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利用cDNA测序鉴定可能与牧草盲蝽(半翅目:盲蝽科)唾液腺口外消化及克服植物防御相关的基因

Identification of Genes Potentially Responsible for extra-Oral Digestion and Overcoming Plant Defense from Salivary Glands of the Tarnished Plant Bug (Hemiptera: Miridae) Using cDNA Sequencing.

作者信息

Zhu Yu-Cheng, Yao Jianxiu, Luttrell Randall

机构信息

USDA-ARS Southern Insect Management Research Unit, Stoneville, MS 38776, USA

USDA-ARS Southern Insect Management Research Unit, Stoneville, MS 38776, USA.

出版信息

J Insect Sci. 2016 Jun 20;16(1). doi: 10.1093/jisesa/iew041. Print 2016.

Abstract

Saliva is known to play a crucial role in tarnished plant bug (TPB, Lygus lineolaris [Palisot de Beauvois]) feeding. By facilitating the piercing, the enzyme-rich saliva may be used for extra-oral digestion and for overcoming plant defense before the plant fluids are ingested by TPBs. To identify salivary gland genes, mRNA was extracted from salivary glands and cDNA library clones were sequenced. A de novo-assembling of 7,000 Sanger sequences revealed 666 high-quality unique cDNAs with an average size of 624 bp, in which the identities of 347 cDNAs were determined using Blast2GO. Kyoto Encyclopedia of Genes and Genomes analysis indicated that these genes participate in eighteen metabolic pathways. Identifications of large number of enzyme genes in TPB salivary glands evidenced functions for extra-oral digestion and feeding damage mechanism, including 45 polygalacturonase, two α- amylase, one glucosidase, one glycan enzyme, one aminopeptidase, four lipase, and many serine protease cDNAs. The presence of multiple transcripts, multigene members, and high abundance of cell wall degradation enzymes (polygalacturonases) indicated that the enzyme-rich saliva may cause damage to plants by breaking down plant cell walls to make nutrients available for feeding. We also identified genes potentially involved in insect adaptation and detoxifying xenobiotics that may allow insects to overcome plant defense responses, including four glutathione S-transferases, three esterases, one cytochrome P450, and several serine proteases. The gene profiles of TPB salivary glands revealed in this study provides a foundation for further understanding and potential development of novel enzymatic inhibitors, or other RNAi approaches that may interrupt or minimize TPB feeding damage.

摘要

众所周知,唾液在牧草盲蝽(TPB,牧草盲蝽[Palisot de Beauvois])取食过程中起着关键作用。富含酶的唾液通过促进穿刺,可用于口外消化以及在牧草盲蝽摄取植物汁液之前克服植物防御。为了鉴定唾液腺基因,从唾液腺中提取了mRNA并对cDNA文库克隆进行了测序。对7000条桑格序列进行从头组装,揭示了666个高质量的独特cDNA,平均大小为624bp,其中347个cDNA的身份通过Blast2GO确定。京都基因与基因组百科全书分析表明,这些基因参与18条代谢途径。在牧草盲蝽唾液腺中鉴定出大量酶基因,证明了其口外消化和取食损伤机制的功能,包括45个多聚半乳糖醛酸酶、2个α-淀粉酶、1个葡萄糖苷酶、1个聚糖酶、1个氨肽酶、4个脂肪酶和许多丝氨酸蛋白酶cDNA。多种转录本、多基因成员的存在以及细胞壁降解酶(多聚半乳糖醛酸酶)的高丰度表明,富含酶的唾液可能通过分解植物细胞壁使营养物质可供取食,从而对植物造成损害。我们还鉴定了可能参与昆虫适应和解毒异源生物的基因,这些基因可能使昆虫克服植物防御反应,包括4个谷胱甘肽S-转移酶、3个酯酶、1个细胞色素P450和几个丝氨酸蛋白酶。本研究揭示的牧草盲蝽唾液腺基因图谱为进一步理解和开发新型酶抑制剂或其他可能中断或最小化牧草盲蝽取食损伤的RNAi方法奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/83b1/4913459/a7c8729e6188/iew041f1p.jpg

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