Junctional Adhesion Molecule 2 Mediates the Interaction between Hatched Blastocyst and Luminal Epithelium: Induction by Progesterone and LIF
PLOS ONE
Authors: Su, Ren-Wei; Jia, Bo; Ni, Hua; Lei, Wei; Yue, Shun-Li; Feng, Xu-Hui; Deng, Weng-Bo; Liu, Ji-Long; Zhao, Zhen-Ao; Wang, Tong-Song; Yang, Zeng-Ming
Abstract
Background: Junctional adhesion molecule 2 (Jam2) is a member of the JAM superfamily. JAMs are localized at intercellular contacts and participated in the assembly and maintenance of junctions, and control of cell permeability. Because Jam2 is highly expressed in the luminal epithelium on day 4 of pregnancy, this study was to determine whether Jam2 plays a role in uterine receptivity and blastocyst attachment in mouse uterus. Methodology/Principal Findings: Jam2 is highly expressed in the uterine luminal epithelium on days 3 and 4 of pregnancy. Progesterone induces Jam2 expression in ovariectomized mice, which is blocked by progesterone antagonist RU486. Jam2 expression on day 4 of pregnancy is also inhibited by RU486 treatment. Leukemia inhibitory factor (LIF) up-regulates Jam2 protein in isolated luminal epithelium from day 4 uterus, which is blocked by S3I-201, a cell-permeable inhibitor for Stat3 phosphorylation. Under adhesion assay, recombinant Jam2 protein increases the rate of blastocyst adhesion. Both soluble recombinant Jam2 and Jam3 can reverse this process. Conclusion: Jam2 is highly expressed in the luminal epithelium of receptive uterus and up-regulated by progesterone and LIF via tyrosine phosphorylation of Stat3. Jam2 may play a role in the interaction between hatched blastocyst and receptive uterus.
Identification of single nucleotide polymorphisms in soybean associated with resistance to common cutworm (Spodoptera litura Fabricius)
EUPHYTICA
Authors: Liu, Hailun; Che, Zhijun; Zeng, Xuanrui; Zhang, Guozheng; Wang, Hui; Yu, Deyue
Abstract
Common cutworm (CCW; Spodoptera litura Fabricius) is a major leaf-eating insect that affects soybean crops in central and southern China. Understanding CCW-associated traits in soybean will provide insights for improved breeding strategies for resistance. The purpose of this study was to explore the genetic mechanisms underlying resistance to CCW. In this study, one natural population consisting of 219 soybean landraces from a wide geographic range was employed. Three traits, namely larval weight (LW), duration of larval stage (DLS) and pupal weight (PW) were evaluated as indicators for CCW resistance. Using 1536 single nucleotide polymorphisms (SNPs), a genome-wide association analysis was conducted to identify genomic regions associated with LW, DLS and PW in this natural population. Seven SNP-trait associations were identified using a mixed linear model (MLM). Four SNPs were co-associated with two traits. Three loci were significantly associated with CCW-resistance. Most of the detected loci were located within genomic regions previously identified as quantitative trait loci (QTLs) for these traits. The region on chromosome 6, which co-associated with LW and DLS, included several QTLs for reaction to disease or insect, such as Fusarium virguliforme, corn earworm and bean pyralid. On chromosome 7, two SNPs have been reported to associate with CCW, corn earworms, soybean aphid and bean pyralid moth infestations. Two putative genes (MYC2-like and JAM2-like) on chromosome 7 that may be associated with resistance to CCW were identified. These markers, located in previously reported QTLs, are consistent with previous findings and may represent important targets for the identification of CCW resistance-related genes. These results may provide a profound understanding of the genetic basis for resistance to CCW in soybean and the foundation for resistance to biotic stress through marker-assisted selection breeding strategies for CCW.