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LHX4 is a LIM homeodomain transcription factor involved in pituitary ontogenesis. Some mutations of LHX4 are associated with combined pituitary hormone deficiency that affects growth and development in animal. The objective of this study is revealing to these polymorphisms of in LHX4 gene exons 1, 2, 3 in 820 Chinese cattle and to assess possible association of polymorphisms in LHX4 gene with growth traits in NY breed. The PCR-SSCP and DNA sequencing of LHX4 gene showed five novel synonymous mutations: (GenBank: NW_001493442.2: g.35143G >A, g.35152C>T, g.35212C>T, g.35230G>A, g.35233T>C). Genotype MM (GG-CC-CC-GG-TT) and haplotype M (G-C-C-G-T) were dominant in the four breeds, and genotype frequencies of LHX4 in the four cattle populations agreed with Hardy-Weinberg equilibrium (P>0.05), although their frequencies significantly differed among the four analyzed populations (***P<0.001). The association analysis showed that individuals with genotype MM had greater body weight than those with genotype MN (*P<0.05) at eighteen months of age in Nanyang cattle.
Rehmannia glutinosa L. is a perennial herbaceous species belonging to the Scrophulariaceae family. Its tuberous roots are used in Chinese medicine, but its productivity tends to fall drastically after its first cropping season. While the physiological and environmental factors responsible for this yield decline are to an extent understood, the changes in gene expression associated with continuous cropping have not as yet been documented. We have attempted to define which genes are differentially expressed in the first year and second year planting materials by creating both a forward and a reverse subtractive library, containing, respectively, 232 and 214 cDNA fragments, of which 200 and 195 shared homology with known function sequences found in other plant species. The resulting functional assignment of 16 of these sequences, along with their patterns of spatial and temporal expression, suggested that continuous cropping disturbed the initiation of Ca2+ signal transduction and ethylene synthesis, and repressed DNA replication, RNA transcription and protein synthesis. Irrigation of Ca2+ signal blocker in roots of plants could alleviate the syndromes of continuously cropping disease in R. glutinosa. The molecular regulatory network underlying the continuous cropping disease has been sketched out, and this should serve as a basis for revealing the genetic causes of the syndrome in R. glutinosa.
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