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Regulating Leaf sentence examples within Gene Regulating Leaf
RNA-Seq analysis suggested variation in Glucose-6-phosphate translocator2 (GPT2) gene expression caused correlated changes in leaf vein density and BRIX when bip mutant and wildtype were compared, suggesting that the correlation between leaf vein density and fruit sugar may result from the genes regulating leaf vein development that are also involved in regulating leaf sugar biosynthesis.
RNA-Seq analysis suggested variation in Glucose-6-phosphate translocator2 (GPT2) gene expression caused correlated changes in leaf vein density and BRIX when bip mutant and wildtype were compared, suggesting that the correlation between leaf vein density and fruit sugar may result from the genes regulating leaf vein development that are also involved in regulating leaf sugar biosynthesis.
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ObjectiveThis study aimed to identify genes regulating leaf morphology using segregating B.
ObjectiveThis study aimed to identify genes regulating leaf morphology using segregating B.
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Regulating Leaf sentence examples within Positively Regulating Leaf
Collectively, our work illustrates a role for KLU in positively regulating leaf longevity and drought tolerance by synergistically activating cytokinin signaling and promoting proline metabolism.
Collectively, our work illustrates a role for KLU in positively regulating leaf longevity and drought tolerance by synergistically activating cytokinin signaling and promoting proline metabolism.
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Our results reveal that ApTCP2 plays multiple roles, including modulating leaf morphogenesis, affecting flowering and positively regulating leaf senescence, via miR319, and these effects are at least partially achieved by influencing JA biosynthesis.
Our results reveal that ApTCP2 plays multiple roles, including modulating leaf morphogenesis, affecting flowering and positively regulating leaf senescence, via miR319, and these effects are at least partially achieved by influencing JA biosynthesis.
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Regulating Leaf sentence examples within regulating leaf senescence
The function of CCCH in regulating leaf senescence, especially its roles in abscisic acid (ABA)-mediated leaf senescence is largely unknown.
The function of CCCH in regulating leaf senescence, especially its roles in abscisic acid (ABA)-mediated leaf senescence is largely unknown.
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Regulating Leaf sentence examples within regulating leaf development
Our results demonstrated that CsBRC1-like has a specific role in regulating leaf development, and CsBRC1-like and CsBRC1 may have overlapping roles in shoot branching.
Our results demonstrated that CsBRC1-like has a specific role in regulating leaf development, and CsBRC1-like and CsBRC1 may have overlapping roles in shoot branching.
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Potassium supply alleviated osmotic-induced alterations in Eucalyptus seedlings by better regulating leaf development as well as stomatal density, thus, improving the rate of leaf gas exchange parameters, mesophyll conductance to CO2 (lower δ13C ‰ values), and water use efficiency (WUE).
Potassium supply alleviated osmotic-induced alterations in Eucalyptus seedlings by better regulating leaf development as well as stomatal density, thus, improving the rate of leaf gas exchange parameters, mesophyll conductance to CO2 (lower δ13C ‰ values), and water use efficiency (WUE).
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Regulating Leaf sentence examples within regulating leaf growth
Consistent with this concept, our data suggest that the NATsUGT73C6 modulate the expression levels of key transcription factors involved in regulating leaf growth by modulating cell proliferation.
Consistent with this concept, our data suggest that the NATsUGT73C6 modulate the expression levels of key transcription factors involved in regulating leaf growth by modulating cell proliferation.
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Conclusions These results in lettuce provide insight into the molecular mechanism of GRF gene family in regulating leaf growth and development and foundational information for genetic improvement of the lettuce variations specialized in leaf character.
Conclusions These results in lettuce provide insight into the molecular mechanism of GRF gene family in regulating leaf growth and development and foundational information for genetic improvement of the lettuce variations specialized in leaf character.
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Regulating Leaf sentence examples within regulating leaf photosynthesi
Overall, these results suggest that qPE9-1 is involved in rice adaptation under elevated CO 2 concentration by regulating leaf photosynthesis via moderating rice photosynthetic light reaction and Rubisco content.
Overall, these results suggest that qPE9-1 is involved in rice adaptation under elevated CO 2 concentration by regulating leaf photosynthesis via moderating rice photosynthetic light reaction and Rubisco content.
