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Biology subjects

Palayur, A.

Publications and source records attributed to Palayur, A..

2 recordsLinked to original sources

Tracking Transgenes with Color: RUBY as a Visual Marker in CRISPR-Edited Mutant Plants in Two Triticum Species

CRISPR-Cas9 is a powerful tool for precise genome editing in plants, but the presence of foreign DNA, such as T-DNA, raises regulatory concerns and complicates mutant screening and field studies of edited material. Detecting plants with good transgene expression and later removing the T-DNA from edited plants is both time-consuming and costly. To address this, we developed a system that uses the non-destructive RUBY reporter, linked to the CRISPR-Cas9 cassette, and expressed under the ZmUbi1 promoter. To assess the applicability of the system, it was tested on two Triticum species, targeting three genes in either tetraploid or hexaploid wheat. Strong correlations were observed in both T0 and T1 plants between betalain content and Cas9 expression, allowing for the quick identification of plants likely to be edited. Furthermore, the RUBY reporter could be used to select against the transgenic CRISPR-Cas9 cassette in subsequent generations at both the seed and seedling stages, thereby reducing the number of plants that need to be screened to identify edited lines without a T-DNA. This approach, using a nondestructive reporter, enabled rapid distinction between transgene expression in primary transgenics and served as a negative selection in the T1 generation, streamlining selection towards edited and T-DNA-free progeny.

plant biology↗

Wheat Enhanced Disease Resistance EMS-Mutants Include Lesion-mimics With Adult Plant Resistance to Stripe Rust

Tetraploid durum wheat Triticum turgidum subsp. durum cv Kronos has extensive genetic variation resources, including a sequenced and cataloged ethyl methanesulfonate (EMS) mutagenized population. To utilize this allelic diversity, we screened over 2,000 mutant lines and identified over 30 enhanced disease resistance (EDR) mutants in a forward genetic field screen against stripe rust. Sixteen of the EDR lines have persistent resistance to stripe rust after four years, and several mutants showed differential disease responses against other fungal pathogens, indicating that the lines possess diverse alleles that affect multiple routes of pathogen suppression. Five of these 16 lines showed spontaneous lesion formation in the absence of pathogens. Only one showed a reduction in kernel weight under pathogen pressure, a testimony to the high mutational density that wheat can tolerate. Phenotypic selection for resistance at the adult stage identified useful EMS alleles for stripe rust resistance. The mutations in the 16 EDR lines were newly mapped to a recently released long-read Kronos genome to enhance their utility in molecular breeding for fungal resistance and for fundamental studies of plant-pathogen interactions.

plant biology↗