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1.
Dr. Hideyuki Takahashi Mamoru Takano Nobuharu Fujii Masamichi Yamashita Hiroshi Suge 《Journal of plant research》1996,109(3):335-337
Roots of the agravitropic pea (Pisum sativum L.) mutantageotropum show positive hydrotropism, whereas roots of Alaska peas are hydrotropically almost non-responsive. When the gravitropic
response was nullified by rotation on clinostats, however, roots of Alaska peas showed unequivocal positive hydrotropism in
response to a water potential gradlent. These results suggest that roots of Alaska peas possess normal ability to respond
hydrotropically and their weak hydrotropic response results from a counteracting effect of gravitropism. 相似文献
2.
Summary Using a vibrating probe technique, four distinct electric patterns around growing cress roots were observed. The growth rate of the root with a particular one of them was apparently faster than that with the others. No direct correlation between the intensity of electric field and the root growth rate could be found. When gravistimulation was applied to the root, the electric pattern changed to be suitable for elongation of the gravitropic curvature. It is probable that change in electric pattern is related to growth of the root under a given environment. 相似文献
3.
Yutaka Miyazawa Yoshie Ito Teppei Moriwaki Akie Kobayashi Nobuharu Fujii Hideyuki Takahashi 《Plant science》2009,177(4):297-301
Plants are sessile in nature and must respond to various environmental cues to regulate their growth orientation. Root hydrotropism, a response to moisture gradients, has been considered to play an important role in drought avoidance. Nonetheless, the processes underlying hydrotropism in roots have remained obscure until recently because of the interfering effect of gravitropism. To shed light on root hydrotropism, we isolated and analyzed two Arabidopsis mutants, mizu-kussei (miz) 1 and 2, that have abnormal hydrotropic responses but normal responses to gravity. MIZ1 encodes a protein of unknown function with a conserved domain at its C-terminus. MIZ2 encodes a guanine-nucleotide exchange factor for ADP-ribosylation factor-type G proteins, which has been identified as GNOM. These findings suggest that roots possess molecular mechanisms essential for hydrotropism but independent of gravitropism. One of such mechanisms involves vesicle transport unique to hydrotropism in roots. Here we summarize recent progress on the molecular mechanism of root hydrotropism and the roles of MIZ1 and MIZ2. 相似文献
4.
Auxin transport and gravitational research: perspectives 总被引:1,自引:0,他引:1
Gravity is a fundamental factor which affects all living organisms. Plant development is well adapted to gravity by directing roots downward and shoots upwards. For more than a century, plant biologists have been fascinated to describe the molecular mechanisms underlying the gravitropic response of plants. Important progress towards signal perception, transduction, and response has been made, but new tools are beginning to uncover the regulatory networks for gravitropic control. We summarise recent progress in study of gravitropism and discuss strategies to identify the molecular basis of the gravity response in Arabidopsis thaliana. This will put us on a road towards the molecular systems biology of the Arabidopsis gravitropic response. 相似文献
5.
Cucumber (Cucumis sativus L.) seedlings form a specialized protuberance, the peg, on the transition zone between the hypocotyl and the root. When cucumber
seeds germinate in a horizontal position, the seedlings develop a peg on the lower side of the transition zone. To verify
the role of auxin action in peg formation, we examined the effect of the anti-auxin, p-chlorophenoxyisobutyric acid (PCIB), on peg formation and mRNA accumulation of auxin-regulated genes. Application of PCIB
to cucumber seedlings inhibited peg formation. The application of indole-3-acetic acid (IAA) competed with PCIB and induced
peg formation. Furthermore, application of PCIB decreased auxin-inducible CsIAA1 mRNA and increased auxin-repressible CsGRP1 mRNA in the lower side of the transition zone. The differential accumulation of CsIAA1 and CsGRP1 mRNAs in the transition zone of cucumber seedlings grown in a horizontal position was smaller in the PCIB-treated seedlings.
These results demonstrate that endogenous auxin redistributes and induces the differential expression of auxin-regulated genes,
and ultimately results in the suppression or induction of peg formation in the gravistimulated transition zone of cucumber
seedlings. 相似文献
6.