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Both vapour pressure deficit (VPD) and potassium (K) have been widely studied in regulating leaf photosynthesis and plant growth.
Both vapour pressure deficit (VPD) and potassium (K) have been widely studied in regulating leaf photosynthesis and plant growth.
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Regulating Leaf sentence examples within regulating leaf ga
Taken together, the findings revealed the promising role of GSH in enhancing the lead stress tolerance and phytoremediation potential of castor bean (Ricinus communis) plants cultivated in Pb-polluted soils through regulating leaf gas exchange, antioxidants machinery, and metal uptake.
Taken together, the findings revealed the promising role of GSH in enhancing the lead stress tolerance and phytoremediation potential of castor bean (Ricinus communis) plants cultivated in Pb-polluted soils through regulating leaf gas exchange, antioxidants machinery, and metal uptake.
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The role of VPD in regulating leaf gas exchange of three tree species was investigated in Jinan, China.
The role of VPD in regulating leaf gas exchange of three tree species was investigated in Jinan, China.
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Regulating Leaf sentence examples within regulating leaf angle
Experiments using reporter constructs showed that OsbHLH98 is expressed on the adaxial side of lamina joints, consistent with its proposed function in regulating leaf angle.
Experiments using reporter constructs showed that OsbHLH98 is expressed on the adaxial side of lamina joints, consistent with its proposed function in regulating leaf angle.
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DAP-Seq analysis and expression of target genes showed that ZmILI1 not only directly affected genes associated with auxin polar transport, BR signaling pathway, response to cytokinin and cell differentiation genes, but it also affected auxin and BR biosynthetic process genes regulating leaf angle.
DAP-Seq analysis and expression of target genes showed that ZmILI1 not only directly affected genes associated with auxin polar transport, BR signaling pathway, response to cytokinin and cell differentiation genes, but it also affected auxin and BR biosynthetic process genes regulating leaf angle.
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Regulating Leaf sentence examples within regulating leaf transpiration
Infected and non-infected branches of the evergreen mistletoe showed tighter regulation of water loss, whereas infected branches of the deciduous host were less constrained in regulating leaf transpiration.
Infected and non-infected branches of the evergreen mistletoe showed tighter regulation of water loss, whereas infected branches of the deciduous host were less constrained in regulating leaf transpiration.
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The objective of this study was to better understand the 2,4-epibrassinolide (EBL) mechanisms regulating leaf transpiration and WUE that can affect fruit production in tomato plants.
The objective of this study was to better understand the 2,4-epibrassinolide (EBL) mechanisms regulating leaf transpiration and WUE that can affect fruit production in tomato plants.
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Regulating Leaf sentence examples within regulating leaf water
Here, we describe experiments that aimed to determine whether relative humidity (RH) contribute to chilling tolerance by regulating leaf water potential in watermelon seedlings.
Here, we describe experiments that aimed to determine whether relative humidity (RH) contribute to chilling tolerance by regulating leaf water potential in watermelon seedlings.
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The range over which stomata are regulating leaf water potential (ψl) before turgor loss occurs, can be described with metrics such as the dependence of ψl on soil water potential (ψsoil), and the size of 'hydroscape area' (HA), but corresponding field data from adult trees are scarce.
The range over which stomata are regulating leaf water potential (ψl) before turgor loss occurs, can be described with metrics such as the dependence of ψl on soil water potential (ψsoil), and the size of 'hydroscape area' (HA), but corresponding field data from adult trees are scarce.
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10.1093/plphys/kiaa034
Collectively, our work illustrates a role for KLU in positively regulating leaf longevity and drought tolerance by synergistically activating cytokinin signaling and promoting proline metabolism.
Collectively, our work illustrates a role for KLU in positively regulating leaf longevity and drought tolerance by synergistically activating cytokinin signaling and promoting proline metabolism.
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10.1016/j.plantsci.2020.110681
Our results demonstrated that CsBRC1-like has a specific role in regulating leaf development, and CsBRC1-like and CsBRC1 may have overlapping roles in shoot branching.
