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典型文献
Straw mulch-based no-tillage improves tillering capability of dryland wheat by reducing asymmetric competition between main stem and tillers
文献摘要:
The moisture-conserving effect of straw mulch-based no-tillage(SMNT)is expected to increase fertile spikes and grain yield in environments with rainfall less than 200 mm.However,the mechanisms under-lying the positive effect of SMNT on wheat tillering are not fully elucidated.A split-plot experiment was designed to investigate the combined effects of SMNT and cultivars on tillering of dryland wheat grown under both dry and favorable climates.Application of SMNT to a cultivar with 1-2 tillers exploited both tillering and kernel-number plasticity,increasing the mean grain yield by 20.5%.This increase was attrib-uted primarily to an increased first-tiller emergence rate resulting from increased N uptake,leaf N con-tent,and N remobilization from tillers to their grain.The second and third tillers,as transient sinks,contributed to the tiller survival rate,which depends on tiller leaf number.The increased total N uptake by SMNT also increased the dry mass yield of tillers and the C:N ratio,reducing the asymmetric compe-tition between main stem and tillers.Owing to these beneficial effects,reduced mitogen-activated pro-tein kinase(MAPK)and abscisic acid signals were observed under SMNT,whereas indole-3-acetic acid(IAA)signals and genes involved in DNA replication and mismatch repair were increased.These signals activated three critical transcription factors(the calmodulin-binding transcription activator,GRAS domain,and cysteine-2/histidine-2 family)and further increased rapid drought response and tiller main-tenance after stem extension.Phenylpropanoid biosynthesis,sphingolipid biosynthesis,and galactose metabolism were most relevant to increased tillering under SMNT because of their critical role in drought response and lignin biosynthesis.Our results suggest that straw mulch-based no-tillage activates rapid drought response and improved wheat tillering by coordinating root N uptake,N remobilization,and asymmetric competition between main stem and tillers.
文献关键词:
作者姓名:
Hongkun Yang;Yun Xiao;Peng He;Dailong Ai;Qiaosheng Zou;Jian Hu;Qiong Liu;Xiulan Huang;Ting Zheng;Gaoqiong Fan
作者机构:
Crop Ecophysiology and Cultivation Key Laboratory of Sichuan Province,Sichuan Agricultural University,Chengdu 611130,Sichuan,China;Key Laboratory of Crop Eco-Physiology&Farming System in Southwest China,Ministry of Agriculture and Rural Affairs,Chengdu 611130,Sichuan,China;State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China,Ministry of Science and Technology,Chengdu 611130,Sichuan,China
引用格式:
[1]Hongkun Yang;Yun Xiao;Peng He;Dailong Ai;Qiaosheng Zou;Jian Hu;Qiong Liu;Xiulan Huang;Ting Zheng;Gaoqiong Fan-.Straw mulch-based no-tillage improves tillering capability of dryland wheat by reducing asymmetric competition between main stem and tillers)[J].作物学报(英文版),2022(03):864-878
A类:
tillers,SMNT,Phenylpropanoid
B类:
Straw,mulch,tillage,improves,tillering,capability,dryland,wheat,by,reducing,asymmetric,competition,between,stem,moisture,conserving,straw,expected,fertile,spikes,grain,yield,environments,rainfall,less,than,However,mechanisms,under,lying,positive,are,not,fully,elucidated,split,plot,experiment,was,designed,investigate,combined,effects,cultivars,grown,both,favorable,climates,Application,exploited,kernel,number,plasticity,increasing,mean,This,attrib,primarily,increased,first,emergence,rate,resulting,from,uptake,leaf,tent,remobilization,their,second,third,transient,sinks,contributed,survival,which,depends,total,also,mass,ratio,Owing,these,beneficial,reduced,mitogen,activated,kinase,MAPK,abscisic,acid,signals,were,observed,whereas,indole,acetic,IAA,genes,involved,replication,mismatch,repair,These,three,critical,transcription,factors,calmodulin,binding,activator,GRAS,domain,cysteine,histidine,family,further,rapid,drought,response,tenance,after,extension,biosynthesis,sphingolipid,galactose,metabolism,most,relevant,because,role,lignin,Our,results,suggest,that,activates,improved,coordinating,root
AB值:
0.480296
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