Enormous distinctions of the stem structure and cell types between gymnosperms and angiosperms tree species are expected to cause quite different wood physical and mechanical attributes, however, the molecular mechanisms underlying the differing wood morphology are still unclear. In this study, we compared the transcriptomes obtained by RNA-Seq between Populus alba × P. glandulosa clone 84K, and Larix kaempferi (Lamb.) Carr trees. Available genome resource served as reference for P. alba × P. glandulosa and the Iso-Seq results of a three-tissues mixture (xylem, phloem, and leaf) were used as the reference for L. kaempferi to compare the xylem-specifically expressed genes and their alternative splicing model. Through screening, we obtained 1...
Background Betula luminifera H. Winkler, which is widely distributed in southern China, is an econom...
Transcript profiling has shown the molecular bases of several biological processes in plants but few...
A noticeable proportion of low transcribed genes involved in wood formation in conifers may have bee...
Many plant genes are known to be involved in the development of cambium and...
Background: Alternative splicing (AS) of genes is an efficient means of generating ...
Many plant genes are known to be involved in the development of cambium and wood, but how the expres...
Many plant genes are known to be involved in the development of cambium and wood, but how the expres...
Many plant genes are known to be involved in the development of cambium and wood, but how the expres...
Many plant genes are known to be involved in the development of cambium and...
The lignified tissue in the secondary stem is the main source of wood. In this study, we applied RNA...
Secondary xylem, commonly known as wood, has had a major impact on both our planet and civilization,...
Secondary xylem, commonly known as wood, has had a major impact on both our planet and civilization,...
Secondary xylem, commonly known as wood, has had a major impact on both our planet and civilization,...
Secondary xylem, commonly known as wood, has had a major impact on both our planet and civilization,...
Secondary xylem, commonly known as wood, has had a major impact on both our planet and civilization,...
Background Betula luminifera H. Winkler, which is widely distributed in southern China, is an econom...
Transcript profiling has shown the molecular bases of several biological processes in plants but few...
A noticeable proportion of low transcribed genes involved in wood formation in conifers may have bee...
Many plant genes are known to be involved in the development of cambium and...
Background: Alternative splicing (AS) of genes is an efficient means of generating ...
Many plant genes are known to be involved in the development of cambium and wood, but how the expres...
Many plant genes are known to be involved in the development of cambium and wood, but how the expres...
Many plant genes are known to be involved in the development of cambium and wood, but how the expres...
Many plant genes are known to be involved in the development of cambium and...
The lignified tissue in the secondary stem is the main source of wood. In this study, we applied RNA...
Secondary xylem, commonly known as wood, has had a major impact on both our planet and civilization,...
Secondary xylem, commonly known as wood, has had a major impact on both our planet and civilization,...
Secondary xylem, commonly known as wood, has had a major impact on both our planet and civilization,...
Secondary xylem, commonly known as wood, has had a major impact on both our planet and civilization,...
Secondary xylem, commonly known as wood, has had a major impact on both our planet and civilization,...
Background Betula luminifera H. Winkler, which is widely distributed in southern China, is an econom...
Transcript profiling has shown the molecular bases of several biological processes in plants but few...
A noticeable proportion of low transcribed genes involved in wood formation in conifers may have bee...