Our results demonstrated that CsBRC1-like has a specific role in regulating leaf development, and CsBRC1-like and CsBRC1 may have overlapping roles in shoot branching.
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10.1101/2021.03.01.433436
Consistent with this concept, our data suggest that the NATsUGT73C6 modulate the expression levels of key transcription factors involved in regulating leaf growth by modulating cell proliferation.
Consistent with this concept, our data suggest that the NATsUGT73C6 modulate the expression levels of key transcription factors involved in regulating leaf growth by modulating cell proliferation.
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10.1101/2021.03.01.433399
RNA-Seq analysis suggested variation in Glucose-6-phosphate translocator2 (GPT2) gene expression caused correlated changes in leaf vein density and BRIX when bip mutant and wildtype were compared, suggesting that the correlation between leaf vein density and fruit sugar may result from the genes regulating leaf vein development that are also involved in regulating leaf sugar biosynthesis.
RNA-Seq analysis suggested variation in Glucose-6-phosphate translocator2 (GPT2) gene expression caused correlated changes in leaf vein density and BRIX when bip mutant and wildtype were compared, suggesting that the correlation between leaf vein density and fruit sugar may result from the genes regulating leaf vein development that are also involved in regulating leaf sugar biosynthesis.
Full Text
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10.1093/treephys/tpab095
Potassium supply alleviated osmotic-induced alterations in Eucalyptus seedlings by better regulating leaf development as well as stomatal density, thus, improving the rate of leaf gas exchange parameters, mesophyll conductance to CO2 (lower δ13C ‰ values), and water use efficiency (WUE).
Potassium supply alleviated osmotic-induced alterations in Eucalyptus seedlings by better regulating leaf development as well as stomatal density, thus, improving the rate of leaf gas exchange parameters, mesophyll conductance to CO2 (lower δ13C ‰ values), and water use efficiency (WUE).
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10.1111/cmi.13370
In the rice blast fungus Magnaporthe oryzae, the cAMP signalling pathway plays a critical role in regulating leaf surface recognition and the initiation of appressorium development.
In the rice blast fungus Magnaporthe oryzae, the cAMP signalling pathway plays a critical role in regulating leaf surface recognition and the initiation of appressorium development.
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10.3389/fpls.2021.713514
Gibberellin (GA) plays a key role in the release of bud dormancy and the GA receptor GID1 (GIBBERELLIN INSENSITIVE DWARF1) and DELLA protein are the GA signaling parts, but the molecular mechanism of GA-GID1-DELLA module regulating leaf bud dormancy in peach (Prunus persica) is still not very clear.
Gibberellin (GA) plays a key role in the release of bud dormancy and the GA receptor GID1 (GIBBERELLIN INSENSITIVE DWARF1) and DELLA protein are the GA signaling parts, but the molecular mechanism of GA-GID1-DELLA module regulating leaf bud dormancy in peach (Prunus persica) is still not very clear.
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10.1111/nph.17303
Experiments using reporter constructs showed that OsbHLH98 is expressed on the adaxial side of lamina joints, consistent with its proposed function in regulating leaf angle.
Experiments using reporter constructs showed that OsbHLH98 is expressed on the adaxial side of lamina joints, consistent with its proposed function in regulating leaf angle.
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10.1016/J.FLORA.2021.151871
Infected and non-infected branches of the evergreen mistletoe showed tighter regulation of water loss, whereas infected branches of the deciduous host were less constrained in regulating leaf transpiration.
Infected and non-infected branches of the evergreen mistletoe showed tighter regulation of water loss, whereas infected branches of the deciduous host were less constrained in regulating leaf transpiration.
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10.3390/plants10081732
In this review, we focus on the effect of auxins, CKs, and their interactions in regulating leaf morphogenesis.
In this review, we focus on the effect of auxins, CKs, and their interactions in regulating leaf morphogenesis.
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10.1021/acs.jafc.1c00155
Light intensity can be an efficient tool in regulating leafy vegetable quality and yet little is known mechanistically hitherto.
Light intensity can be an efficient tool in regulating leafy vegetable quality and yet little is known mechanistically hitherto.
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10.1007/s40415-021-00745-5
The objective of this study was to better understand the 2,4-epibrassinolide (EBL) mechanisms regulating leaf transpiration and WUE that can affect fruit production in tomato plants.
