scholarly article | Q13442814 |
P50 | author | Shu Zhu | Q59193385 |
Yong-Feng Han | Q68473475 | ||
Cui-Xia Pu | Q84814133 | ||
Ying Sun | Q89912346 | ||
P2093 | author name string | Jiao Wang | |
Qian Yang | |||
Ying Zhao | |||
Chun-Yan Wang | |||
Feng-Yan Song | |||
Li-Jing Sun | |||
Da-Ye Sun | |||
Sheng-Wei Zhang | |||
Shuo-Lei Bu | |||
Yong-Cun Zhang | |||
Su-Qiao Zhang | |||
P2860 | cites work | The Rice Basic Helix-Loop-Helix Transcription Factor TDR INTERACTING PROTEIN2 Is a Central Switch in Early Anther Development. | Q53056204 |
The receptor-like kinase FERONIA is required for mechanical signal transduction in Arabidopsis seedlings. | Q53151783 | ||
A Receptor-Like Kinase Mediates Ammonium Homeostasis and Is Important for the Polar Growth of Root Hairs in Arabidopsis. | Q54356963 | ||
Biochemical mapping of a ligand-binding domain within Arabidopsis BAM1 reveals diversified ligand recognition mechanisms of plant LRR-RKs. | Q54530850 | ||
The Arabidopsis mutant feronia disrupts the female gametophytic control of pollen tube reception | Q59510202 | ||
EAT1 promotes tapetal cell death by regulating aspartic proteases during male reproductive development in rice | Q60390908 | ||
Loss-of-function mutations of the rice GAMYB gene impair alpha-amylase expression in aleurone and flower development | Q75197347 | ||
Active role of small peptides in Arabidopsis reproduction: Expression evidence | Q87029833 | ||
An overview of gibberellin metabolism enzyme genes and their related mutants in rice | Q24561990 | ||
Receptor-Like Kinase RUPO Interacts with Potassium Transporters to Regulate Pollen Tube Growth and Integrity in Rice | Q27308796 | ||
Floral dip: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana | Q27860555 | ||
Anther and pollen development: A conserved developmental pathway | Q28082839 | ||
Defective Pollen Wall 2 (DPW2) Encodes an Acyl Transferase Required for Rice Pollen Development | Q28584382 | ||
Defective pollen wall is required for anther and microspore development in rice and encodes a fatty acyl carrier protein reductase | Q28741141 | ||
The bHLH142 Transcription Factor Coordinates with TDR1 to Modulate the Expression of EAT1 and Regulate Pollen Development in Rice. | Q30363231 | ||
Disruption of the pollen-expressed FERONIA homologs ANXUR1 and ANXUR2 triggers pollen tube discharge. | Q30490031 | ||
The gene FLORAL ORGAN NUMBER1 regulates floral meristem size in rice and encodes a leucine-rich repeat receptor kinase orthologous to Arabidopsis CLAVATA1. | Q33340551 | ||
thick tassel dwarf1 encodes a putative maize ortholog of the Arabidopsis CLAVATA1 leucine-rich repeat receptor-like kinase. | Q33340898 | ||
The rice FON1 gene controls vegetative and reproductive development by regulating shoot apical meristem size | Q33342155 | ||
The BAM1/BAM2 receptor-like kinases are important regulators of Arabidopsis early anther development | Q33342722 | ||
The floral organ number4 gene encoding a putative ortholog of Arabidopsis CLAVATA3 regulates apical meristem size in rice | Q33343209 | ||
Conservation and diversification of meristem maintenance mechanism in Oryza sativa: Function of the FLORAL ORGAN NUMBER2 gene | Q33343307 | ||
Gibberellin metabolism and its regulation | Q33345036 | ||
Functional diversification of CLAVATA3-related CLE proteins in meristem maintenance in rice | Q33345848 | ||
Inflorescence architecture: the transition from branches to flowers | Q33346485 | ||
Effects of drought on gene expression in maize reproductive and leaf meristem tissue revealed by RNA-Seq | Q33354016 | ||
Molecular control of grass inflorescence development. | Q33357658 | ||
Flower development: the evolutionary history and functions of the AGL6 subfamily MADS-box genes | Q33362718 | ||
Isolation and characterization of novel nodulin cDNAs representing genes expressed at early stages of soybean nodule development | Q33366915 | ||
A family of receptor-like kinases are regulated by BES1 and involved in plant growth in Arabidopsis thaliana | Q33570287 | ||
Global Gene Profiling of Laser-Captured Pollen Mother Cells Indicates Molecular Pathways and Gene Subfamilies Involved in Rice Meiosis | Q33722923 | ||
'Green revolution' genes encode mutant gibberellin response modulators. | Q33869122 | ||
FERONIA receptor-like kinase regulates RHO GTPase signaling of root hair development | Q34200080 | ||
QTL analysis of shading sensitive related traits in maize under two shading treatments | Q34313923 | ||
An update on receptor-like kinase involvement in the maintenance of plant cell wall integrity | Q34331440 | ||
GIBBERELLIN INSENSITIVE DWARF1 encodes a soluble receptor for gibberellin | Q34455293 | ||
The Arabidopsis CURVY1 (CVY1) gene encoding a novel receptor-like protein kinase regulates cell morphogenesis, flowering time and seed production | Q34571652 | ||
The epidermal growth factor receptor-tyrosine kinase: a promising therapeutic target in solid tumors | Q35088373 | ||
Receptor tyrosine kinase EphB4 is a survival factor in breast cancer | Q35221906 | ||
