Hack Mib2

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Domenec Reynolds

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Aug 3, 2024, 3:36:24 PM8/3/24
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Your search for reliable MIB2 antibodies ends here. MIB2, known by aliases such as MIB2, Mib2, mib2, mib2.S, is an integral part of our antibody range. Whether you're working with Human, Mouse, Rat, or other species, our range of MIB2 antibodies offer precise detection across diverse samples. These specialized antibodies are tailored for various scientific applications like WB, ELISA, IHC, ICC, IP, providing you with options like polyclonal, recombinant, and monoclonal antibodies, sourced from different host species such as Rabbit, Mouse. The efficacy of our antibodies is well-established, demonstrated through multiple methods.

Detailed information, including references, images, and validations by other customers, can be found on each product page. Should you require assistance in finding a specific product, our customer service team is ready to assist. Utilize our MIB2 antibodies in your research endeavors for dependable MIB2 detection.

Find MIB2 Antibodies for a variety of species such as anti-Human MIB2, anti-Mouse MIB2, anti-Rat MIB2. The species listed below are among those available. Click on a link to go to the corresponding products.

Find MIB2 Antibodies with a specific conjugate such as Biotin, Alexa Fluor 488, Alexa Fluor 555. The conjugates listed below are among those available. Click on a link to go to the corresponding products.

Understanding how plants alter their development and architecture in response to ambient temperature is crucial for breeding resilient crops. Here, we identify the quantitative trait locus qMULTIPLE INFLORESCENCE BRANCH 2 (qMIB2), which modulates inflorescence branching in response to high ambient temperature in tomato (Solanum lycopersicum). The non-functional mib2 allele may have been selected in large-fruited varieties to ensure larger and more uniform fruits under varying temperatures. MIB2 gene encodes a homolog of the Arabidopsis thaliana transcription factor SPATULA; its expression is induced in meristems at high temperature. MIB2 directly binds to the promoter of its downstream gene CONSTANS-Like1 (SlCOL1) by recognizing the conserved G-box motif to activate SlCOL1 expression in reproductive meristems. Overexpressing SlCOL1 rescue the reduced inflorescence branching of mib2, suggesting how the MIB2-SlCOL1 module helps tomato inflorescences adapt to high temperature. Our findings reveal the molecular mechanism underlying inflorescence thermomorphogenesis and provide a target for breeding climate-resilient crops.

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