The objective of this study was to better understand the 2,4-epibrassinolide (EBL) mechanisms regulating leaf transpiration and WUE that can affect fruit production in tomato plants.
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10.1111/pbi.13690
Our results provide evidence for the role of dimerization of ROC members in regulating leaf rolling of rice.
Our results provide evidence for the role of dimerization of ROC members in regulating leaf rolling of rice.
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10.1186/s12284-021-00507-7
Overall, these results suggest that qPE9-1 is involved in rice adaptation under elevated CO 2 concentration by regulating leaf photosynthesis via moderating rice photosynthetic light reaction and Rubisco content.
Overall, these results suggest that qPE9-1 is involved in rice adaptation under elevated CO 2 concentration by regulating leaf photosynthesis via moderating rice photosynthetic light reaction and Rubisco content.
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10.1038/s41438-021-00593-0
Jasmonic acid (JA) plays an important role in regulating leaf senescence.
Jasmonic acid (JA) plays an important role in regulating leaf senescence.
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10.3389/fpls.2021.705285
However, the key genes and genetic mechanism of regulating leaf area have not been clarified.
However, the key genes and genetic mechanism of regulating leaf area have not been clarified.
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10.1016/j.plaphy.2021.06.037
Here, we describe experiments that aimed to determine whether relative humidity (RH) contribute to chilling tolerance by regulating leaf water potential in watermelon seedlings.
Here, we describe experiments that aimed to determine whether relative humidity (RH) contribute to chilling tolerance by regulating leaf water potential in watermelon seedlings.
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10.1111/ppl.13523
Fruit quality depends on leaf photosynthetic efficiency and carbohydrate accumulation, but the role of peach (Prunus persica) SnRK1 α subunit (PpSnRK1α) in regulating leaf carbon metabolism and the light signal response remains unclear.
Fruit quality depends on leaf photosynthetic efficiency and carbohydrate accumulation, but the role of peach (Prunus persica) SnRK1 α subunit (PpSnRK1α) in regulating leaf carbon metabolism and the light signal response remains unclear.
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10.1186/s12870-021-03261-6
Conclusions These results in lettuce provide insight into the molecular mechanism of GRF gene family in regulating leaf growth and development and foundational information for genetic improvement of the lettuce variations specialized in leaf character.
Conclusions These results in lettuce provide insight into the molecular mechanism of GRF gene family in regulating leaf growth and development and foundational information for genetic improvement of the lettuce variations specialized in leaf character.
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10.21203/RS.3.RS-289872/V1
Conclusions: These results in lettuce provide insight into the molecular mechanism of GRF gene family in regulating leaf growth and development and foundational information for genetic improvement of the lettuce variations specialized in leaf character.
Conclusions: These results in lettuce provide insight into the molecular mechanism of GRF gene family in regulating leaf growth and development and foundational information for genetic improvement of the lettuce variations specialized in leaf character.
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10.1038/s41438-021-00604-0
The function of CCCH in regulating leaf senescence, especially its roles in abscisic acid (ABA)-mediated leaf senescence is largely unknown.
The function of CCCH in regulating leaf senescence, especially its roles in abscisic acid (ABA)-mediated leaf senescence is largely unknown.
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10.1080/15226514.2021.1985959
Taken together, the findings revealed the promising role of GSH in enhancing the lead stress tolerance and phytoremediation potential of castor bean (Ricinus communis) plants cultivated in Pb-polluted soils through regulating leaf gas exchange, antioxidants machinery, and metal uptake.
Taken together, the findings revealed the promising role of GSH in enhancing the lead stress tolerance and phytoremediation potential of castor bean (Ricinus communis) plants cultivated in Pb-polluted soils through regulating leaf gas exchange, antioxidants machinery, and metal uptake.
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10.3389/fpls.2021.770060
Both light and the plant hormone ethylene play important roles in regulating leaf senescence.
Both light and the plant hormone ethylene play important roles in regulating leaf senescence.