Regulation of inflorescence architecture by intertissue layer ligand-receptor communication between endodermis and phloem | Q35925002 | ||
Rice plant development: from zygote to spikelet | Q36014038 | ||
Pollen carbohydrates and water content during development, presentation, and dispersal: a short review. | Q36579551 | ||
Gibberellin receptor and its role in gibberellin signaling in plants | Q36808061 | ||
Signaling of cell fate determination by the TPD1 small protein and EMS1 receptor kinase | Q36883178 | ||
Novel receptor kinases involved in growth regulation | Q37131654 | ||
Three related receptor-like kinases are required for optimal cell elongation in Arabidopsis thaliana | Q37183167 | ||
Receptor-like kinases shape the plant | Q37606290 | ||
Water deficits uncouple growth from photosynthesis, increase C content, and modify the relationships between C and growth in sink organs. | Q37829118 | ||
Sensing the environment: key roles of membrane-localized kinases in plant perception and response to abiotic stress | Q38073241 | ||
Specification of tapetum and microsporocyte cells within the anther | Q38186189 | ||
Receptor protein kinase FERONIA controls leaf starch accumulation by interacting with glyceraldehyde-3-phosphate dehydrogenase. | Q38297296 | ||
Rice MADS3 regulates ROS homeostasis during late anther development | Q38337501 | ||
Understanding CrRLK1L Function: Cell Walls and Growth Control | Q38700526 | ||
Rice LTG1 is involved in adaptive growth and fitness under low ambient temperature | Q39191830 | ||
Regulatory Role of a Receptor-Like Kinase in Specifying Anther Cell Identity. | Q39747583 | ||
An essential role for 14-3-3 proteins in brassinosteroid signal transduction in Arabidopsis | Q41112321 | ||
Nature and duration of growth factor signaling through receptor tyrosine kinases regulates HSV-1 latency in neurons. | Q41711280 | ||
Carbon starved anther encodes a MYB domain protein that regulates sugar partitioning required for rice pollen development | Q43122779 | ||
Cytochrome P450 family member CYP704B2 catalyzes the {omega}-hydroxylation of fatty acids and is required for anther cutin biosynthesis and pollen exine formation in rice | Q43189558 | ||
Starch biosynthesis during pollen maturation is associated with altered patterns of gene expression in maize | Q44248308 | ||
Isolation and characterization of a rice cysteine protease gene, OsCP1, using T-DNA gene-trap system | Q45050906 | ||
Brassinosteroids promote development of rice pollen grains and seeds by triggering expression of Carbon Starved Anther, a MYB domain protein | Q46475737 | ||
Rice APOPTOSIS INHIBITOR5 coupled with two DEAD-box adenosine 5'-triphosphate-dependent RNA helicases regulates tapetum degeneration | Q46585830 | ||
FERONIA receptor kinase controls seed size in Arabidopsis thaliana. | Q47185821 | ||
Expansion of the receptor-like kinase/Pelle gene family and receptor-like proteins in Arabidopsis | Q47389816 | ||
Comparative analysis of the receptor-like kinase family in Arabidopsis and rice | Q47709872 | ||
MTR1 encodes a secretory fasciclin glycoprotein required for male reproductive development in rice | Q48048820 | ||
PERSISTENT TAPETAL CELL1 encodes a PHD-finger protein that is required for tapetal cell death and pollen development in rice | Q48058679 | ||
The rice tapetum degeneration retardation gene is required for tapetum degradation and anther development | Q48083174 | ||
Rice Immature Pollen 1 (RIP1) is a regulator of late pollen development | Q48084540 | ||
Rice Undeveloped Tapetum1 is a major regulator of early tapetum development | Q48123076 | ||
The MSP1 gene is necessary to restrict the number of cells entering into male and female sporogenesis and to initiate anther wall formation in rice | Q48234178 | ||
A Rice Ca2+ Binding Protein Is Required for Tapetum Function and Pollen Formation. | Q48337430 | ||
A receptor-like kinase mediates the response of Arabidopsis cells to the inhibition of cellulose synthesis. | Q50681045 | ||
MIL2 (MICROSPORELESS2) regulates early cell differentiation in the rice anther. | Q50788982 | ||
Crinkly4 receptor-like kinase is required to maintain the interlocking of the palea and lemma, and fertility in rice, by promoting epidermal cell differentiation. | Q51423584 | ||
Conserved molecular components for pollen tube reception and fungal invasion. | Q51533070 | ||
ANXUR1 and 2, sister genes to FERONIA/SIRENE, are male factors for coordinated fertilization. | Q51623147 | ||
The FERONIA receptor-like kinase mediates male-female interactions during pollen tube reception. | Q51743604 | ||
P433 | issue | 1 | |
P304 | page(s) | 70-89 | |
P577 | publication date | 2017-01-12 | |
P1433 | published in | The Plant Cell | Q3988745 |
P1476 | title | The Rice Receptor-Like Kinases DWARF AND RUNTISH SPIKELET1 and 2 Repress Cell Death and Affect Sugar Utilization during Reproductive Development | |
P478 | volume | 29 |
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