supported by the National Natural Science Foundation of China (32350001, 32370306, 32022005);Tsinghua University Dushi Program;the Tsinghua-Peking Center for Life Sciences;funded by grants from the Swiss National Funds (project 31003A_165877 and 310030_197563)
Light and gravity coordinately regulate the directional growth of plants.Arabidopsis Gravitropic in the Light 1(GIL1)inhibits the negative gravitropism of hypocotyls in red and far-red light,but the underlying molecul...
supported by grants from the Strategic Priority Research Program of the Chinese Academy of Science(XDA24010303);the National Natural Science Foundation of China(31770268);the Fundamental Research Funds for the Central Universities(WK2070000091);the University of Science and Technology of China(start-up fund to S.M.)。
Single-cell RNA-sequencing datasets of Arabidopsis roots have been generated,but related comprehensive gene co-expression network analyses are lacking.We conducted a single-cell gene co-expression network analysis wit...
the National Institute of General Medical Sciences(NIGMS)with grants to M.E.(R35GM141892)and to W.B.(R01GM127759);by the European Research Council(grant no.803048);M.F.M.P.P.was supported by a long-term postdoctoral fellowship(LT000340/2019 L)by the Human Frontier Science Program Organization.
The phytohormone auxin triggers root growth inhibition within seconds via a non-transcriptionalpathway.Among members of the TIR1/AFB auxin receptor family,AFB1 has a primary role in this rapidresponse. However, the un...
supported by the Top Talents Program"One Case One Discussion(Yishiyiyi)"of Shandong Province and the Natural Science Foundation of Shandong Province(ZR2022MC082).
Rice tiller angle,as a component of plant architecture,affects rice grain yield via plant density.However,the molecular mechanism underlying rice tiller angle remains elusive.We report that the key domestication gene ...
supported by the National Natural Science Foundation of China(31801335);Training Program for Excellent Young Innovators of Changsha(kq1802034);Department of Science and Technology in Hunan Province(2019RS2047).
Plant architecture strongly influences rice grain yield.We report the cloning and characterization of the LTA1 gene,which simultaneously controls tiller angle and yield of rice.LTA1 encodes a chloroplastlocalized prot...
supported by the National Natural Science Foundation of China(32070197,31570181 and 31200148);Chinese Universities Scientific Fund(2452018149)。
Root system architecture is influenced by gravity.How the root senses gravity and directs its orientation,so-called gravitropism,is not only a fundamental question in plant biology but also theoretically important for...
supported by the National Natural Science Foundation of China(projects 31670275,32061143005,and 31870252);Shandong Natural Science Foundation ZR2021QC067;the Specialized Fund for the Basic Research Operating Expenses Program of Shandong University(2017JQ04)。
Gravitropism is an essential adaptive response of land plants.Asymmetric auxin gradients across plant organs,interpreted by multiple auxin signaling components including AUXIN RESPONSE FACTOR7(ARF7),trigger differenti...
This work was supported by the Vienna Research Group(VRG)program of the Vienna Science and Technology Fund(VWVTF)(VRG10-006)(to J.K-V.),the Austrian Science Fund(FWF)(P29754)(to J.K-V.),the European Research Council(ERC)(Starting Grant 639478-AuxinER)(to J.K-V.).
In contrast to primary roots,lateral roots partially repress gravitropic growth and establish a distinct gravitropic set point angle(GSA;Digby and Firn 1995).The distinct GSAs of primary and lateral roots ultimately a...
supported by grants from National Key R&D Program of China(2017YFA0503800);National Natural Science Foundation of China(31330048,31621001);Peking-Tsinghua Center for Life Sciences;Peking University;Southern University of Science and Technology;Xiamen University.
Green plants on the earth have evolved intricate mechanisms to acclimatize to and utilize sunlight.In Arabidopsis,light signals are perceived by photoreceptors and transmitted through divergent but overlapping signali...
supported by grants from the National Natural Science Foundation of China (91635301;91535204;31601276);the Ministry of Agriculture of China (2016ZX08009-003);the Strategic Priority Research Program "Molecular Mechanism of Plant Growth and Development" of CAS (XDPB0401).
Rice tiller angle is a key agronomic trait that contributes to ideal plant architecture and grain production.LAZY1 (LA1) was previously shown to control tiller angle via affecting shoot gravitropism,but the underlying...