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The decomposability of individual OC components also varied markedly between leaf and root litters.
We found that excessively negative water potentials (<−4.7 MPa, beyond the P50leaf of −4.1 MPa) during prolonged drought in young trees lead to hydraulic failure; while the imbalance of photoassimilate allocation between leaf and root system in larger trees, accompanied with declining C reserves (<2% dry matter across four tissues), might have led to carbon starvation.
10,537 2-fold up/down regulated genes were hierarchical clustered (a) and the over-lapping parts (b) between leaf and root were examined.
The distribution of mean probe-set signals from the 135 k Brassica Exon array has large dynamic range (Fig. 2) and detected 11,078 significantly differently expressed transcripts (p<0.01) between leaf and root samples.
Genes with differential transcript abundance between leaf and root tissue were identified from the pre-filtered genes using a one-way ANOVA (GeneSpring) with a Benjamini-Hochberg corrected p-value <0.01 and a fold-change cut-off >2.
The 135 k Brassica Exon Array was validated by quantifying transcriptome differences between leaf and root tissue from a reference Brassica rapa line (R-o-18), and categorisation by Gene Ontologies (GO) based on gene orthology with Arabidopsis thaliana.
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Theory and also experimental evidence indicate a linear log log relationship between leaf, stem and root biomass across a broad range of taxa inhabiting diverse ecological habitats including dry sites (Enquist and Niklas, 2002).
Gene-specific real-time RT-PCR showed that genes in the PoptrIAA3 subgroup display differential expression between leaf, stem and root tissues.
The gene-expression data, indirectly suggests varied modes of gene-regulation between the leaf and root tissue (Compare Figure 6 to Figure 7).
The shorter distance between leaf and nodule (or root) along the second principal component axis in common bean compared to that of soybean suggested a decreased accuracy of measuring differential gene expression in common bean CSH GeneChip data compared to that of soybean.
However, unlike the genotypes studied here, Weih and Nord [16,34] demonstrated an inverse relationship between leaf area and root biomass in six willow clones, suggesting that increased shoot productivity with increasing leaf area occurred at a cost of reduced below ground biomass allocation.
More suggestions(15)
between leaf and tuber
between leaf and nodule
between leaf and bud
between crossbite and root
between lesion and root
between leaf and cotyledon
between hypocotyl and root
between leaf and flag
between symptom and root
between aboveground and root
between soil and root
between leaf and air
between leaf and bark
between fungal and root
between stem and root
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