Satoru Iwata Yutaka Miyazawa Nobuharu Fujii Hideyuki Takahashi 《Annals of botany》2013,112(1):103-114
Background and Aims
Root hydrotropism is a response to water-potential gradients that makes roots bend towards areas of higher water potential. The gene MIZU-KUSSEI1 (MIZ1) that is essential for hydrotropism in Arabidopsis roots has previously been identified. However, the role of root hydrotropism in plant growth and survival under natural conditions has not yet been proven. This study assessed how hydrotropic response contributes to drought avoidance in nature.Methods
An experimental system was established for the study of Arabidopsis hydrotropism in soil. Characteristics of hydrotropism were analysed by comparing the responses of the miz1 mutant, transgenic plants overexpressing MIZ1 (MIZ1OE) and wild-type plants.Key Results
Wild-type plants developed root systems in regions with higher water potential, whereas the roots of miz1 mutant plants did not show a similar response. This pattern of root distribution induced by hydrotropism was more pronounced in MIZ1OE plants than in wild-type plants. In addition, shoot biomass and the number of plants that survived under drought conditions were much greater in MIZ1OE plants.Conclusions
These results show that hydrotropism plays an important role in root system development in soil and contributes to drought avoidance, which results in a greater yield and plant survival under water-limited conditions. The results also show that MIZ1 overexpression can be used for improving plant productivity in arid areas. 相似文献7.
S. Monique Nicoll Lindy A. Brigham Fushi Wen Martha C. Hawes 《Plant Cell, Tissue and Organ Culture》1995,42(1):57-66
Root border cell development and expression of reporter genes were evaluated in transgenic pea hairy roots. Successful induction of hairy roots in pea is conditioned by bacterial strain and plant genotype, as well as by developmental and environmental factors. Morphological changes sometimes occur when hairy roots are transferred from infected plants to tissue culture media, but such changes are confined to specific clones. Expression of reporter genes under the control of promoters from bean (Phaseolus vulgaris L.) stress genes encoding phenylalanine ammonia lyase and chalcone synthase were evaluated. Expression patterns vary between hairy roots taken directly from infected plants, and those grown in culture; most hairy roots taken from infected plants exhibit expression throughout all tissues, whereas expression in cultured hairy roots is most often localized to specific tissues. Patterns of expression that occur during different stages of hairy root development are very similar to those observed in transgenic plants expressing the same fusion genes. Border cell separation and release in hairy roots is normal, and expression of glucuronidase in border cells of some transgenic roots resulted in development of bright blue single cells. Cultured hairy roots should provide a very useful model for studying the effect of defined changes in root border cells on microbial associations with roots of this important legume.Abbreviations YEM
yeast extract-mannitol
- GUS
glucuronidase
- PAL
phenylalanine ammonium lyase
- CHS
chalcone syntase 相似文献
8.
Hormone interactions during lateral root formation 总被引:2,自引:0,他引:2
Lateral root (LR) formation, the production of new roots from parent roots, is a hormone- and environmentally-regulated developmental
process in higher plants. Physiological and genetic studies using Arabidopsis
thaliana and other plant species have revealed the roles of several plant hormones in LR formation, particularly the role of auxin
in LR initiation and primordium development, resulting in much progress toward understanding the mechanisms of auxin-mediated
LR formation. However, hormone interactions during LR formation have been relatively underexamined. Recent studies have shown
that the plant hormones, cytokinin and abscisic acid negatively regulate LR formation whereas brassinosteroids positively
regulate LR formation. On the other hand, ethylene has positive and negative roles during LR formation. This review summarizes
recent findings on hormone-regulated LR formation in higher plants, focusing on auxin as a trigger and on the other hormones
in LR formation, and discusses the possible interactions among plant hormones in this developmental process. 相似文献
9.
Endocytosis and vesicle trafficking during tip growth of root hairs 总被引:13,自引:0,他引:13
Summary. The directional elongation of root hairs, “tip growth”, depends on the coordinated and highly regulated trafficking of vesicles
which fill the tip cytoplasm and are active in secretion of cell wall material. So far, little is known about the dynamics
of endocytosis in living root hairs. We analyzed the motile behaviour of vesicles in the apical region of living root hairs
of Arabidopsis thaliana and of Triticum aestivum by live cell microscopy. For direct observation of endocytosis and of the fate of endocytic vesicles, we used the fluorescent
endocytosis marker dyes FM 1-43 and FM 4-64. Rapid endocytosis was detected mainly in the tip, where it caused a bright fluorescence
of the apical cytoplasm. The internalized membranes proceeded through highly dynamic putative early endosomes in the clear
zone to larger endosomal compartments in the subapical region that are excluded from the clear zone. The internalized cargo
ended up in the dynamic vacuole by fusion of large endosomal compartments with the tonoplast. Before export to these lytic
compartments, putative early endosomes remained in the apical zone, where they most probably recycled to the plasma membrane
and back into the cytoplasm for more than 30 min. Endoplasmic reticulum was not involved in trafficking pathways of endosomes.
