The present study aimed to assess the interactive effects of four plant growth-promoting bacterium(PGPB)species[Providencia sp.(Pr),Stenotrophomonas sp.(St),Morganella sp.(Mo),and Lysinibacillus sp.(Lb)]and six protis...The present study aimed to assess the interactive effects of four plant growth-promoting bacterium(PGPB)species[Providencia sp.(Pr),Stenotrophomonas sp.(St),Morganella sp.(Mo),and Lysinibacillus sp.(Lb)]and six protist species[two amoebae Vermamoeba vermiformis(A9)and Acanthamoeba genotype T4(A34),and four ciliates Crytolophosis mucicola(C1),Tetrahymena sp.(C2),Colpoda elliotti(C12),and an unidentified genus of the family Kreyellidae(C5)]on the uptake of nutrients and the expression of auxin-responsive gene(GH3-2)in rice.The findings revealed that rice seedlings grew healthily,and a statistically significant difference was observed after 30 d of incubation in pots under greenhouse conditions treated with each PGPB and protist-PGPB consortia,compared with the untreated control plants.However,the protist-PGPB treatments were more significant than PGPB treatment alone.The greatest improvement in rice seedling growth was observed in C.elliotti with Stenotrophomonas sp.(C12St)treatment,showing increased root and shoot length(88.57%and 79.69%).展开更多
Auxin plays a crucial role in all aspects of plant growth and development.Auxin can induce the rapid and efficient expression of some genes,which are named auxin early response genes(AERGs),mainly including the three ...Auxin plays a crucial role in all aspects of plant growth and development.Auxin can induce the rapid and efficient expression of some genes,which are named auxin early response genes(AERGs),mainly including the three families:auxin/indole-3-acetic acid(Aux/IAA),Gretchen Hagen 3(GH3),and small auxin-up RNA(SAUR).Aux/IAA encodes the Aux/IAA protein,which is a negative regulator of auxin response.Aux/IAA and auxin response factor(ARF)form a heterodimer and participate in a variety of physiological processes through classical or non-classical auxin signaling pathways.The GH3 encodes auxin amide synthetase,which catalyzes the binding of auxin to acyl-containing small molecule substrates(such as amino acids and jasmonic acid),and regulates plant growth and stresses by regulating auxin homeostasis.SAURs is a class of small auxin up-regulated RNAs.SAUR response to auxin is complex,and the process may occur at the transcriptional,post-transcriptional and protein levels.With the development of multi-omics,significant progress has been made in the study of Aux/IAA,GH3,and SAUR genes,but there are still many unknowns.This review offers insight into the characteristics of Aux/IAA,GH3,and SAUR gene families,and their roles in roots,hypocotyls,leaves,leaf inclinations,flowers,seed development,stress response,and phytohormone crosstalk,and provides clues for future research on phytohormone signaling and the molecular design breeding of crops.展开更多
基金the Department of Science and Technology,Science and Engineering Research Board,New Delhi,India,under the Early Career Research Award Grant(Grant No.ECR/2017/001977).
文摘The present study aimed to assess the interactive effects of four plant growth-promoting bacterium(PGPB)species[Providencia sp.(Pr),Stenotrophomonas sp.(St),Morganella sp.(Mo),and Lysinibacillus sp.(Lb)]and six protist species[two amoebae Vermamoeba vermiformis(A9)and Acanthamoeba genotype T4(A34),and four ciliates Crytolophosis mucicola(C1),Tetrahymena sp.(C2),Colpoda elliotti(C12),and an unidentified genus of the family Kreyellidae(C5)]on the uptake of nutrients and the expression of auxin-responsive gene(GH3-2)in rice.The findings revealed that rice seedlings grew healthily,and a statistically significant difference was observed after 30 d of incubation in pots under greenhouse conditions treated with each PGPB and protist-PGPB consortia,compared with the untreated control plants.However,the protist-PGPB treatments were more significant than PGPB treatment alone.The greatest improvement in rice seedling growth was observed in C.elliotti with Stenotrophomonas sp.(C12St)treatment,showing increased root and shoot length(88.57%and 79.69%).
基金supported by the National Natural Science Foundation of China(32060451 and 32372073)the Natural Science Foundation of Inner Mongolia(2022ZD11)+1 种基金the Science-Technology Plan Project of Inner Mongolia(2023YFDZ0007)Applied Technology Research and Development Foundation of Inner Mongolia(2021PT0001).
文摘Auxin plays a crucial role in all aspects of plant growth and development.Auxin can induce the rapid and efficient expression of some genes,which are named auxin early response genes(AERGs),mainly including the three families:auxin/indole-3-acetic acid(Aux/IAA),Gretchen Hagen 3(GH3),and small auxin-up RNA(SAUR).Aux/IAA encodes the Aux/IAA protein,which is a negative regulator of auxin response.Aux/IAA and auxin response factor(ARF)form a heterodimer and participate in a variety of physiological processes through classical or non-classical auxin signaling pathways.The GH3 encodes auxin amide synthetase,which catalyzes the binding of auxin to acyl-containing small molecule substrates(such as amino acids and jasmonic acid),and regulates plant growth and stresses by regulating auxin homeostasis.SAURs is a class of small auxin up-regulated RNAs.SAUR response to auxin is complex,and the process may occur at the transcriptional,post-transcriptional and protein levels.With the development of multi-omics,significant progress has been made in the study of Aux/IAA,GH3,and SAUR genes,but there are still many unknowns.This review offers insight into the characteristics of Aux/IAA,GH3,and SAUR gene families,and their roles in roots,hypocotyls,leaves,leaf inclinations,flowers,seed development,stress response,and phytohormone crosstalk,and provides clues for future research on phytohormone signaling and the molecular design breeding of crops.