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Biology subjects

Gui, R.

Publications and source records attributed to Gui, R..

2 recordsLinked to original sources

Strigolactone mediates moso bamboo root response to phosphate stress

Moso bamboo (Phyllostachys edulis) grows in soils with widespread phosphate (Pi) deficiency, resulting in low shoot yield. While it also suffers from high Pi due to heavy fertilization, which causes the degradation of bamboo forest. A novel plant hormone, strigolactone (SL), plays a key role in root growth and development under Pi stress, but its regulatory mechanism has not been systematically reported. Our study investigated SL-mediated mechanism in response to Pi stress in moso bamboo. We compared the root growth under low, sufficient and high Pi, and analyzed the temporary trends of gene expression in primary root tip region and lateral root primordium zone. The effects of SL-analog (GR24) and SL-inhibitor (TIS108) on root architecture at low and high Pi were evaluated. SL biosynthesis and signaling are the main pathways of root response to Pi stress. With the decrease of Pi level, 5-deoxystrigol and strigol in the root exudates increase significantly. Under low Pi, SL is indispensable for the maintenance of root cell morphology, and promotes primary root elongation and reduces lateral root formation by upregulating the expression of phosphorous starvation response genes and downregulating the expression of abscisic acid response genes. The absence of SL at high Pi releases the inhibition of ethylene responsive genes expression to inhibit root elongation and promote branching. In general, SL mediates the response of bamboo roots to Pi stress by regulating its biosynthesis and signal transduction and influencing other hormone pathways.

molecular biology↗

Case study of a rhizosphere microbiome assay on a bamboo rhizome with excessive shoots

Young Moso bamboo shoots are a very popular seasonal food. Bamboo is an important source of income for farmers and the value for cultivation has recently been estimated to $30,000 per hectare. A rare and valuable phenomenon has recently appeared where dozens of adjacent buds within a single Moso bamboo rhizome have grown into shoots. Due to its rarity, this phenomenon, which is of practical importance for the production of edible shoots, has not been scientifically studied. We report the occurrence of a rhizome with 18 shoots, of which the microbiome were analyzed, using rhizomes having one or no shoots as controls. The community of prokaryotes, but not fungi, correlated with the shoot numbers. Burkholderia was the most abundant genus, which negatively correlated with rhizome shoot number, while Clostridia and Ktedonobacteria positively correlated with many shoots. Two Burkholderia strains were isolated and their plant-growth promoting activity was tested. The isolated Burkholderia strains attenuated the growth of bamboo seedlings. Analysis of collected events of enhanced shoot production in China showed no evidence that enhanced shoot development was heritable. Overall, our data provides a firsthand study on excessive shoot development of bamboo.

plant biology↗