Actin cytoskeleton was needed for the endocytosis itself, as well as for further membrane trafficking. The actin-depolymerizing
drug latrunculin B modified the dynamic properties of vesicles and endosomes; they became immobilized and aggregated in the
tip. Treatment with brefeldin A inhibited membrane trafficking and caused the disappearance of FM-containing vesicles and
putative early endosomes from the clear zone; labelled structures accumulated in motile brefeldin A-induced compartments.
These large endocytic compartments redispersed upon removal of the drug. Our results hence prove that endocytosis occurs in
growing root hairs. We show the localization of endocytosis in the tip and indicate specific endomembrane compartments and
their recycling.
Correspondence and reprints: Institute of Botany, Slovak Academy of Sciences, Dubravska cesta 14, 845 23 Bratislava, Slovak
Republic. 相似文献
10.
Role of cytokinin in the regulation of root gravitropism 总被引:9,自引:0,他引:9
The models explaining root gravitropism propose that the growth response of plants to gravity is regulated by asymmetric distribution of auxin (indole-3-acetic acid, IAA). Since cytokinin has a negative regulatory role in root growth, we suspected that it might function as an inhibitor of tropic root elongation during gravity response. Therefore, we examined the free-bioactive-cytokinin-dependent ARR5::GUS expression pattern in root tips of transformants of Arabidopsis thaliana (L.) Heynh., visualized high cytokinin concentrations in the root cap with specific monoclonal antibodies, and complemented the analyses by external application of cytokinin. Our findings show that mainly the statocytes of the cap produce cytokinin, which may contribute to the regulation of root gravitropism. The homogenous symmetric expression of the cytokinin-responsive promoter in vertical root caps rapidly changed within less than 30 min of gravistimulation into an asymmetrical activation pattern, visualized as a lateral, distinctly stained, concentrated spot on the new lower root side of the cap cells. This asymmetric cytokinin distribution obviously caused initiation of a downward curvature near the root apex during the early rapid phase of gravity response, by inhibiting elongation at the lower side and promoting growth at the upper side of the distal elongation zone closely behind the root cap. Exogenous cytokinin applied to vertical roots induced root bending towards the application site, confirming the suspected inhibitory effect of cytokinin in root gravitropism. Our results suggest that the early root graviresponse is controlled by cytokinin. We conclude that both cytokinin and auxin are key hormones that regulate root gravitropism.Electronic Supplementary Material Supplementary material is available in the online version of this article at http://dx.doi.org/10.1007/s00425-004-1381-8 相似文献
11.
Summary. To find components which participate in gravitropic signal transmission, we screened different cell biological inhibitors
for their effect on gravitropic bending of rice coleoptiles. Acrylamide, which is known to affect intermediate filaments in
mammalian cells, strongly inhibited gravitropic bending at concentrations that did not inhibit growth of coleoptile segments.
This inhibition was reversible. Investigating the acrylamide effect further, we found that it interferes with an event that
occurs around 15 min after the onset of stimulation. We also observed that acrylamide inhibits polar indolyl-3-acetic acid
transport. Furthermore, acrylamide efficiently eliminated microtubules, whereas actin filaments remained intact. To our knowledge
this is the first report of effects of monoacrylamide in plant cells.
Correspondence and reprints (present address): Laboratoire de Génétique Végétale, Sciences III, Université de Genève, 30 Quai
Ernest-Ansermet, 1211 Genève, Switzerland. 相似文献
12.
Egy1 was isolated as an ethylene-dependent gravitropism-deficient Arabidopsis mutant. Molecular studies reveal that EGY1 gene encodes a 59-kDa plastid-targeted metalloprotease. It is actively expressed in hypocotyl tissue and targets to endodermal
and cortex plastid. Its protein level is up-regulated by both ethylene and light. CAB protein accumulation and chlorophyll
level is severely reduced in hypocotyls and endodermal cells, respectively. Sucrose is able to restore the severely reduced starch and lipid contents as well as the deficient endodermal plastid size
found in light-grown egy1 hypocotyls yet it fails to rescue the reduced plastid number and chlorophyll level in egy1 endodermal cells. The loss-of-function egy1 mutation results in a smaller size (1.9 ± 0.3 μm in diameter) and less number (5 ± 1) of plastids in endodermal cells, which
are nearly 50% of the wild-type. EGY1 is specially required for the development of full-size endodermal plastid in seedlings that are grown on sucrose-free media
under light. It plays a direct role in controlling the light-induced chlorophyll production, grana formation and plastid replication
in endodermal cell. However, it plays an indirect role in regulation of endodermal plastid size. It is likely that the ethylene-dependent
gravitropism-deficient phenotype of egy1 hypocotyls may result from the smaller size and less number of endodermal plastids. Gravicurvature assays performed on ethylene-insensitive
mutants, etr1-1, etr2-1, ers2-1, ein4-1 and ein2-5, have clearly demonstrated the necessary role for ethylene in vigorous gravitropism of light-grown hypocotyls. The degree
of ethylene-dependent gravicurvature is positively correlated with the combined state of endodermal plastid mass and number.