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10.1007/S00344-021-10299-1
Our results reveal that ApTCP2 plays multiple roles, including modulating leaf morphogenesis, affecting flowering and positively regulating leaf senescence, via miR319, and these effects are at least partially achieved by influencing JA biosynthesis.
Our results reveal that ApTCP2 plays multiple roles, including modulating leaf morphogenesis, affecting flowering and positively regulating leaf senescence, via miR319, and these effects are at least partially achieved by influencing JA biosynthesis.
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10.1016/J.SCIENTA.2021.110089
Both vapour pressure deficit (VPD) and potassium (K) have been widely studied in regulating leaf photosynthesis and plant growth.
Both vapour pressure deficit (VPD) and potassium (K) have been widely studied in regulating leaf photosynthesis and plant growth.
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10.1016/j.plaphy.2021.02.026
SS and WS) by regulating leaf AQP expression in the host (e.
SS and WS) by regulating leaf AQP expression in the host (e.
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10.1093/treephys/tpab104
The range over which stomata are regulating leaf water potential (ψl) before turgor loss occurs, can be described with metrics such as the dependence of ψl on soil water potential (ψsoil), and the size of 'hydroscape area' (HA), but corresponding field data from adult trees are scarce.
The range over which stomata are regulating leaf water potential (ψl) before turgor loss occurs, can be described with metrics such as the dependence of ψl on soil water potential (ψsoil), and the size of 'hydroscape area' (HA), but corresponding field data from adult trees are scarce.
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10.1111/tpj.15433
A series of reports have indicated the involvement of WRKY transcription factor in regulating leaf senescence, whereas the molecular mechanisms and signaling pathways remain largely unclear.
A series of reports have indicated the involvement of WRKY transcription factor in regulating leaf senescence, whereas the molecular mechanisms and signaling pathways remain largely unclear.
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10.1016/j.agrformet.2021.108616
Compared to normal N fertilization, low N fertilization treatments significantly decreased plant photosynthetic capacity by regulating leaf stomatal closing, resulting in reduced dry matter accumulation and transportation, growth inhibition, weakened resource utilization, and consequently, a 28.
Compared to normal N fertilization, low N fertilization treatments significantly decreased plant photosynthetic capacity by regulating leaf stomatal closing, resulting in reduced dry matter accumulation and transportation, growth inhibition, weakened resource utilization, and consequently, a 28.
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10.1007/s13258-019-00809-7
ObjectiveThis study aimed to identify genes regulating leaf morphology using segregating B.
ObjectiveThis study aimed to identify genes regulating leaf morphology using segregating B.
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10.1080/15592324.2019.1682341
The role of VPD in regulating leaf gas exchange of three tree species was investigated in Jinan, China.
The role of VPD in regulating leaf gas exchange of three tree species was investigated in Jinan, China.
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10.3390/ijms20205241
Here, we report that rice ONAC096 affects grain yield by regulating leaf senescence and panicle number.
Here, we report that rice ONAC096 affects grain yield by regulating leaf senescence and panicle number.
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10.1186/s12870-019-1894-8
BackgroundNitrogen (N) and potassium (K) are two important mineral nutrients in regulating leaf photosynthesis.
BackgroundNitrogen (N) and potassium (K) are two important mineral nutrients in regulating leaf photosynthesis.
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10.1093/pcp/pcz231
We further identified four other SSPP-interacting SAURs, SAUR30, SAUR39, SAUR41 and SAUR72, that may act redundantly with SAUR49 in regulating leaf senescence.
We further identified four other SSPP-interacting SAURs, SAUR30, SAUR39, SAUR41 and SAUR72, that may act redundantly with SAUR49 in regulating leaf senescence.
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10.1093/jxb/ery448
Some potential target genes regulating leaf mesophyll cell proliferation and expansion are explored.
Some potential target genes regulating leaf mesophyll cell proliferation and expansion are explored.
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10.21037/jovs.2019.09.02
The main theoretical issue with the classic reimplantation operation is the elimination of Valsalva’s sinuses which play a fundamental role in regulating leaflet dynamics.
The main theoretical issue with the classic reimplantation operation is the elimination of Valsalva’s sinuses which play a fundamental role in regulating leaflet dynamics.
