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Changing partners in an obligate symbiosis: a facultative endosymbiont can compensate for loss of the essential endosymbiont Buchnera in an aphid.专性共生关系中伙伴的更替:一种兼性内共生体可补偿蚜虫体内必需内共生体布赫纳氏菌的缺失。
Proc Biol Sci. 2003 Dec 22;270(1533):2543-50. doi: 10.1098/rspb.2003.2537.
2
A dual-genome microarray for the pea aphid, Acyrthosiphon pisum, and its obligate bacterial symbiont, Buchnera aphidicola.一种用于豌豆蚜(Acyrthosiphon pisum)及其专性细菌共生体蚜虫内共生菌(Buchnera aphidicola)的双基因组微阵列。
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3
Buchnera has changed flatmate but the repeated replacement of co-obligate symbionts is not associated with the ecological expansions of their aphid hosts.布赫纳氏菌更换了共生伙伴,但专性共生菌的反复替换与其蚜虫宿主的生态扩张并无关联。
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本文引用的文献

1
Nutritional interactions in insect-microbial symbioses: aphids and their symbiotic bacteria Buchnera.昆虫-微生物共生关系中的营养相互作用:蚜虫及其共生细菌布赫纳氏菌。
Annu Rev Entomol. 1998;43:17-37. doi: 10.1146/annurev.ento.43.1.17.
2
Facultative bacterial symbionts in aphids confer resistance to parasitic wasps.蚜虫体内的兼性细菌共生体赋予其对寄生蜂的抗性。
Proc Natl Acad Sci U S A. 2003 Feb 18;100(4):1803-7. doi: 10.1073/pnas.0335320100. Epub 2003 Jan 31.
3
Diversity and geographic distribution of secondary endosymbiotic bacteria in natural populations of the pea aphid, Acyrthosiphon pisum.豌豆蚜(Acyrthosiphon pisum)自然种群中次生内共生细菌的多样性和地理分布
Mol Ecol. 2002 Oct;11(10):2123-35. doi: 10.1046/j.1365-294x.2002.01606.x.
4
Wolbachia density and virulence attenuation after transfer into a novel host.转入新宿主后沃尔巴克氏体的密度与毒力衰减
Proc Natl Acad Sci U S A. 2002 Mar 5;99(5):2918-23. doi: 10.1073/pnas.052466499.
5
Prevailing triple infection with Wolbachia in Callosobruchus chinensis (Coleoptera: Bruchidae).绿豆象(鞘翅目:豆象科)中普遍存在的沃尔巴克氏体三重感染。
Mol Ecol. 2002 Feb;11(2):167-80. doi: 10.1046/j.0962-1083.2001.01432.x.
6
Endosymbiotic sulphate-reducing and sulphide-oxidizing bacteria in an oligochaete worm.一种寡毛纲蠕虫体内的内共生硫酸盐还原菌和硫化物氧化菌。
Nature. 2001 May 17;411(6835):298-302. doi: 10.1038/35077067.
7
Independent origins and horizontal transfer of bacterial symbionts of aphids.蚜虫细菌共生体的独立起源与水平转移
Mol Ecol. 2001 Jan;10(1):217-28. doi: 10.1046/j.1365-294x.2001.01189.x.
8
Spiroplasma symbiont of the pea aphid, Acyrthosiphon pisum (Insecta: Homoptera).豌豆蚜(昆虫纲:同翅目)的共生螺旋体菌
Appl Environ Microbiol. 2001 Mar;67(3):1284-91. doi: 10.1128/AEM.67.3.1284-1291.2001.
9
Genome sequence of the endocellular bacterial symbiont of aphids Buchnera sp. APS.蚜虫内共生细菌布赫纳氏菌(Buchnera sp.)APS的基因组序列。
Nature. 2000 Sep 7;407(6800):81-6. doi: 10.1038/35024074.
10
The secondary endosymbiotic bacterium of the pea aphid Acyrthosiphon pisum (Insecta: homoptera).豌豆蚜(昆虫纲:同翅目)的次生内共生细菌。
Appl Environ Microbiol. 2000 Jul;66(7):2748-58. doi: 10.1128/AEM.66.7.2748-2758.2000.

专性共生关系中伙伴的更替:一种兼性内共生体可补偿蚜虫体内必需内共生体布赫纳氏菌的缺失。

Changing partners in an obligate symbiosis: a facultative endosymbiont can compensate for loss of the essential endosymbiont Buchnera in an aphid.

作者信息

Koga Ryuichi, Tsuchida Tsutomu, Fukatsu Takema

机构信息

Institute for Biological Resources and Functions, National Institute of Advanced Industrial Science and Technology, Tsukuba 305-8566, Japan.

出版信息

Proc Biol Sci. 2003 Dec 22;270(1533):2543-50. doi: 10.1098/rspb.2003.2537.

DOI:10.1098/rspb.2003.2537
PMID:14728775
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1691542/
Abstract

Almost all aphids harbour an endosymbiotic bacterium, Buchnera aphidicola, in bacteriocytes. Buchnera synthesizes essential nutrients and supports growth and reproduction of the host. Over the long history of endosymbiosis, many essential genes have been lost from the Buchnera genome, resulting in drastic genome reduction and the inability to live outside the host cells. In turn, when deprived of Buchnera, the host aphid suffers retarded growth and sterility. Buchnera and the host aphid are often referred to as highly integrated almost inseparable mutualistic partners. However, we discovered that, even after complete elimination of Buchnera, infection with a facultative endosymbiotic gamma-proteobacterium called pea aphid secondary symbiont (PASS) enabled survival and reproduction of the pea aphid. In the Buchnera-free aphid, PASS infected the cytoplasms of bacteriocytes that normally harbour Buchnera, establishing a novel endosymbiotic system. These results indicate that PASS can compensate for the essential role of Buchnera by physiologically and cytologically taking over the symbiotic niche. By contrast, PASS negatively affected the growth and reproduction of normal host aphids by suppressing the essential symbiont Buchnera. These findings illuminate complex symbiont-symbiont and host-symbiont interactions in an endosymbiotic system, and suggest a possible evolutionary route to novel obligate endosymbiosis by way of facultative endosymbiotic associations.

摘要

几乎所有蚜虫的菌胞中都携带着一种内共生细菌——蚜虫内共生菌。蚜虫内共生菌能合成必需营养物质,支持宿主的生长和繁殖。在漫长的内共生历史中,蚜虫内共生菌的基因组中许多必需基因已经丢失,导致基因组大幅缩减,无法在宿主细胞外生存。反过来,当蚜虫失去蚜虫内共生菌时,宿主蚜虫会生长迟缓且不育。蚜虫内共生菌和宿主蚜虫常被视为高度整合、几乎不可分割的互利共生伙伴。然而,我们发现,即使完全清除蚜虫内共生菌后,感染一种兼性内共生γ-变形菌——豌豆蚜次生共生菌(PASS)仍能使豌豆蚜存活并繁殖。在没有蚜虫内共生菌的蚜虫中,PASS感染了通常容纳蚜虫内共生菌的菌胞细胞质,建立了一种新的内共生系统。这些结果表明,PASS可以通过在生理和细胞层面占据共生生态位来补偿蚜虫内共生菌的重要作用。相比之下,PASS通过抑制重要共生菌蚜虫内共生菌,对正常宿主蚜虫的生长和繁殖产生负面影响。这些发现揭示了内共生系统中复杂的共生菌-共生菌以及宿主-共生菌相互作用,并提出了一条通过兼性内共生关联形成新的专性内共生的可能进化途径。