Neither ethylene nor EGY1-regulated full-size endodermal plastid is sufficient for promotion of vigorous hypocotyl gravitropism. Presence of 4 full-size
plastids per endodermal cell together with ethylene pretreatment of hypocotyls becomes sufficient to trigger vigorous gravicurvature
in light-grown seedlings. A model is therefore proposed to address the role of EGY1 in regulation of endodermal plastid size and number as well as the stimulatory effect of ethylene on hypocotyl gravitropism. 相似文献
13.
Hideyuki Takahashi 《Plant and Soil》1994,165(2):301-308
We have studied hydrotropism and its interaction with gravitropism in agravitropic roots of a pea mutant and normal roots of peas (Pisum sativum L.) and maize (Zea mays L.). The interaction between hydrotropism and gravitropism in normal roots of peas or maize were also examined by nullifying the gravitropic response on a clinostat and by changing the stimulus-angle for gravistimulation. Depending on the intensity of both hydrostimulation and gravistimulation, hydrotropism and gravitropism of seedling roots strongly interact with one another. When the gravitropic response was reduced, either genetically or physiologically, the hydrotropic response of roots became more unequivocal. Also, roots more sensitive to gravity appear to require a greater moisture gradient for the induction of hydrotropism. Positive hydrotropism of roots occurred due to a differential growth in the elongation zone; the elongation was much more inhibited on the moistened side than on the dry side of the roots. It was suggested that the site of sensory perception for hydrotropism resides in the root cap, as does the sensory site for gravitropism. Furthermore, an auxin inhibitor, 2,3,5-triiodobenzoic acid (TIBA), and a calcium chelator, ethyleneglycol-bis-(-aminoethylether)-N,N,N,N- tetraacetic acid (EGTA), inhibited both hydrotropism and gravitropism in roots. These results suggest that the two tropisms share a common mechanism in the signal transduction step. 相似文献
14.
Regional growth in vertical and horizontal etiolated sunflower hypocotyls from which the apical hook tissue had been either partly or wholly excised, was measured 24 h later, the regions having been demarcated with resin beads. Removal of the cotyledons (an excision which included the distal end of the shoot apex) had little effect on growth during this period but excision of the apical hook significantly reduced growth. In vertically orientated seedlings, removal of half of the hook severely reduced growth in all other growing regions and removal of the entire hook totally inhibited growth. This inhibition of growth was not a consequence of the removal of the region of growth but a consequence of the removal of a region on which growth was dependent. In horizontal seedlings, the situation was more complex inasmuch as a horizontal orientation itself induced growth in previously non-growing regions. This new growth was localised in its extent and was not as severely affected by progressive excision of the hook as was growth in vertical seedlings. The results are discussed in terms of overall growth co-ordination in the hypocotyl. 相似文献
15.
Plant traits can affect ecological interactions between plants, herbivores, and predators. Our study tests whether reduced leaf wax in peas alters the interaction between the pea aphid ( Acyrthosiphon pisum), a foliar-foraging predator (a lady beetle, Hippodamia convergens) and a ground-foraging predator (a ground beetle, Poecilus scitulus). We performed a 2×2×2 factorial experiment in which wax level, presence of H. convergens, and presence of P. scitulus were manipulated. Experimental arenas consisted of a cage surrounding three pea plants. One plant in each cage was stocked with 15 pea aphids. In greenhouse and field cage experiments, we assessed the effect of each factor and their interactions on aphid density. As in previous studies, H. convergens foraged for aphids more effectively on reduced wax peas than on normal peas. Other interactions among H. convergens, P. scitulus , and A. pisum were the same on both types of peas. We consider how aphid movement, plant growth, and a high frequency of predation by P. scitulus on H. convergens influenced pea aphid density. 相似文献
16.