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10.1007/s11103-019-00848-4
This mutation prompts aberrant splicing of OsPLS2 messenger and consequent disruption of its full-length protein translation, suggesting a negative role of OsPLS2 in regulating leaf senescence.
This mutation prompts aberrant splicing of OsPLS2 messenger and consequent disruption of its full-length protein translation, suggesting a negative role of OsPLS2 in regulating leaf senescence.
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10.3389/fpls.2019.00112
Transcript levels of important ABA responsive genes, including BrABF3, were up-regulated in mid-leaf sections suggesting that both auxin and ABA signaling pathways play important roles in regulating leaf heading.
Transcript levels of important ABA responsive genes, including BrABF3, were up-regulated in mid-leaf sections suggesting that both auxin and ABA signaling pathways play important roles in regulating leaf heading.
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10.1186/s12870-019-1823-x
Although the role of miR319a in regulating leaf development has been well studied in tomato (Solanum lycopersicum), the function of the recently discovered wild tomato Solanum habrochaites miRNA319d (sha-miR319d) remains poorly understood.
Although the role of miR319a in regulating leaf development has been well studied in tomato (Solanum lycopersicum), the function of the recently discovered wild tomato Solanum habrochaites miRNA319d (sha-miR319d) remains poorly understood.
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10.1111/jipb.12713
Although various factors, including the plant hormones auxin and brassinosteroids, have been shown to regulate lamina joint development, the role of microRNAs in regulating leaf inclination remains largely unknown.
Although various factors, including the plant hormones auxin and brassinosteroids, have been shown to regulate lamina joint development, the role of microRNAs in regulating leaf inclination remains largely unknown.
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10.3390/ijms20081836
Strigolactones (SLs) have recently been shown to play roles in modulating plant architecture and improving plant tolerance to multiple stresses, but the underlying mechanisms for SLs regulating leaf elongation and the influence by air temperature are still unknown.
Strigolactones (SLs) have recently been shown to play roles in modulating plant architecture and improving plant tolerance to multiple stresses, but the underlying mechanisms for SLs regulating leaf elongation and the influence by air temperature are still unknown.
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10.1111/jpi.12570
Melatonin and abscisic acid (ABA) play contrasting roles in regulating leaf senescence in plants.
Melatonin and abscisic acid (ABA) play contrasting roles in regulating leaf senescence in plants.
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10.1111/pbi.13255
DAP-Seq analysis and expression of target genes showed that ZmILI1 not only directly affected genes associated with auxin polar transport, BR signaling pathway, response to cytokinin and cell differentiation genes, but it also affected auxin and BR biosynthetic process genes regulating leaf angle.
DAP-Seq analysis and expression of target genes showed that ZmILI1 not only directly affected genes associated with auxin polar transport, BR signaling pathway, response to cytokinin and cell differentiation genes, but it also affected auxin and BR biosynthetic process genes regulating leaf angle.
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10.1021/acs.jproteome.8b00951
Our results revealed major proteins and associated metabolic pathways associated with the interactive effects of elevated CO2 and nitrate regulating leaf growth in a perennial grass species.
Our results revealed major proteins and associated metabolic pathways associated with the interactive effects of elevated CO2 and nitrate regulating leaf growth in a perennial grass species.
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10.3390/rs11192267
Identifying the factors regulating leaf phenology patterns allows eciently forecasting of climate change impacts.
Identifying the factors regulating leaf phenology patterns allows eciently forecasting of climate change impacts.
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10.1371/journal.pgen.1007913
The CUC genes determine the boundary domains in the aerial part of the plants and, in particular, they have a conserved role in regulating leaf complexity across Angiosperms.
The CUC genes determine the boundary domains in the aerial part of the plants and, in particular, they have a conserved role in regulating leaf complexity across Angiosperms.
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10.3390/ijms20174141
1 plays an important role in regulating leaf development and influences the lignin biosynthesis in poplars.
1 plays an important role in regulating leaf development and influences the lignin biosynthesis in poplars.
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10.3390/ijms21010241
Although several important regulators of cell proliferation have been reported, the gene network regulating leaf developmental processes remains unclear.
Although several important regulators of cell proliferation have been reported, the gene network regulating leaf developmental processes remains unclear.
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