome)。[5]

也並非所有糾察都需要女王;一些螞蟻就建立了雌蟻統治等級,就讓排名高的個體繁殖。[6]


演化基礎 编辑

大多社會性昆蟲透過染色體倍性性別決定系統決定性別。單倍體雄性由未受精卵發育而來,而二倍體雌性則由受精卵發育而來。許多螞蟻、蜜蜂、黃蜂物種,工蜂工蟻雖然無法交配,但仍保留有功能的卵巢。[7]因此,它們能產生雄性後代。

平均而言,女王與她的兒子能分享一半基因,但與女工的兒子們卻只分享四分之一的基因。因此,撫養自己的兒子而不是女工的兒子才符合女王的最大利益。[7]

提出的可能辨識機制 编辑

 
Formica fusca螞蟻可以辨識巢友

可能包括女王的碳氫化合物、女工的碳氫化合物或巢友識別。

女王的碳氫化合物 编辑

弓背蟻屬 Camponotus floridanus的研究發現,其女王的卵表有特殊的碳氫化合物。在有女王產卵的群體,工蟻不產卵;而沒有女王產卵的群體,工蜂則繁殖。因此,碳氫化合物還可提醒工蟻停止繁殖。 目前還不清楚限制繁殖如何發生,或者減少工蜂繁殖所需的最低訊號閾值是多少。[2]

女工的碳氫化合物 编辑

馬蟻Platythyrea punctata英语Platythyrea punctata的群體中,角質層化合物的存在引發了蟻群內部攻擊,特別是新舊繁殖工蟻之間。具體來說,老的生殖工蟻會在新雌性的觸角塗抹一種標記碳氫化合物,將它們識別為競爭對手和攻擊目標。[3]

同窩識別 编辑

黑山蟻似乎還包括巢友識別。更多攻擊非同巢工蟻,並帶走其蛋。[4]

膜翅目例子 编辑

趨同演化例子:

蜜蜂 编辑

 
西方蜜蜂吃掉工蟻的卵(卵食英语Oophagy

最早發現的是西方蜜蜂(Apis mellifera)。普遍工蜂管制讓工蜂繁殖率極低(0.12%)。[11] 蜜蜂透過吃來維持繁殖率(卵食英语Oophagy)。[8]許多蜂巢工蜂卵巢活性減弱,產卵受抑制。 [8]

據報道,小蜜蜂(Apis florea)也有卵食英语Oophagy行為。透過微衛星分析,沒有成熟的雄蜂具有非蜂王等位基因。因此,即使工蟻的卵巢已活化並且能夠產卵,工蟻的監管也確保了工蟻的功能性不孕。[12]


據報導,東方蜜蜂雌性工蜂激活卵巢的比例高於義大利蜜蜂或小蜜蜂。當蜂后移除後,高達40%工蜂幾天內激活自己卵巢。然而,工蜂繼續吃工蟻的卵,顯示該物種的工者轄制並不涉及蜂后。[13]

一妻多夫制英语Polyandry in animals蜜蜂屬來說也是類似。[13]

勞者秩序也發生在原始的社會性熊蜂,例如欧洲熊蜂[14]

螞蟻 编辑

 
Harpegnathos saltator英语Harpegnathos saltator殺害外來女王

馬蟻 Pachycondyla inversa 會吃掉工蟻的卵(又稱婚工蟻英语gamergate (ant)),並攻擊產卵的蟻。[15]

在 Gnamptogenys menadensis 的工蟻有時會交配產卵,而其它工蟻產用作食物的營養卵英语trophic egg。由於其工蟻既可產雄性卵,也可產雌性卵,因此青睞勞者秩序。其勞者秩序可能有固定女工六肢(據報半數死亡),也可能拖出蟻群。[16]

Aphaenogaster smythiesi japonica 也顯示出勞者秩序的證據。當研究人員將重新組合有蟻后蟻群和無蟻后蟻群,工蟻會攻擊卵巢激活的工蟻。[17]

參考 编辑

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外部連結 编辑