Nucleoside Diphosphate Kinase Is a Possible Component of the Ethylene Signal Transduction Pathway 总被引:4,自引:0,他引:4
In etiolated seedlings of Pisum sativum and leaves of Arabidopsis thaliana, in vivo ethylene treatment resulted in an increase in in vitro phosphorylation of 17 kD (P. sativum) or 16 and 17 kD (A. thaliana) polypeptides. These polypeptides were identified as nucleoside diphosphate kinase (NDPK) based on both biochemical properties and interaction with antibodies against NDPK from P. sativum. Using the receptor-directed antagonist of ethylene action 2,5-norbornadiene and the ethylene-insensitive mutants of A. thaliana etr1-1 and eti5, ethylene specificity and receptor dependence of NDPK phosphorylation have been demonstrated. In pea epicotyls, ethylene treatment also led to increase in nucleoside transferase activity unlike in A. thaliana leaves. The increases in nucleoside transferase activity and NDPK phosphorylation were very rapid and transient. The results suggest a role for NDPK as a possible component of the ethylene signal transduction chain. 相似文献
17.
Iwamoto A Satoh D Furutani M Maruyama S Ohba H Sugiyama M 《Journal of plant research》2006,119(2):85-93
Plant organ growth changes under genetic and environmental influences can be observed as altered cell proliferation and volume growth. The two aspects are mutually dependent and intricately related. For comprehensive growth analysis, it is necessary to specify the relationship quantitatively. Here, we develop a simple mathematical model for this purpose. Our model assumes that the biological activity of a given organ is proportional to the cell number of the organ and is allocated into three aspects: cell proliferation, volume growth, and organ maintenance. We analyzed the growth of primary roots of Arabidopsis thaliana (L.) Heynh. in one tetraploid and four diploid strains using this model. The analysis determined various growth parameters, such as specific cost coefficients of cell proliferation and volume growth for each strain. The results provide insight into the basis of interstrain variations and ploidy effects in root growth. 相似文献
18.
Endogenous cytokinin-like activity was detected in pea seedlings usingthe soybean callus bioassay. Higher levels of activity were found in two-day-oldseedling roots and in the root free zone of four-day-old seedlings compared tothe lateral root zone of four-day-old seedlings. By day six, the levels ofendogenous cytokinin-like activity was greatly reduced in both the lateral rootzone and root free zone. Decapitation of the root tip disrupted the spatialorganization of the root. Lateral roots were subsequently found along the entirelength of the root rather than in a discreet lateral root zone. Application of10–3 M dihydrozeatin to decapitated root tipsovercame the effect of root tip removal and restored the situation to what isnormally found in intact roots. There was little mobility of dihydrozeatin inthe root, with applied 3H-DHZ not moving from the root free zone,even 24 h after application. 相似文献
19.
The activities of the enzymes of uridine diphosphate sugar interconversions (UDP-D-glucose 4-epimerase, UDP-D-glucuronate 4-epimerase, UDP-D-xylose 4-epimerase, UDP-D-glucose dehydrogenase and UDP-D-glucuronate decarboxylase) were measured by using enzymic preparations (protein precipitated between 40–65% (NH4)2SO4 saturation) isolated from segments at different stages of elongation of the third internode of pea seedlings. All enzymic activities increased from dividing and non-elongated cells to fully elongated cells. At all stages of growth, the specific activity or the activity per cell of UDP-D-glucose dehydrogenase was much lower than that of UDP-D-glucuronate decarboxylase and this may represent a controlling step in the formation of UDP-D-xylose. During elongation, changes were also found in the activities of the epimerases. These could be correlated with the corresponding variations which occur in the chemical structure and physical properties of pectins during cell wall extension. However, the high levels of the epimerases present in cells which have completed elongation growth suggest that pectin synthesis is mainly controlled at the sites of the synthetase reactions. 相似文献
20.
Voigt B Timmers AC Samaj J Hlavacka A Ueda T Preuss M Nielsen E Mathur J Emans N Stenmark H Nakano A Baluska F Menzel D 《European journal of cell biology》2005,84(6):609-621
Plant tip growth has been recognized as an actin-based cellular process requiring targeted exocytosis and compensatory endocytosis to occur at the growth cone. However, the identity of subcellular compartments involved in polarized membrane trafficking pathways remains enigmatic in plants. Here we characterize endosomal compartments in tip-growing root hair cells. We demonstrate their presence at the growing tip and differential distribution upon cessation of tip growth. We also show that both the presence of endosomes as well as their rapid movements within the tip region depends on an intact actin cytoskeleton and involves actin polymerization. In conclusion, actin-propelled endosomal motility is tightly linked to the polar tip growth of root hairs. 相似文献